-
1
-
-
0030111396
-
Common ground plans in early development in mice and flies
-
Arendt, D., and Nübler-Jung, K. (1996). Common ground plans in early development in mice and flies. Bioessays 18, 255–259. doi: 10.1002/bies.950180314
-
(1996)
Bioessays
, vol.18
, pp. 255-259
-
-
Arendt, D.1
Nübler-Jung, K.2
-
2
-
-
0032571828
-
Developing grasshopper neurons show variable levels of guanylyl cyclase activity on arrival at their targets
-
Ball, E. E., and Truman, J. W. (1998). Developing grasshopper neurons show variable levels of guanylyl cyclase activity on arrival at their targets. J. Comp. Neurol. 394, 1–13. doi: 10.1002/(SICI)1096-9861(19980427)394:1<1::AID-CNE1>3.0.CO;2-43.0.CO;2-4" target="_blank"
-
(1998)
J. Comp. Neurol
, vol.394
, pp. 1-13
-
-
Ball, E.E.1
Truman, J.W.2
-
3
-
-
0017286576
-
Embryogenesis of an insect nervous system. I. A map of the thoracic and abdominal neuroblasts in Locusta migratoria
-
Bate, C. M. (1976). Embryogenesis of an insect nervous system. I. A map of the thoracic and abdominal neuroblasts in Locusta migratoria. J. Embryol. Exp. Morphol. 35, 107–123.
-
(1976)
J. Embryol. Exp. Morphol
, vol.35
, pp. 107-123
-
-
Bate, C.M.1
-
4
-
-
77957190649
-
Drosophila type II neuroblast lineages keep Prospero levels low to generate large clones that contribute to the adult brain central complex
-
Bayraktar, O. A., Boone, J. Q., Drummond, M. L., and Doe, C. Q. (2010). Drosophila type II neuroblast lineages keep Prospero levels low to generate large clones that contribute to the adult brain central complex. Neural Dev. 5:26. doi: 10.1186/1749-8104-5-26
-
(2010)
Neural Dev.
, vol.5
-
-
Bayraktar, O.A.1
Boone, J.Q.2
Drummond, M.L.3
Doe, C.Q.4
-
5
-
-
84930381833
-
Topographic organization and possible function of the posterior optic tubercles in the brain of the desert locust Schistocerca gregaria
-
Beetz, M. J., El Jundi, B., Heinze, S., and Homberg, U. (2015). Topographic organization and possible function of the posterior optic tubercles in the brain of the desert locust Schistocerca gregaria. J. Comp. Neurol. 523, 1589–1607. doi: 10.1002/cne.23736
-
(2015)
J. Comp. Neurol.
, vol.523
, pp. 1589-1607
-
-
Beetz, M.J.1
El Jundi, B.2
Heinze, S.3
Homberg, U.4
-
6
-
-
77953130021
-
Neural activity in the central complex of the insect brain is linked to locomotor changes
-
Bender, J. A., Pollack, A. J., and Ritzmann, R. E. (2010). Neural activity in the central complex of the insect brain is linked to locomotor changes. Curr. Biol. 20, 921–926. doi: 10.1016/j.cub.2010.03.054
-
(2010)
Curr. Biol.
, vol.20
, pp. 921-926
-
-
Bender, J.A.1
Pollack, A.J.2
Ritzmann, R.E.3
-
7
-
-
0035111714
-
Sources and targets of nitric oxide signalling in insect nervous systems
-
Bicker, G. (2001). Sources and targets of nitric oxide signalling in insect nervous systems. Cell Tissue Res. 303, 137–146. doi: 10.1007/s004410000321
-
(2001)
Cell Tissue Res
, vol.303
, pp. 137-146
-
-
Bicker, G.1
-
8
-
-
84893794833
-
Timelines in the insect brain: Fates of identified neural stem cells generating the central complex in the grasshopper Schistocerca gregaria
-
Boyan, G., and Liu, Y. (2014). Timelines in the insect brain: fates of identified neural stem cells generating the central complex in the grasshopper Schistocerca gregaria. Dev. Genes Evol. 224, 37–51. doi: 10.1007/s00427-013-0462-8
-
(2014)
Dev. Genes Evol.
, vol.224
, pp. 37-51
-
-
Boyan, G.1
Liu, Y.2
-
9
-
-
79955717545
-
Mechanisms for complexity in the brain: Generating the insect central complex
-
Boyan, G. S., and Reichert, H. (2011). Mechanisms for complexity in the brain: generating the insect central complex. Trends Neurosci. 34, 247–257. doi: 10.1016/j.tins.2011.02.002
-
(2011)
Trends Neurosci
, vol.34
, pp. 247-257
-
-
Boyan, G.S.1
Reichert, H.2
-
10
-
-
0030659794
-
Embryonic development of the pars intercerebralis/central complex of the grasshopper
-
Boyan, G. S., and Williams, J. L. D (1997). Embryonic development of the pars intercerebralis/central complex of the grasshopper. Dev. Genes Evol. 207, 317–329. doi: 10.1007/s004270050119
-
(1997)
Dev. Genes Evol.
, vol.207
, pp. 317-329
-
-
Boyan, G.S.1
Williams, J.2
-
11
-
-
49949109709
-
An ontogenetic anaysis of locustatachykinin-like expression in the central complex of the grasshopper Schistocerca gregaria
-
Boyan, G. S., Williams, J. L. D., and Herbert, Z. (2008a). An ontogenetic anaysis of locustatachykinin-like expression in the central complex of the grasshopper Schistocerca gregaria. Arthropod Struct. Dev. 37, 480–491. doi: 10.1016/j.asd.2008.04.002
-
(2008)
Arthropod Struct. Dev.
, vol.37
, pp. 480-491
-
-
Boyan, G.S.1
Williams, J.L.D.2
Herbert, Z.3
-
12
-
-
49949111504
-
Fascicle switching generates a chiasmal neuroarchitecture in the embryonic central body of the grasshopper Schistocerca gregaria
-
Boyan, G. S., Williams, J. L. D., and Herbert, Z. (2008b). Fascicle switching generates a chiasmal neuroarchitecture in the embryonic central body of the grasshopper Schistocerca gregaria. Arthropod Struct. Dev. 37, 539–544. doi: 10.1016/j.asd.2008.07.005
-
(2008)
Arthropod Struct. Dev.
, vol.37
, pp. 539-544
-
-
Boyan, G.S.1
Williams, J.L.D.2
Herbert, Z.3
-
13
-
-
77953464580
-
Multipotent neuroblasts generate a biochemical neuroarchitecture in the central complex of the grasshopper Schistocerca gregaria
-
Boyan, G., Williams, L., and Herbert, Z. (2010a). Multipotent neuroblasts generate a biochemical neuroarchitecture in the central complex of the grasshopper Schistocerca gregaria. Cell Tissue Res. 340, 13–28. doi: 10.1007/s00441-009-0922-7
-
(2010)
Cell Tissue Res
, vol.340
, pp. 13-28
-
-
Boyan, G.1
Williams, L.2
Herbert, Z.3
-
14
-
-
85027944564
-
Proliferative cell types in embryonic lineages of the central complex of the grasshopper Schistocerca gregaria
-
Boyan, G. S., Williams, L., Legl, A., and Herbert, Z. (2010b). Proliferative cell types in embryonic lineages of the central complex of the grasshopper Schistocerca gregaria. Cell Tissue Res. 341, 259–277. doi: 10.1007/s00441-010-0992-6
-
(2010)
Cell Tissue Res
, vol.341
, pp. 259-277
-
-
Boyan, G.S.1
Williams, L.2
Legl, A.3
Herbert, Z.4
-
15
-
-
84924586546
-
Conserved patterns of axogenesis in the panarthropod brain
-
Boyan, G., Williams, L., and Liu, Y. (2015). Conserved patterns of axogenesis in the panarthropod brain. Arthropod Struct. Dev. 44, 101–112. doi: 10.1016/j.asd.2014.11.003
-
(2015)
Arthropod Struct. Dev.
, vol.44
, pp. 101-112
-
-
Boyan, G.1
Williams, L.2
Liu, Y.3
-
16
-
-
0027189546
-
Organization of the commissural fibers in the adult brain of the locust
-
Boyan, G. S., Williams, J. L. D., and Meier, T. (1993). Organization of the commissural fibers in the adult brain of the locust. J. Comp. Neurol. 332, 358–377. doi: 10.1002/cne.903320308
-
(1993)
J. Comp. Neurol.
, vol.332
, pp. 358-377
-
-
Boyan, G.S.1
Williams, J.L.D.2
Meier, T.3
-
18
-
-
65449186283
-
Identification of new members of the (Short) neuropeptide F family in locusts and Caenorhabditis elegans
-
Clynen, E., Husson, S. J., and Schoofs, L. (2009). Identification of new members of the (short) neuropeptide F family in locusts and Caenorhabditis elegans. Ann. N Y Acad. Sci. 1163, 60–74. doi: 10.1111/j.1749-6632.2008.03624.x
-
(2009)
Ann. N Y Acad. Sci.
