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Volumn 24, Issue 22, 2014, Pages R1076-R1080

Synaptogenesis

Author keywords

[No Author keywords available]

Indexed keywords

BIOLOGICAL MODEL; METABOLISM; PHYSIOLOGY; SYNAPSE; SYNAPSE VESICLE; SYNAPTIC TRANSMISSION; TRANSPORT AT THE CELLULAR LEVEL; ULTRASTRUCTURE;

EID: 84923259074     PISSN: 09609822     EISSN: None     Source Type: Journal    
DOI: 10.1016/j.cub.2014.10.024     Document Type: Short Survey
Times cited : (23)

References (15)
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    • Cell biology in neuroscience: Cellular and molecular mechanisms underlying presynapse formation
    • Chia, P.H., Li, P., and Shen, K. (2013). Cell biology in neuroscience: cellular and molecular mechanisms underlying presynapse formation. J. Cell Biol. 203, 11-22.
    • (2013) J. Cell Biol , vol.203 , pp. 11-22
    • Chia, P.H.1    Li, P.2    Shen, K.3
  • 3
  • 4
    • 84055189415 scopus 로고    scopus 로고
    • Nanodomain coupling between Ca2+ channels and sensors of exocytosis at fast mammalian synapses
    • Eggermann, E., Bucurenciu, I., Goswami, S.P., and Jonas, P. (2012). Nanodomain coupling between Ca2+ channels and sensors of exocytosis at fast mammalian synapses. Nat. Rev. Neurosci. 13, 7-