, vol.1163
, pp. 60-74
-
-
Clynen, E.1
Husson, S.J.2
Schoofs, L.3
-
19
-
-
0033231263
-
Serotonergic neurons transiently require a midline-derived FGF signal
-
Condron, B. G. (1999). Serotonergic neurons transiently require a midline-derived FGF signal. Neuron 24, 531–540. doi: 10.1016/s0896-6273(00)81110-1
-
(1999)
Neuron
, vol.24
, pp. 531-540
-
-
Condron, B.G.1
-
20
-
-
0024429552
-
Pharmacological actions of a new class of neuropeptides, the leucokinins I-IV, on the visceral muscles of Leucophaea maderae
-
Cook, B. J., Holman, G. M., Wagner, R. M., and Nachman, R. J. (1989). Pharmacological actions of a new class of neuropeptides, the leucokinins I-IV, on the visceral muscles of Leucophaea maderae. Comp. Biochem. Physiol. C 93, 257–262. doi: 10.1016/0742-8413(89)90230-2
-
(1989)
Comp. Biochem. Physiol. C
, vol.93
, pp. 257-262
-
-
Cook, B.J.1
Holman, G.M.2
Wagner, R.M.3
Nachman, R.J.4
-
21
-
-
0037032812
-
Molecular mechanisms of axon guidance
-
Dickson, B. J. (2002). Molecular mechanisms of axon guidance. Science 298, 1959–1964. doi: 10.1126/science.1072165
-
(2002)
Science
, vol.298
, pp. 1959-1964
-
-
Dickson, B.J.1
-
22
-
-
34247574267
-
Serotonin and neuropeptide F have opposite modulatory effects on fly aggression
-
Diereck, H. A., and Greenspan, R. J. (2007). Serotonin and neuropeptide F have opposite modulatory effects on fly aggression. Nat. Genet. 39, 678–682. doi: 10.1038/ng2029
-
(2007)
Nat. Genet.
, vol.39
, pp. 678-682
-
-
Diereck, H.A.1
Greenspan, R.J.2
-
23
-
-
0032767650
-
Structure, distribution and biological activity of novel members of the allatostatin family in the crayfish Orconectes limosus
-
Dircksen, H., Skiebe, P., Abel, B., Agricola, H., Buchner, K., Muren, J. E., et al. (1999). Structure, distribution and biological activity of novel members of the allatostatin family in the crayfish Orconectes limosus. Peptides 20, 695–712. doi: 10.1016/s0196-9781(99)00052-2
-
(1999)
Peptides
, vol.20
, pp. 695-712
-
-
Dircksen, H.1
Skiebe, P.2
Abel, B.3
Agricola, H.4
Buchner, K.5
Muren, J.E.6
-
24
-
-
43949137061
-
Neural stem cells: Balancing self-renewal with differentiation
-
Doe, C. Q. (2008). Neural stem cells: balancing self-renewal with differentiation. Development 135, 1575–1587. doi: 10.1242/dev.014977
-
(2008)
Development
, vol.135
, pp. 1575-1587
-
-
Doe, C.Q.1
-
25
-
-
0022414028
-
Early events in insect neurogenesis. I. Development and segmental differences in the pattern of neuronal precursor cells
-
Doe, C. Q., and Goodman, C. S. (1985a). Early events in insect neurogenesis. I. Development and segmental differences in the pattern of neuronal precursor cells. Dev. Biol. 111, 193–205. doi: 10.1016/0012-1606(85)90445-2
-
(1985)
Dev. Biol.
, vol.111
, pp. 193-205
-
-
Doe, C.Q.1
Goodman, C.S.2
-
26
-
-
0022414029
-
Early events in insect neurogenesis. II. The role of cell interactions and cell lineage in the determination of neuronal precursor cells
-
Doe, C. Q., and Goodman, C. S. (1985b). Early events in insect neurogenesis. II. The role of cell interactions and cell lineage in the determination of neuronal precursor cells. Dev. Biol. 111, 206–219. doi: 10.1016/0012-1606(85)90446-4
-
(1985)
Dev. Biol.
, vol.111
, pp. 206-219
-
-
Doe, C.Q.1
Goodman, C.S.2
-
27
-
-
0034088347
-
Triple co-localisation of two types of allatostatin and an allatotropin in the frontal ganglion of the lepidopteran Lacanobia oleracea (Noctuidae): Innervation and action on the foregut
-
Duve, H., Audsley, N., Weaver, R. J., and Thorpe, A. (2000). Triple co-localisation of two types of allatostatin and an allatotropin in the frontal ganglion of the lepidopteran Lacanobia oleracea (Noctuidae): innervation and action on the foregut. Cell Tissue Res. 300, 153–163. doi: 10.1007/s004410050056
-
(2000)
Cell Tissue Res
, vol.300
, pp. 153-163
-
-
Duve, H.1
Audsley, N.2
Weaver, R.J.3
Thorpe, A.4
-
28
-
-
0032941592
-
Periviscerokinin-like immunoreactivity in the nervous system of the American cockroach
-
Eckert, M., Predel, R., and Gundel, M. (1999). Periviscerokinin-like immunoreactivity in the nervous system of the American cockroach. Cell Tissue Res. 295, 159–170. doi: 10.1007/s004410051222
-
(1999)
Cell Tissue Res
, vol.295
, pp. 159-170
-
-
Eckert, M.1
Predel, R.2
Gundel, M.3
-
29
-
-
0031449238
-
Serotonin, social status and aggression
-
Edwards, D. H., and Kravitz, E. A. (1997). Serotonin, social status and aggression. Curr. Opin. Neurobiol. 7, 812–819. doi: 10.1016/s0959-4388(97)80140-7
-
(1997)
Curr. Opin. Neurobiol.
, vol.7
, pp. 812-819
-
-
Edwards, D.H.1
Kravitz, E.A.2
-
30
-
-
84885976968
-
The locust standard brain: A 3D standard of the central complex as a platform for neural network analysis
-
El Jundi, B., Heinze, S., Lenschow, C., Kurylas, A., Rohlfing, T., and Homberg, U. (2010). The locust standard brain: a 3D standard of the central complex as a platform for neural network analysis. Front. Syst. Neurosci. 3:21. doi: 10.3389/neuro.06.021.2009
-
(2010)
Front. Syst. Neurosci.
, vol.3
, pp. 21
-
-
El Jundi, B.1
Heinze, S.2
Lenschow, C.3
Kurylas, A.4
Rohlfing, T.5
Homberg, U.6
-
31
-
-
0141747177
-
Development and evolution of the insect mushroom bodies: Towards the understanding of conserved developmental mechanisms in a higher brain center
-
Farris, S. M., and Sinakevitch, I. (2003). Development and evolution of the insect mushroom bodies: towards the understanding of conserved developmental mechanisms in a higher brain center. Arthropod Struct. Dev. 32, 79–101. doi: 10.1016/s1467-8039(03)00009-4
-
(2003)
Arthropod Struct. Dev.
, vol.32
, pp. 79-101
-
-
Farris, S.M.1
Sinakevitch, I.2
-
32
-
-
56949104099
-
Role of aminergic (Serotonin and dopamine) systems in the embryogenesis and different embryonic behaviors of the pond snail, Lymnaea stagnalis
-
Filla, A., Hiripi, L., and Elekes, K. (2009). Role of aminergic (serotonin and dopamine) systems in the embryogenesis and different embryonic behaviors of the pond snail, Lymnaea stagnalis. Comp. Biochem. Physiol. C Toxicol. Pharmacol. 149, 73–82. doi: 10.1016/j.cbpc.2008.07.004
-
(2009)
Comp. Biochem. Physiol. C Toxicol. Pharmacol.
, vol.149
, pp. 73-82
-
-
Filla, A.1
Hiripi, L.2
Elekes, K.3
-
33
-
-
0030911021
-
Neuropeptide hirarchies and the activation of sequential motor behaviors in the hawkmoth Manduca sexta
-
Gammie, S. C., and Truman, J. W. (1997). Neuropeptide hirarchies and the activation of sequential motor behaviors in the hawkmoth Manduca sexta. J. Neurosci. 17, 4389–4397.
-
(1997)
J. Neurosci.
, vol.17
, pp. 4389-4397
-
-
Gammie, S.C.1
Truman, J.W.2
-
34
-
-
0345258497
-
The developmental role of serotonin: News from mouse molecular genetics
-
Gaspar, P., Cases, O., and Maroteaux, L. (2003). The developmental role of serotonin: news from mouse molecular genetics. Nat. Rev. Neurosci. 4, 1002–1012. doi: 10.1038/nrn1256
-
(2003)
Nat. Rev. Neurosci.
, vol.4
, pp. 1002-1012
-
-
Gaspar, P.1
Cases, O.2
Maroteaux, L.3
-
35
-
-
0031912589
-
Nitric oxide and cyclic GMP regulate retinal patterning in the optic lobe of Drosophila
-
Gibbs, S. M., and Truman, J. W. (1998). Nitric oxide and cyclic GMP regulate retinal patterning in the optic lobe of Drosophila. Neuron 20, 83–93. doi: 10.1016/s0896-6273(00)80436-5
-
(1998)
Neuron
, vol.20
, pp. 83-93
-
-
Gibbs, S.M.1
Truman, J.W.2
-
36
-
-
0001129791
-
Embryonic development of the Drosophila central nervous system
-
M. Bate and A. Martinez-Arias (New York, NY: Cold Spring Harbor Press
-
Goodman, C. S., and Doe, C. Q. (1994). “Embryonic development of the Drosophila central nervous system,” in The Development of Drosophila (Vol. 1), eds M. Bate and A. Martinez-Arias (New York, NY: Cold Spring Harbor Press), 1131–1206.
-
(1994)
The Development of Drosophila (Vol. 1)
, pp. 1131-1206
-
-
Goodman, C.S.1
Doe, C.Q.2
-
37
-
-
0018746077
-
Embryonic development of identified neurons: Temporal pattern of morphological and biochemical differentiation
-
Goodman, C. S., O’Shea, M., McCaman, R., and Spitzer, N. C. (1979). Embryonic development of identified neurons: temporal pattern of morphological and biochemical differentiation. Science 204, 1219–1222. doi: 10.1126/science.36661
-
(1979)
Science
, vol.204
, pp. 1219-1222
-
-
Goodman, C.S.1
O’Shea, M.2
McCaman, R.3
Spitzer, N.C.4
-
38
-
-
0018988187
-
Electrical excitability: A spectrum of properties in the progeny of a single embryonic neuroblast
-
Goodman, C. S., Pearson, K. G., and Spitzer, N. C. (1980). Electrical excitability: a spectrum of properties in the progeny of a single embryonic neuroblast. Proc. Natl. Acad. Sci. U S A 77, 1676–1680. doi: 10.1073/pnas.77.3.1676
-
(1980)
Proc. Natl. Acad. Sci. U S A
, vol.77
, pp. 1676-1680
-
-
Goodman, C.S.1
Pearson, K.G.2
Spitzer, N.C.3
-
39
-
-
0001668830
-
Neuronal architecture of the central complex in Drosophila melanogaster
-
Hanesch, U., Fischbach, K.-F., and Heisenberg, M. (1989). Neuronal architecture of the central complex in Drosophila melanogaster. Cell Tissue Res. 257, 343–366. doi: 10.1007/BF00261838
-
(1989)
Cell Tissue Res
, vol.257
, pp. 343-366
-
-
Hanesch, U.1
Fischbach, K.-F.2
Heisenberg, M.3
-
40
-
-
77955625155
-
Electrolytic lesions within central complex neuropils of the cockroach brain affect negotiation of barriers
-
Harley, C. M., and Ritzmann, R. E. (2010). Electrolytic lesions within central complex neuropils of the cockroach brain affect negotiation of barriers. J. Exp. Biol. 213, 2851–2864. doi: 10.1242/jeb.042499
-
(2010)
J. Exp. Biol.
, vol.213
, pp. 2851-2864
-
-
Harley, C.M.1
Ritzmann, R.E.2
-
41
-
-
0024314883
-
Leucokinins, a new family of ion stimulators and inhibitors in insect Malphigian tubules
-
Hayes, T. K., Pannabecker, T. L., Hinckley, D. J., Holman, G. M., Nachman, R. J., Petzel, D. H., et al. (1989). Leucokinins, a new family of ion stimulators and inhibitors in insect Malphigian tubules. Life Sci. 44, 1259–1266. doi: 10.1016/0024-3205(89)90362-7
-
(1989)
Life Sci
, vol.44
, pp. 1259-1266
-
-
Hayes, T.K.1
Pannabecker, T.L.2
Hinckley, D.J.3
Holman, G.M.4
Nachman, R.J.5
Petzel, D.H.6
-
42
-
-
58149279327
-
Neuroarchitecture of the central complex of the desert locust: Intrinsic and columnar neurons
-
Heinze, S., and Homberg, U. (2008). Neuroarchitecture of the central complex of the desert locust: intrinsic and columnar neurons. J. Comp. Neurol. 511, 454–478. doi: 10.1002/cne.21842
-
(2008)
J. Comp. Neurol.
, vol.511
, pp. 454-478
-
-
Heinze, S.1
Homberg, U.2
-
43
-
-
78349298736
-
Developmental expression of neuromodulators in the central complex of the grasshopper Schistocerca gregaria
-
Herbert, Z., Rauser, S., Williams, L., Kapan, N., Güntner, M., Walch, A., et al. (2010). Developmental expression of neuromodulators in the central complex of the grasshopper Schistocerca gregaria. J. Morphol. 271, 1509–1526. doi: 10.1002/jmor.10895
-
(2010)
J. Morphol.
, vol.271
, pp. 1509-1526
-
-
Herbert, Z.1
Rauser, S.2
Williams, L.3
Kapan, N.4
Güntner, M.5
Walch, A.6
-
44
-
-
0026020612
-
Neuroarchitecture of the central complex in the brain of the locust Schistocerca gregaria and S. Americana as revealed by serotonin immunocytochemistry
-
Homberg, U. (1991). Neuroarchitecture of the central complex in the brain of the locust Schistocerca gregaria and S. americana as revealed by serotonin immunocytochemistry. J. Comp. Neurol. 303, 245–254. doi: 10.1002/cne.903030207
-
(1991)
J. Comp. Neurol.
, vol.303
, pp. 245-254
-
-
Homberg, U.1
-
45
-
-
46549101408
-
Interneurons of the central complex in the bee brain (Apis mellifera, L.)
-
Homberg, U. (1985). Interneurons of the central complex in the bee brain (Apis mellifera, L.). J. Insect Physiol. 31, 251–264. doi: 10.1016/0022-1910(85)90127-1
-
(1985)
J. Insect Physiol.
, vol.31
, pp. 251-264
-
-
Homberg, U.1
-
46
-
-
0036467839
-
Neurotransmitters and neuropeptides in the brain of the locust
-
Homberg, U. (2002). Neurotransmitters and neuropeptides in the brain of the locust. Microsc. Res. Tech. 56, 189–209. doi: 10.1002/jemt.10024
-
(2002)
Microsc. Res. Tech.
, vol.56
, pp. 189-209
-
-
Homberg, U.1
-
47
-
-
79952321950
-
Central neural coding of sky polarization in insects
-
Homberg, U., Heinze, S., Pfeiffer, K., Kinoshita, M., and El Jundi, B. (2011). Central neural coding of sky polarization in insects. Philos. Trans. R. Soc. Lond. B Biol. Sci. 366, 680–687. doi: 10.1098/rstb.2010.0199
-
(2011)
Philos. Trans. R. Soc. Lond. B Biol. Sci.
, vol.366
, pp. 680-687
-
-
Homberg, U.1
Heinze, S.2
Pfeiffer, K.3
Kinoshita, M.4
El Jundi, B.5
-
48
-
-
0033526901
-
Immunocytochemistry of GABA in the central complex of the locust Schistocerca gregaria: Identification of immunoreactive neurons and colocalization with neuropeptides
-
Homberg, U., Vitzthum, H., Müller, M., and Binkle, U. (1999). Immunocytochemistry of GABA in the central complex of the locust Schistocerca gregaria: identification of immunoreactive neurons and colocalization with neuropeptides. J. Comp. Neurol. 409, 495–507. doi: 10.1002/(SICI)1096-9861(19990705)409:3<495::AID-CNE12>3.0.CO;2-F3.0.CO;2-F" target="_blank"
-
(1999)
J. Comp. Neurol
, vol.409
, pp. 495-507
-
-
Homberg, U.1
Vitzthum, H.2
Müller, M.3
Binkle, U.4
-
49
-
-
79959877090
-
Bursicon-expressing neurons undergo apoptosis after adult ecdysis in the mosquito Anopheles gambiae
-
Honegger, H.-W., Estévez-Lao, T. Y., and Hillyer, J. F. (2011). Bursicon-expressing neurons undergo apoptosis after adult ecdysis in the mosquito Anopheles gambiae. J. Insect Physiol. 57, 1017–1022. doi: 10.1016/j.jinsphys.2011.04.019
-
(2011)
J. Insect Physiol
, vol.57
, pp. 1017-1022
-
-
Honegger, H.-W.1
Estévez-Lao, T.Y.2
Hillyer, J.F.3
-
50
-
-
34250542554
-
Untersuchungen über die Funktion des Zentralnervensystems und insbesondere des Gehirnes bei der Fortbewegung und der Lauterzeugung der Grillen
-
Huber, F. (1960). Untersuchungen über die Funktion des Zentralnervensystems und insbesondere des Gehirnes bei der Fortbewegung und der Lauterzeugung der Grillen. Z. Vgl. Physiol. 44, 60–132. doi: 10.1007/bf00297863
-
(1960)
Z. Vgl. Physiol.
, vol.44
, pp. 60-132
-
-
Huber, F.1
-
51
-
-
0035141104
-
Juvenile-hormone-mediated plasticity of aggregation behaviour and olfactory processing in adult desert locusts
-
Ignell, R., Couillaud, F., and Anton, S. (2001). Juvenile-hormone-mediated plasticity of aggregation behaviour and olfactory processing in adult desert locusts. J. Exp. Biol. 204, 249–259.
-
(2001)
J. Exp. Biol.
, vol.204
, pp. 249-259
-
-
Ignell, R.1
Couillaud, F.2
Anton, S.3
-
52
-
-
0028464828
-
The central complex of Drosophila melanogaster is involved in flight control: Studies on mutants and mosaics of the gene ellipsoid body open
-
Ilius, M., Wolf, R., and Heisenberg, M. (1994). The central complex of Drosophila melanogaster is involved in flight control: studies on mutants and mosaics of the gene ellipsoid body open. J. Neurogenet. 9, 189–206. doi: 10.3109/01677069409167279
-
(1994)
J. Neurogenet.
, vol.9
, pp. 189-206
-
-
Ilius, M.1
Wolf, R.2
Heisenberg, M.3
-
53
-
-
49949096656
-
Clonal unit architecture of the adult fly brain
-
G. M. Technau (New York, NY: Springer
-
Ito, K., and Awasaki, T. (2008). “Clonal unit architecture of the adult fly brain,” in Brain Development in Drosophila Melanogaster, ed. G. M. Technau (New York, NY: Springer), 137–158.
-
(2008)
Brain Development in Drosophila Melanogaster
, pp. 137-158
-
-
Ito, K.1
Awasaki, T.2
-
54
-
-
0031030360
-
The Drosophila mushroom body is a quadruple structure of clonal units each of which contains a virtually identical set of neurones and glial cells
-
Ito, K., Awano, W., Suzuki, K., Hiromi, Y., and Yamamoto, D. (1997). The Drosophila mushroom body is a quadruple structure of clonal units each of which contains a virtually identical set of neurones and glial cells. Development 124, 761–771.
-
(1997)
Development
, vol.124
, pp. 761-771
-
-
Ito, K.1
Awano, W.2
Suzuki, K.3
Hiromi, Y.4
Yamamoto, D.5
-
55
-
-
84896691863
-
A systematic nomenclature for the insect brain
-
Ito, K., Shinomiya, K., Ito, M., Armstrong, J. D., Boyan, G., Hartenstein, V., et al. (2014). A systematic nomenclature for the insect brain. Neuron 81, 755–765. doi: 10.1016/j.neuron.2013.12.017
-
(2014)
Neuron
, vol.81
, pp. 755-765
-
-
Ito, K.1
Shinomiya, K.2
Ito, M.3
Armstrong, J.D.4
Boyan, G.5
Hartenstein, V.6
-
56
-
-
74849118490
-
Postembryonic development of transit amplifying neuroblast lineages in the Drosophila brain
-
Izergina, N., Balmer, J., Bello, B., and Reichert, H. (2009). Postembryonic development of transit amplifying neuroblast lineages in the Drosophila brain. Neural Dev. 4:44. doi: 10.1186/1749-8104-4-44
-
(2009)
Neural Dev
, vol.4
-
-
Izergina, N.1
Balmer, J.2
Bello, B.3
Reichert, H.4
-
57
-
-
60149102968
-
Serotonin 5-HT (2) and 5-HT (IA)-like receptors differentially modulate aggressive behaviors in Drosophila melanogaster
-
Johnson, O., Becnel, J., and Nichols, C. D. (2009). Serotonin 5-HT (2) and 5-HT (IA)-like receptors differentially modulate aggressive behaviors in Drosophila melanogaster. Neuroscience 158, 1292–1300. doi: 10.1016/j.neuroscience.2008.10.055
-
(2009)
Neuroscience
, vol.158
, pp. 1292-1300
-
-
Johnson, O.1
Becnel, J.2
Nichols, C.D.3
-
58
-
-
78650253271
-
Chemical neuroanatomy of the Drosophila central complex: Distribution of multiple neuropeptides in relation to neurotransmitters
-
Kahsai, L., and Winther, A. M. E. (2011). Chemical neuroanatomy of the Drosophila central complex: distribution of multiple neuropeptides in relation to neurotransmitters. J. Comp. Neurol. 519, 290–315. doi: 10.1002/cne.22520
-
(2011)
J. Comp. Neurol.
, vol.519
, pp. 290-315
-
-
Kahsai, L.1
Winther, A.M.E.2
-
59
-
-
0022002234
-
The acquisition and expression of a peptidergic phenotype in the grasshopper embryo
-
Keshishian, H., and O’Shea, M. (1985). The acquisition and expression of a peptidergic phenotype in the grasshopper embryo. J. Neurosci. 5, 1005–1015.
-
(1985)
J. Neurosci.
, vol.5
, pp. 1005-1015
-
-
Keshishian, H.1
O’Shea, M.2
-
60
-
-
0033215981
-
Serotonin enhances central olfactory neuron responses to female sex pheromone in the male sphinx moth Manduca sexta
-
Kloppenburg, P., Ferns, D., and Mercer, A. R. (1999). Serotonin enhances central olfactory neuron responses to female sex pheromone in the male sphinx moth Manduca sexta. J. Neurosci. 19, 8172–8181.
-
(1999)
J. Neurosci.
, vol.19
, pp. 8172-8181
-
-
Kloppenburg, P.1
Ferns, D.2
Mercer, A.R.3
-
61
-
-
84964005052
-
The insect central complex as model for heterochronic brain development—background, concepts and tools
-
Koniszewski, N. D. B., Kollmann, M., Bigham, M., Farnworth, M., He, B., Büscher, M., et al. (2016). The insect central complex as model for heterochronic brain development—background, concepts and tools. Dev. Genes Evol. 226, 209–219. doi: 10.1007/s00427-016-0542-7
-
(2016)
Dev. Genes Evol.
, vol.226
, pp. 209-219
-
-
Koniszewski, N.D.B.1
Kollmann, M.2
Bigham, M.3
Farnworth, M.4
He, B.5
Büscher, M.6
-
62
-
-
0033009980
-
Allatostatin modulates skeletal muscle performance in crustaceans through pre- and postsynaptic effects
-
Kreissl, S., Weiss, T., Djokaj, S., Balezinam, O., and Rathmayer, W. (1999). Allatostatin modulates skeletal muscle performance in crustaceans through pre- and postsynaptic effects. Eur. J. Neurosci. 11, 2519–2530. doi: 10.1046/j.1460-9568.1999.00674.x
-
(1999)
Eur. J. Neurosci.
, vol.11
, pp. 2519-2530
-
-
Kreissl, S.1
Weiss, T.2
Djokaj, S.3
Balezinam, O.4
Rathmayer, W.5
-
63
-
-
80053250345
-
Neurochemical architecture of the central complex related to its function in the control of grasshopper acoustic communication
-
Kunst, M., Pförtner, R., Aschenbrenner, K., and Heinrich, R. (2011). Neurochemical architecture of the central complex related to its function in the control of grasshopper acoustic communication. PLoS One 6:e25613. doi: 10.1371/journal.pone.0025613
-
(2011)
Plos One
, vol.6
-
-
Kunst, M.1
Pförtner, R.2
Aschenbrenner, K.3
Heinrich, R.4
-
64
-
-
14644443586
-
Localization of nitric oxide synthase in the central complex and surrounding midbrain neuropils of the locust Schistocerca gregaria
-
Kurylas, A. E., Ott, S. R., Schachtner, J., Elphick, M. R., Williams, L., and Homberg, U. (2005). Localization of nitric oxide synthase in the central complex and surrounding midbrain neuropils of the locust Schistocerca gregaria. J. Comp. Neurol. 484, 206–223. doi: 10.1002/cne.20467
-
(2005)
J. Comp. Neurol.
, vol.484
, pp. 206-223
-
-
Kurylas, A.E.1
Ott, S.R.2
Schachtner, J.3
Elphick, M.R.4
Williams, L.5
Homberg, U.6
-
65
-
-
0030584092
-
Nitric oxide regulates cell proliferation during Drosophila development
-
Kuzin, B., Roberts, I., Peunova, N., and Enikolopov, G. (1996). Nitric oxide regulates cell proliferation during Drosophila development. Cell 87, 639–649. doi: 10.1016/s0092-8674(00)81384-7
-
(1996)
Cell
, vol.87
, pp. 639-649
-
-
Kuzin, B.1
Roberts, I.2
Peunova, N.3
Enikolopov, G.4
-
66
-
-
53349089565
-
Clonal analysis of Drosophila antennal lobe neurons: Diverse neuronal architectures in the lateral neuroblast lineage
-
Lai, S. L., Awasaki, T., Ito, K., and Lee, T. (2008). Clonal analysis of Drosophila antennal lobe neurons: diverse neuronal architectures in the lateral neuroblast lineage. Development 135, 2883–2893. doi: 10.1242/dev.024380
-
(2008)
Development
, vol.135
, pp. 2883-2893
-
-
Lai, S.L.1
Awasaki, T.2
Ito, K.3
Lee, T.4
-
67
-
-
0035341376
-
Mosaic analysis with a repressible cell marker (MARCM) for Drosophila neural development
-
Lee, T., and Luo, L. (2001). Mosaic analysis with a repressible cell marker (MARCM) for Drosophila neural development. Trends Neurosci. 24, 251–254. doi: 10.1016/s0166-2236(00)01791-4
-
(2001)
Trends Neurosci
, vol.24
, pp. 251-254
-
-
Lee, T.1
Luo, L.2
-
68
-
-
0025217351
-
Modular construction of nervous systems: A basic principle of design for invertebrates and vertebrates
-
Leise, E. M. (1990). Modular construction of nervous systems: a basic principle of design for invertebrates and vertebrates. Brain Res. Brain Res. Rev. 15, 1–23. doi: 10.1016/0165-0173(90)90009-d
-
(1990)
Brain Res. Brain Res. Rev.
, vol.15
, pp. 1-23
-
-
Leise, E.M.1
-
69
-
-
0021646369
-
Changes in neuronal circuits during insect metamorphosis
-
Levine, R. B. (1984). Changes in neuronal circuits during insect metamorphosis. J. Exp. Biol. 112, 27–44.
-
(1984)
J. Exp. Biol.
, vol.112
, pp. 27-44
-
-
Levine, R.B.1
-
70
-
-
84879549934
-
Glia associated with central complex lineages in the embryonic brain of the grasshopper Schistocerca gregaria
-
Liu, Y., and Boyan, G. (2013). Glia associated with central complex lineages in the embryonic brain of the grasshopper Schistocerca gregaria. Dev. Genes Evol. 223, 213–223. doi: 10.1007/s00427-013-0439-7
-
(2013)
Dev. Genes Evol.
, vol.223
, pp. 213-223
-
-
Liu, Y.1
Boyan, G.2
-
71
-
-
31844456883
-
Distinct memory traces for two visual features in the Drosophila brain
-
Liu, G., Seiler, H., Wen, A., Zars, T., Ito, K., Wolf, M., et al. (2006). Distinct memory traces for two visual features in the Drosophila brain. Nature 439, 551–556. doi: 10.1038/nature04381
-
(2006)
Nature
, vol.439
, pp. 551-556
-
-
Liu, G.1
Seiler, H.2
Wen, A.3
Zars, T.4
Ito, K.5
Wolf, M.6
-
72
-
-
0033523984
-
Neural signalling: Does colocalisation imply co-transmission?
-
Marder, E. (1999). Neural signalling: does colocalisation imply co-transmission? Curr. Biol. 9, R809–R811. doi: 10.1016/s0960-9822(99)80496-5
-
(1999)
Curr. Biol.
, vol.9
, pp. R809-R811
-
-
Marder, E.1
-
73
-
-
0033197791
-
Central complex substructures are required for the maintenance of locomotor activity in Drosophila melanogaster
-
Martin, J. R., Raabe, T., and Heisenberg, M. (1999). Central complex substructures are required for the maintenance of locomotor activity in Drosophila melanogaster. J. Comp. Physiol. A 185, 277–288. doi: 10.1007/s003590050387
-
(1999)
J. Comp. Physiol. A
, vol.185
, pp. 277-288
-
-
Martin, J.R.1
Raabe, T.2
Heisenberg, M.3
-
74
-
-
0032495018
-
Developmental anatomy of the Drosophila brain: Neuroanatomy is gene expression
-
Meinertzhagen, I. A., Emsley, J. G., and Sun, X. J. (1998). Developmental anatomy of the Drosophila brain: neuroanatomy is gene expression. J. Comp. Neurol. 402, 1–9. doi: 10.1002/(SICI)1096-9861(19981207)402:1<1::AID-CNE1>3.0.CO;2-Q3.0.CO;2-Q" target="_blank"
-
(1998)
J. Comp. Neurol
, vol.402
, pp. 1-9
-
-
Meinertzhagen, I.A.1
Emsley, J.G.2
Sun, X.J.3
-
75
-
-
0030742656
-
Modular structures in the mushroom body of the cockroach
-
Mizunami, M., Iwasaki, M., Nishikawa, M., and Okada, R. (1997). Modular structures in the mushroom body of the cockroach. Neurosci. Lett. 229, 153–156. doi: 10.1016/s0304-3940(97)00438-2
-
(1997)
Neurosci. Lett.
, vol.229
, pp. 153-156
-
-
Mizunami, M.1
Iwasaki, M.2
Nishikawa, M.3
Okada, R.4
-
76
-
-
0030897586
-
Neuroarchitecture of the lower division of the central body in the brain of the locust (Schistocerca gregaria)
-
Müller, M., Homberg, U., and Kühn, A. (1997). Neuroarchitecture of the lower division of the central body in the brain of the locust (Schistocerca gregaria). Cell Tissue Res. 288, 159–176. doi: 10.1007/s004410050803
-
(1997)
Cell Tissue Res
, vol.288
, pp. 159-176
-
-
Müller, M.1
Homberg, U.2
Kühn, A.3
-
77
-
-
0036757382
-
Neuropeptides in the nervous system of Drosophila and other insects: Multiple roles as neuromodulators and neurohormones
-
Nässel, D. R. (2002). Neuropeptides in the nervous system of Drosophila and other insects: multiple roles as neuromodulators and neurohormones. Prog. Neurobiol. 68, 1–84. doi: 10.1016/s0301-0082(02)00057-6
-
(2002)
Prog. Neurobiol.
, vol.68
, pp. 1-84
-
-
Nässel, D.R.1
-
78
-
-
0036015180
-
Neuronal co-localization of different isoforms of tachykinin-related peptides (LemTRPs) in the cockroach brain
-
Nässel, D. R., and Winther, A. M. (2002). Neuronal co-localization of different isoforms of tachykinin-related peptides (LemTRPs) in the cockroach brain. Cell Tissue Res. 308, 225–239. doi: 10.1007/s00441-002-0538-7
-
(2002)
Cell Tissue Res
, vol.308
, pp. 225-239
-
-
Nässel, D.R.1
Winther, A.M.2
-
79
-
-
46249133489
-
Analysis of a spatial orientation memory in Drosophila
-
Neuser, K., Triphan, T., Mronz, M., Poeck, B., and Strauss, R. (2008). Analysis of a spatial orientation memory in Drosophila. Nature 453, 1244–1247. doi: 10.1038/nature07003
-
(2008)
Nature
, vol.453
, pp. 1244-1247
-
-
Neuser, K.1
Triphan, T.2
Mronz, M.3
Poeck, B.4
Strauss, R.5
-
80
-
-
77956734886
-
Proctolin: From “gut factor” to model neuropeptide
-
O’Shea, M., and Adams, M. (1986). Proctolin: from “gut factor” to model neuropeptide. Adv. Insect Physiol. 19, 1–28. doi: 10.1016/s0065-2806(08)60099-5
-
(1986)
Adv. Insect Physiol.
, vol.19
, pp. 1-28
-
-
O’Shea, M.1
Adams, M.2
-
81
-
-
0032567692
-
Nitric oxide compartments in the mushroom bodies of the locust brain
-
O’Shea, M., Colbert, R., Williams, L., and Dunn, S. (1998). Nitric oxide compartments in the mushroom bodies of the locust brain. Neuroreport 9, 333–336. doi: 10.1097/00001756-199801260-00028
-
(1998)
Neuroreport
, vol.9
, pp. 333-336
-
-
O’Shea, M.1
Colbert, R.2
Williams, L.3
Dunn, S.4
-
82
-
-
66149115230
-
Differential roles of the fan-shaped body and the ellipsoid body in Drosophila visual pattern memory
-
Pan, Y., Zhou, Y., Guo, C., Gong, H., Gong, Z., and Liu, L. (2009). Differential roles of the fan-shaped body and the ellipsoid body in Drosophila visual pattern memory. Learn. Mem. 16, 289–295. doi: 10.1101/lm.1331809
-
(2009)
Learn. Mem.
, vol.16
, pp. 289-295
-
-
Pan, Y.1
Zhou, Y.2
Guo, C.3
Gong, H.4
Gong, Z.5
Liu, L.6
-
83
-
-
0142136740
-
Regulation of neuroblast competence in Drosophila
-
Pearson, B. J., and Doe, C. Q. (2003). Regulation of neuroblast competence in Drosophila. Nature 425, 624–628. doi: 10.1038/nature01910
-
(2003)
Nature
, vol.425
, pp. 624-628
-
-
Pearson, B.J.1
Doe, C.Q.2
-
84
-
-
0028335646
-
Isolation, sequence and bioactivity of PDVDHVFLRFamide and ADVGHVFLRFamide peptides from the locust central nervous system
-
Peeff, N. M., Orchard, I., and Lange, A. B. (1994). Isolation, sequence and bioactivity of PDVDHVFLRFamide and ADVGHVFLRFamide peptides from the locust central nervous system. Peptides 15, 387–392. doi: 10.1016/0196-9781(94)90193-7
-
(1994)
Peptides
, vol.15
, pp. 387-392
-
-
Peeff, N.M.1
Orchard, I.2
Lange, A.B.3
-
85
-
-
84891935554
-
Organization and functional roles of the central complex in the insect brain
-
Pfeiffer, K., and Homberg, U. (2014). Organization and functional roles of the central complex in the insect brain. Annu. Rev. Entomol. 59, 165–184. doi: 10.1146/annurev-ento-011613-162031
-
(2014)
Annu. Rev. Entomol.
, vol.59
, pp. 165-184
-
-
Pfeiffer, K.1
Homberg, U.2
-
86
-
-
0346729742
-
Neuropeptides in perisympathetic organs of Manduca sexta: Specific composition and changes during the development
-
Predel, R., Herbert, Z., and Eckert, M. (2003). Neuropeptides in perisympathetic organs of Manduca sexta: specific composition and changes during the development. Peptides 24, 1457–1464. doi: 10.1016/j.peptides.2003.07.020
-
(2003)
Peptides
, vol.24
, pp. 1457-1464
-
-
Predel, R.1
Herbert, Z.2
Eckert, M.3
-
87
-
-
33750868758
-
Biology of the CAPA peptides in insects
-
Predel, R., and Wegener, C. (2006). Biology of the CAPA peptides in insects. Cell Mol. Life Sci. 63, 2477–2490. doi: 10.1007/s00018-006-6187-3
-
(2006)
Cell Mol. Life Sci.
, vol.63
, pp. 2477-2490
-
-
Predel, R.1
Wegener, C.2
-
88
-
-
0031605129
-
Cockroach allatostatin-immunoreactive neurons and effects of cockroach allatostatin in earwigs
-
Rankin, S. M., Stay, B., Chan, K., and Jackson, E. S. (1998). Cockroach allatostatin-immunoreactive neurons and effects of cockroach allatostatin in earwigs. Arch. Insect Biochem. Physiol. 38, 155–165. doi: 10.1002/(SICI)1520-6327(1998)38:4<155::AID-ARCH1>3.0.CO;2-Q3.0.CO;2-Q" target="_blank"
-
(1998)
Arch. Insect Biochem. Physiol
, vol.38
, pp. 155-165
-
-
Rankin, S.M.1
Stay, B.2
Chan, K.3
Jackson, E.S.4
-
89
-
-
55749097424
-
Developmental regulation of neuromodulator function in the stomatogastric ganglion of the lobster, Homarus americanus
-
Rehm, K. J., Deeg, K. E., and Marder, E. (2008). Developmental regulation of neuromodulator function in the stomatogastric ganglion of the lobster, Homarus americanus. J. Neurosci. 28, 9828–9839. doi: 10.1523/JNEUROSCI.2328-08.2008
-
(2008)
J. Neurosci.
, vol.28
, pp. 9828-9839
-
-
Rehm, K.J.1
Deeg, K.E.2
Marder, E.3
-
90
-
-
0031172147
-
Building a brain: Insights from insects
-
Reichert, H., and Boyan, G. S. (1997). Building a brain: insights from insects. Trends Neurosci. 20, 258–264. doi: 10.1016/s0166-2236(96)01034-x
-
(1997)
Trends Neurosci
, vol.20
, pp. 258-264
-
-
Reichert, H.1
Boyan, G.S.2
-
91
-
-
0032697428
-
Genetic analysis of the Drosophila ellipsoid body neuropil: Organization and development of the central complex
-
Renn, S. C. N., Armstrong, J. D., Yang, M., Wang, Z., An, X., Kaiser, K., et al. (1999). Genetic analysis of the Drosophila ellipsoid body neuropil: organization and development of the central complex. J. Neurobiol. 41, 189–207. doi: 10.1002/(SICI)1097-4695(19991105)41:2<189::AID-NEU3>3.0.CO;2-Q3.0.CO;2-Q" target="_blank"
-
(1999)
J. Neurobiol
, vol.41
, pp. 189-207
-
-
Renn, S.C.N.1
Armstrong, J.D.2
Yang, M.3
Wang, Z.4
An, X.5
Kaiser, K.6
-
92
-
-
0037413909
-
Serotonin in the developing stomatogastric system of the lobster, Homarus americanus
-
Richards, K. S., Simon, D. J., Pulver, S. R., Beltz, B. S., and Marder, E. (2003). Serotonin in the developing stomatogastric system of the lobster, Homarus americanus. J. Neurobiol. 54, 380–392. doi: 10.1002/neu.10136
-
(2003)
J. Neurobiol.
, vol.54
, pp. 380-392
-
-
Richards, K.S.1
Simon, D.J.2
Pulver, S.R.3
Beltz, B.S.4
Marder, E.5
-
93
-
-
84876721745
-
Early-born neurons in type II neuroblast lineages establish a larval primordium and integrate into adult circuitry during central complex development in Drosophila
-
Riebli, N., Viktorin, G., and Reichert, H. (2013). Early-born neurons in type II neuroblast lineages establish a larval primordium and integrate into adult circuitry during central complex development in Drosophila. Neural Dev. 8:6. doi: 10.1186/1749-8104-8-6
-
(2013)
Neural Dev
, vol.8
-
-
Riebli, N.1
Viktorin, G.2
Reichert, H.3
-
94
-
-
0025356696
-
FMRFamide-like peptides in the locust: Distribution, partial characterization and bioactivity
-
Robb, S., and Evans, P. D. (1990). FMRFamide-like peptides in the locust: distribution, partial characterization and bioactivity. J. Exp. Biol. 149, 335–360.
-
(1990)
J. Exp. Biol.
, vol.149
, pp. 335-360
-
-
Robb, S.1
Evans, P.D.2
-
95
-
-
0036467852
-
Biochemistry and molecular biology of receptors for biogenic amines in locusts
-
Roeder, T. (2002). Biochemistry and molecular biology of receptors for biogenic amines in locusts. Microsc. Res. Tech. 56, 237–247. doi: 10.1002/jemt.10027
-
(2002)
Microsc. Res. Tech.
, vol.56
, pp. 237-247
-
-
Roeder, T.1
-
96
-
-
6344260567
-
Substantial changes in central nervous system neurotransmitters and neuromodulators accompany phase change in the locust
-
Rogers, S. M., Matheson, T., Sasaki, K., Kendrick, K., Simpson, S. J., and Burrows, M. (2004). Substantial changes in central nervous system neurotransmitters and neuromodulators accompany phase change in the locust. J. Exp. Biol. 207, 3603–3617. doi: 10.1242/jeb.01183
-
(2004)
J. Exp. Biol.
, vol.207
, pp. 3603-3617
-
-
Rogers, S.M.1
Matheson, T.2
Sasaki, K.3
Kendrick, K.4
Simpson, S.J.5
Burrows, M.6
-
97
-
-
0021364154
-
Early immunohistochemical detection of somatostatin-like and methionine-enkephalin-like neuropeptides in the brain of the migratory locust embryo
-
Romeuf, M., and Rémy, C. (1984). Early immunohistochemical detection of somatostatin-like and methionine-enkephalin-like neuropeptides in the brain of the migratory locust embryo. Cell Tissue Res. 236, 289–292. doi: 10.1007/bf00214229
-
(1984)
Cell Tissue Res
, vol.236
, pp. 289-292
-
-
Romeuf, M.1
Rémy, C.2
-
98
-
-
0036022338
-
Serotonin sets the day state in the neurons that control coupling between the optic lobe circadian pacemakers in the cricket Gryllus bimaculatus
-
Saifulla, A. S. M., and Tomioka, K. (2002). Serotonin sets the day state in the neurons that control coupling between the optic lobe circadian pacemakers in the cricket Gryllus bimaculatus. J. Exp. Biol. 205, 1305–1314.
-
(2002)
J. Exp. Biol.
, vol.205
, pp. 1305-1314
-
-
Saifulla, A.S.M.1
Tomioka, K.2
-
99
-
-
0037810919
-
Insight into tachykinin-related peptides, their receptors and invertebrate tachykinins: A review
-
Satake, H., Kawada, T., Nomoto, K., and Minakata, H. (2003). Insight into tachykinin-related peptides, their receptors and invertebrate tachykinins: a review. Zoolog. Sci. 20, 533–549. doi: 10.2108/zsj.20.533
-
(2003)
Zoolog. Sci.
, vol.20
, pp. 533-549
-
-
Satake, H.1
Kawada, T.2
Nomoto, K.3
Minakata, H.4
-
100
-
-
0032524267
-
Ecdysiostatins and allatostatins in Schistocerca gregaria
-
Schoofs, L., Janssen, I., Veelaert, D., Vanden Broeck, J., Tobe, S. S., and De Loof, A. (1998). Ecdysiostatins and allatostatins in Schistocerca gregaria. Proc. Ann. N Y Acad. Sci. 15, 301–305. doi: 10.1111/j.1749-6632.1998.tb10780.x
-
(1998)
Proc. Ann. N Y Acad. Sci.
, vol.15
, pp. 301-305
-
-
Schoofs, L.1
Janssen, I.2
Veelaert, D.3
Vanden Broeck, J.4
Tobe, S.S.5
De Loof, A.6
-
101
-
-
0030477346
-
The developmental expression of serotonin-immunoreactivity in the brain of the pupal honeybee
-
Seidel, C., and Bicker, G. (1996). The developmental expression of serotonin-immunoreactivity in the brain of the pupal honeybee. Tissue Cell 28, 663–672. doi: 10.1016/s0040-8166(96)80070-x
-
(1996)
Tissue Cell
, vol.28
, pp. 663-672
-
-
Seidel, C.1
Bicker, G.2
-
102
-
-
0033709834
-
Nitric oxide and cGMP influence axogenesis of antennal pioneer neurons
-
Seidel, C., and Bicker, G. (2000). Nitric oxide and cGMP influence axogenesis of antennal pioneer neurons. Development 127, 4541–4549.
-
(2000)
Development
, vol.127
, pp. 4541-4549
-
-
Seidel, C.1
Bicker, G.2
-
103
-
-
0037144202
-
Developmental expression of nitric oxide/cyclic GMP signaling pathways in the brain of the embryonic grasshopper
-
Seidel, C., and Bicker, G. (2002). Developmental expression of nitric oxide/cyclic GMP signaling pathways in the brain of the embryonic grasshopper. Brain Res. Dev. Brain Res. 138, 71–79. doi: 10.1016/s0165-3806(02)00466-2
-
(2002)
Brain Res. Dev. Brain Res.
, vol.138
, pp. 71-79
-
-
Seidel, C.1
Bicker, G.2
-
104
-
-
0036259051
-
The tachykinin peptide family
-
Severini, C., Improta, G., Falconieri-Erspamer, G., Salvadori, S., and Erspamer, V. (2002). The tachykinin peptide family. Pharmacol. Rev. 54, 285–322. doi: 10.1124/pr.54.2.285
-
(2002)
Pharmacol. Rev.
, vol.54
, pp. 285-322
-
-
Severini, C.1
Improta, G.2
Falconieri-Erspamer, G.3
Salvadori, S.4
Erspamer, V.5
-
105
-
-
68449102348
-
NO/cGMP signalling: L-citrulline and cGMP immunostaining in the central complex of the desert locust Schistocerca gregaria
-
Siegl, T., Schachtner, J., Holstein, G. R., and Homberg, U. (2009). NO/cGMP signalling: L-citrulline and cGMP immunostaining in the central complex of the desert locust Schistocerca gregaria. Cell Tissue Res. 337, 327–340. doi: 10.1007/s00441-009-0820-z
-
(2009)
Cell Tissue Res
, vol.337
, pp. 327-340
-
-
Siegl, T.1
Schachtner, J.2
Holstein, G.R.3
Homberg, U.4
-
106
-
-
44449090400
-
Serotonin is necessary for place memory in Drosophila
-
Sitaraman, D., Zars, M., Laferriere, H., Chen, Y. C., Sable-Smith, A., Kitamoto, T., et al. (2008). Serotonin is necessary for place memory in Drosophila. Proc. Natl. Acad. Sci. U S A 105, 5579–5584. doi: 10.1073/pnas.0710168105
-
(2008)
Proc. Natl. Acad. Sci. U S A
, vol.105
, pp. 5579-5584
-
-
Sitaraman, D.1
Zars, M.2
Laferriere, H.3
Chen, Y.C.4
Sable-Smith, A.5
Kitamoto, T.6
-
107
-
-
33846544340
-
Embryonic differentiation of 5HT-containing neurons in the enteric nervous system of the locust (Locusta migratoria)
-
Stern, M., Knipp, S., and Bicker, G. (2007). Embryonic differentiation of 5HT-containing neurons in the enteric nervous system of the locust (Locusta migratoria). J. Comp. Neurol. 501, 38–51. doi: 10.1002/cne.21235
-
(2007)
J. Comp. Neurol.
, vol.501
, pp. 38-51
-
-
Stern, M.1
Knipp, S.2
Bicker, G.3
-
108
-
-
0022907586
-
Basic circuitry of an adult-specific motor program completed with embryogenesis
-
Stevenson, P. A., and Kutsch, W. (1986). Basic circuitry of an adult-specific motor program completed with embryogenesis. Naturwissenschaften 73, 741–743. doi: 10.1007/bf00399248
-
(1986)
Naturwissenschaften
, vol.73
, pp. 741-743
-
-
Stevenson, P.A.1
Kutsch, W.2
-
110
-
-
0033371241
-
A brain region in insects that supervises walking
-
Strausfeld, N. J. (1999). A brain region in insects that supervises walking. Prog. Brain Res. 123, 273–284. doi: 10.1016/s0079-6123(08)62863-0
-
(1999)
Prog. Brain Res.
, vol.123
, pp. 273-284
-
-
Strausfeld, N.J.1
-
111
-
-
79958865040
-
-
Cambridge, MA: Harvard Univ. Press
-
Strausfeld, N. J. (2012). Arthropod Brains. Cambridge, MA: Harvard Univ. Press.
-
(2012)
Arthropod Brains
-
-
Strausfeld, N.J.1
-
112
-
-
0036901181
-
The central complex and the genetic dissection of locomotor behaviour
-
Strauss, R. (2002). The central complex and the genetic dissection of locomotor behaviour. Curr. Opin. Neurobiol. 12, 633–638. doi: 10.1016/s0959-4388(02)00385-9
-
(2002)
Curr. Opin. Neurobiol.
, vol.12
, pp. 633-638
-
-
Strauss, R.1
-
113
-
-
0026919289
-
No-bridge of Drosophila melanogaster: Portrait of a structural brain mutant of the central complex
-
Strauss, R., Hanesch, U., Kinkelin, M., Wolf, R., and Heisenberg, M. (1992). No-bridge of Drosophila melanogaster: portrait of a structural brain mutant of the central complex. J. Neurogenet. 8, 125–155. doi: 10.3109/01677069209083444
-
(1992)
J. Neurogenet.
, vol.8
, pp. 125-155
-
-
Strauss, R.1
Hanesch, U.2
Kinkelin, M.3
Wolf, R.4
Heisenberg, M.5
-
114
-
-
0027459490
-
A higher control center of locomotor behavior in the Drosophila brain
-
Strauss, R., and Heisenberg, M. (1993). A higher control center of locomotor behavior in the Drosophila brain. J. Neurosci. 13, 1852–1861.
-
(1993)
J. Neurosci.
, vol.13
, pp. 1852-1861
-
-
Strauss, R.1
Heisenberg, M.2
-
115
-
-
25844469514
-
Development and sensitivity to serotonin of Drosophila serotonergic varicosities in the central nervous system
-
Sykes, P. A., and Condron, B. G. (2005). Development and sensitivity to serotonin of Drosophila serotonergic varicosities in the central nervous system. Dev. Biol. 286, 207–216. doi: 10.1016/j.ydbio.2005.07.025
-
(2005)
Dev. Biol.
, vol.286
, pp. 207-216
-
-
Sykes, P.A.1
Condron, B.G.2
-
116
-
-
0021358362
-
Cell determination and differentiation of identified serotonin-immunoreactive neurons in the grasshopper embryo
-
Taghert, P. H., and Goodman, C. S. (1984). Cell determination and differentiation of identified serotonin-immunoreactive neurons in the grasshopper embryo. J. Neurosci. 4, 989–1000.
-
(1984)
J. Neurosci.
, vol.4
, pp. 989-1000
-
-
Taghert, P.H.1
Goodman, C.S.2
-
117
-
-
0000805590
-
The distribution and molecular characeristics of the tanning hormone, bursicon, in the tobacco hornmoth, Manduca sexta
-
Taghert, P. H., and Truman, J. W. (1982a). The distribution and molecular characeristics of the tanning hormone, bursicon, in the tobacco hornmoth, Manduca sexta. J. Exp. Biol. 98, 373–383.
-
(1982)
J. Exp. Biol.
, vol.98
, pp. 373-383
-
-
Taghert, P.H.1
Truman, J.W.2
-
118
-
-
0000805589
-
Identification of the bursicon-containing neurons in abdominal ganglia of the tobacco hornworm moth, Manduca sexta
-
Taghert, P. H., and Truman, J. W. (1982b). Identification of the bursicon-containing neurons in abdominal ganglia of the tobacco hornworm moth, Manduca sexta. J. Exp. Biol. 98, 385–401.
-
(1982)
J. Exp. Biol.
, vol.98
, pp. 385-401
-
-
Taghert, P.H.1
Truman, J.W.2
-
119
-
-
0030691191
-
Early development of the Drosophila mushroom bodies, brain centres for associative learning and memory
-
Tettamanti, M., Armstrong, J. D., Endo, K., Yang, M. Y., Furukubo-Tokunaga, K., Kaiser, K., et al. (1997). Early development of the Drosophila mushroom bodies, brain centres for associative learning and memory. Dev. Genes Evol. 207, 242–252. doi: 10.1007/s004270050112
-
(1997)
Dev. Genes Evol.
, vol.207
, pp. 242-252
-
-
Tettamanti, M.1
Armstrong, J.D.2
Endo, K.3
Yang, M.Y.4
Furukubo-Tokunaga, K.5
Kaiser, K.6
-
120
-
-
0028878523
-
Cellular colocalization of diuretic peptides in locusts: A potent control mechanism
-
Thompson, K. S. J., Rayne, R. C., Gibbon, C. R., May, S. T., Patel, M., Coast, G. M., et al. (1995). Cellular colocalization of diuretic peptides in locusts: a potent control mechanism. Peptides 16, 95–104. doi: 10.1016/0196-9781(94)00158-3
-
(1995)
Peptides
, vol.16
, pp. 95-104
-
-
Thompson, K.S.J.1
Rayne, R.C.2
Gibbon, C.R.3
May, S.T.4
Patel, M.5
Coast, G.M.6
-
121
-
-
0026099789
-
Anatomy and physiology of spiking local and intersegmental interneurons in the median neuroblast lineage of the grasshopper
-
Thompson, K. S. J., and Siegler, M. V. S. (1991). Anatomy and physiology of spiking local and intersegmental interneurons in the median neuroblast lineage of the grasshopper. J. Comp. Neurol. 305, 659–675. doi: 10.1002/cne.903050409
-
(1991)
J. Comp. Neurol.
, vol.305
, pp. 659-675
-
-
Thompson, K.S.J.1
Siegler, M.V.S.2
-
122
-
-
77956157767
-
Profiling by image registration reveals common origin of Annelid mushroom bodies and vertebrate pallium
-
Tomer, R., Denes, A. S., Tessmar-Raible, K., and Arendt, D. (2010). Profiling by image registration reveals common origin of Annelid mushroom bodies and vertebrate pallium. Cell 142, 800–809. doi: 10.1016/j.cell.2010.07.043
-
(2010)
Cell
, vol.142
, pp. 800-809
-
-
Tomer, R.1
Denes, A.S.2
Tessmar-Raible, K.3
Arendt, D.4
-
123
-
-
77950481182
-
Visual targeting of motor actions in climbing Drosophila
-
Triphan, T., Poeck, B., Neuser, K., and Strauss, R. (2010). Visual targeting of motor actions in climbing Drosophila. Curr. Biol. 20, 663–668. doi: 10.1016/j.cub.2010.02.055
-
(2010)
Curr. Biol.
, vol.20
, pp. 663-668
-
-
Triphan, T.1
Poeck, B.2
Neuser, K.3
Strauss, R.4
-
124
-
-
0030452222
-
Nitric oxide-sensitive guanylate cyclase activity is asociated with the maturational phase of neuronal development in insects
-
Truman, J. W., De Vente, J., and Ball, E. E. (1996a). Nitric oxide-sensitive guanylate cyclase activity is asociated with the maturational phase of neuronal development in insects. Development 122, 3949–3958.
-
(1996)
Development
, vol.122
, pp. 3949-3958
-
-
Truman, J.W.1
De Vente, J.2
Ball, E.E.3
-
125
-
-
0000936296
-
Dynamics of cyclic GMP levels in identified neurones during ecdysis behaviour in the locust Locusta migratoria
-
Truman, J. W., Ewer, J., and Ball, E. E. (1996b). Dynamics of cyclic GMP levels in identified neurones during ecdysis behaviour in the locust Locusta migratoria. J. Exp. Biol. 199, 749–758.
-
(1996)
J. Exp. Biol.
, vol.199
, pp. 749-758
-
-
Truman, J.W.1
Ewer, J.2
Ball, E.E.3
-
126
-
-
0029893639
-
Evolutionary ancient roles of serotonin: Long-lasting regulation of activity and development
-
Turlejski, K. (1996). Evolutionary ancient roles of serotonin: long-lasting regulation of activity and development. Acta Neurobiol. Expt. (Wars) 56, 619–636.
-
(1996)
Acta Neurobiol. Expt. (Wars)
, vol.56
, pp. 619-636
-
-
Turlejski, K.1
-
127
-
-
0141858717
-
Early steps in building the insect brain: Neuroblast formation and segmental patterning in the developing brain of different insect species
-
Urbach, R., and Technau, G. M. (2003). Early steps in building the insect brain: neuroblast formation and segmental patterning in the developing brain of different insect species. Arthropod Struct. Dev. 32, 103–123. doi: 10.1016/s1467-8039(03)00042-2
-
(2003)
Arthropod Struct. Dev.
, vol.32
, pp. 103-123
-
-
Urbach, R.1
Technau, G.M.2
-
128
-
-
34447636274
-
Embryonic depletion of serotonin affects cortical development
-
Vitalis, T., Cases, O., Passemard, S., Callebert, J., and Parnavelas, J. G. (2007). Embryonic depletion of serotonin affects cortical development. Eur. J. Neurosci. 26, 331–344. doi: 10.1111/j.1460-9568.2007.05661.x
-
(2007)
Eur. J. Neurosci.
, vol.26
, pp. 331-344
-
-
Vitalis, T.1
Cases, O.2
Passemard, S.3
Callebert, J.4
Parnavelas, J.G.5
-
129
-
-
0031983863
-
Immunocytochemical demonstration of locustatachykinin-related peptides in the central complex of the locust brain. J. Comp. Neurol. 390, 455–469
-
Vitzthum, H., and Homberg, U. (1998). Immunocytochemical demonstration of locustatachykinin-related peptides in the central complex of the locust brain. J. Comp. Neurol. 390, 455–469. doi: 10.1002/(SICI)1096-9861(19980126)390:4<455::AID-CNE1>3.0.CO;2-#3.0.CO;2-#" target="_blank"
-
(1998)
J. Comp. Neurol
, vol.390
, pp. 455-469
-
-
Vitzthum, H.1
Homberg, U.2
-
130
-
-
0029940326
-
Distribution of Dip-allatostatin I-like immunoreactivity in the brain of the locust Schistocerca gregaria with detailed analysis of immunostaining in the central complex
-
Vitzthum, H., Homberg, U., and Agricola, H. (1996). Distribution of Dip-allatostatin I-like immunoreactivity in the brain of the locust Schistocerca gregaria with detailed analysis of immunostaining in the central complex. J. Comp. Neurol. 369, 419–437. doi: 10.1002/(SICI)1096-9861(19960603)369:3<419::AID-CNE7>3.0.CO;2-83.0.CO;2-8" target="_blank"
-
(1996)
J. Comp. Neurol
, vol.369
, pp. 419-437
-
-
Vitzthum, H.1
Homberg, U.2
Agricola, H.3
-
131
-
-
0026607489
-
Structure and development of the larval central complex in a holometabolous insect, the beetle Tenebrio molitor
-
Wegerhoff, R., and Breidbach, O. (1992). Structure and development of the larval central complex in a holometabolous insect, the beetle Tenebrio molitor. Cell Tissue Res. 268, 341–358. doi: 10.1007/bf00318803
-
(1992)
Cell Tissue Res
, vol.268
, pp. 341-358
-
-
Wegerhoff, R.1
Breidbach, O.2
-
132
-
-
0029911061
-
Development of locustatachykinin immunopositive neurons in the central complex of the beetle Tenebrio molitor
-
Wegerhoff, R., Breidbach, O., and Lobemeier, M. (1996). Development of locustatachykinin immunopositive neurons in the central complex of the beetle Tenebrio molitor. J. Comp. Neurol. 375, 157–166. doi: 10.1002/(SICI)1096-9861(19961104)375:1<157::AID-CNE10>3.0.CO;2-S 3.0.CO;2-S" target="_blank"
-
(1996)
J. Comp. Neurol
, vol.375
, pp. 157-166
-
-
Wegerhoff, R.1
Breidbach, O.2
Lobemeier, M.3
-
133
-
-
0024360352
-
Neurobiology of polarization vision
-
Wehner, R. (1989). Neurobiology of polarization vision. Trends Neurosci. 12, 353–359. doi: 10.1016/0166-2236(89)90043-x
-
(1989)
Trends Neurosci
, vol.12
, pp. 353-359
-
-
Wehner, R.1
-
134
-
-
84855665516
-
Flying Drosophila orient to sky polarization
-
Weir, P. T., and Dickinson, M. H. (2012). Flying Drosophila orient to sky polarization. Curr. Biol. 22, 21–27. doi: 10.1016/j.cub.2011.11.026
-
(2012)
Curr. Biol.
, vol.22
, pp. 21-27
-
-
Weir, P.T.1
Dickinson, M.H.2
-
135
-
-
0025314133
-
The development of identified neurosecretory cells in the tobacco hornworm, Manduca sexta
-
Westbrook, A. L., and Bollenbacher, W. E. (1990). The development of identified neurosecretory cells in the tobacco hornworm, Manduca sexta. Dev. Biol. 140, 291–299. doi: 10.1016/0012-1606(90)90079-x
-
(1990)
Dev. Biol.
, vol.140
, pp. 291-299
-
-
Westbrook, A.L.1
Bollenbacher, W.E.2
-
136
-
-
84985321594
-
Anatomical studies of the insect central nervous system: A ground-plan of the midbrain and an introduction to the central complex in the locust, Schistocerca gregaria (Orthoptera)
-
Williams, J. L. D. (1975). Anatomical studies of the insect central nervous system: a ground-plan of the midbrain and an introduction to the central complex in the locust, Schistocerca gregaria (Orthoptera). J. Zool. Lond. 176, 67–86.doi: 10.1111/j.1469-7998.1975.tb03188.x
-
(1975)
J. Zool. Lond.
, vol.176
, pp. 67-86
-
-
Williams, J.L.D.1
-
137
-
-
36649025478
-
Building the central complex of the grasshopper Schistocerca gregaria: Axons pioneering the w, x, y, z tracts project onto the primary commissural fascicle of the brain
-
Williams, J. L., and Boyan, G. S. (2008). Building the central complex of the grasshopper Schistocerca gregaria: axons pioneering the w, x, y, z tracts project onto the primary commissural fascicle of the brain. Arthr. Struct. Dev. 37, 129–140. doi: 10.1016/j.asd.2007.05.005
-
(2008)
Arthr. Struct. Dev.
, vol.37
, pp. 129-140
-
-
Williams, J.L.1
Boyan, G.S.2
-
138
-
-
14044268266
-
Building the central complex of the grasshopper Schistocerca gregaria: Temporal topology organizes the neuroarchitecture of the w, x, y, z tracts
-
Williams, J. L. D., Güntner, M., and Boyan, G. S. (2005). Building the central complex of the grasshopper Schistocerca gregaria: temporal topology organizes the neuroarchitecture of the w, x, y, z tracts. Arthr. Struct. Dev. 34, 97–110. doi: 10.1016/j.asd.2004.11.001
-
(2005)
Arthr. Struct. Dev.
, vol.34
, pp. 97-110
-
-
Williams, J.L.D.1
Güntner, M.2
Boyan, G.S.3
-
139
-
-
33644847106
-
Tachykinin-related peptides modulate odor perception and locomotor activity in Drosophila
-
Winther, A. M., Acebes, A., and Ferrus, A. (2006). Tachykinin-related peptides modulate odor perception and locomotor activity in Drosophila. Mol. Cell. Neurosci. 31, 399–406. doi: 10.1016/j.mcn.2005.10.010
-
(2006)
Mol. Cell. Neurosci.
, vol.31
, pp. 399-406
-
-
Winther, A.M.1
Acebes, A.2
Ferrus, A.3
-
140
-
-
84924662580
-
Neuroarchitecture and neuroanatomy of the Drosophila central complex: A GAL4-based dissection of protocerebral bridge neurons and circuits
-
Wolff, T., Iyer, N. A., and Rubin, G. M. (2015). Neuroarchitecture and neuroanatomy of the Drosophila central complex: a GAL4-based dissection of protocerebral bridge neurons and circuits. J. Comp. Neurol. 523, 997–1037. doi: 10.1002/cne.23705
-
(2015)
J. Comp. Neurol.
, vol.523
, pp. 997-1037
-
-
Wolff, T.1
Iyer, N.A.2
Rubin, G.M.3
-
141
-
-
26044473063
-
Neurochemical development of brain stem nuclei involved in the control of respiration
-
Wong-Riley, M. T., and Liu, Q. (2005). Neurochemical development of brain stem nuclei involved in the control of respiration. Respir. Physiol. Neurobiol. 149, 83–98. doi: 10.1016/j.resp.2005.01.011
-
(2005)
Respir. Physiol. Neurobiol.
, vol.149
, pp. 83-98
-
-
Wong-Riley, M.T.1
Liu, Q.2
-
142
-
-
77949372055
-
Structure of the adult central complex in Drosophila: Organization of distinct neuronal subsets
-
Young, J. M., and Armstrong, J. D. (2010a). Structure of the adult central complex in Drosophila: organization of distinct neuronal subsets. J. Comp. Neurol. 518, 1500–1524. doi: 10.1002/cne.22284
-
(2010)
J. Comp. Neurol.
, vol.518
, pp. 1500-1524
-
-
Young, J.M.1
Armstrong, J.D.2
-
143
-
-
77949360605
-
Building the central complex in Drosophila: The generation and development of distinct subsets
-
Young, J. M., and Armstrong, J. D. (2010b). Building the central complex in Drosophila: the generation and development of distinct subsets. J. Comp. Neurol. 518, 1525–1541. doi: 10.1002/cne.22285
-
(2010)
J. Comp. Neurol.
, vol.518
, pp. 1525-1541
-
-
Young, J.M.1
Armstrong, J.D.2
-
144
-
-
21544433803
-
Serotonin modulates circadian entrainment in Drosophila
-
Yuan, Q., Lin, F., Zheng, X., and Sehgal, A. (2005). Serotonin modulates circadian entrainment in Drosophila. Neuron 47, 115–127. doi: 10.1016/j.neuron.2005.05.027
-
(2005)
Neuron
, vol.47
, pp. 115-127
-
-
Yuan, Q.1
Lin, F.2
Zheng, X.3
Sehgal, A.4
-
145
-
-
0027249903
-
Neurogenesis in the insect brain: Cellular identification and molecular characterization of brain neuroblasts in the grasshopper embryo
-
Zacharias, D., Williams, J. L. D., Meier, T., and Reichert, H. (1993). Neurogenesis in the insect brain: cellular identification and molecular characterization of brain neuroblasts in the grasshopper embryo. Development 118, 941–955.
-
(1993)
Development
, vol.118
, pp. 941-955
-
-
Zacharias, D.1
Williams, J.L.D.2
Meier, T.3
Reichert, H.4
-
146
-
-
67651183658
-
Spatial orientation in Drosophila
-
Zars, T. (2009). Spatial orientation in Drosophila. J. Neurogenet. 23, 104–110. doi: 10.1080/01677060802441364
-
(2009)
J. Neurogenet.
, vol.23
, pp. 104-110
-
-
Zars, T.1
-
147
-
-
0242595020
-
Steroid induction of peptide hormone gene leads to orchestration of a defined behavioral sequence
-
Zitnan, D., Ross, L. S., Zitnanova, I., Hermesman, J. L., Gill, S. S., and Adams, M. (1999). Steroid induction of peptide hormone gene leads to orchestration of a defined behavioral sequence. Neuron 23, 523–535. doi: 10.1016/s0896-6273(00)80805-3+
-
(1999)
Neuron
, vol.23
, pp. 523-535
-
-
Zitnan, D.1
Ross, L.S.2
Zitnanova, I.3
Hermesman, J.L.4
Gill, S.S.5
Adams, M.6
|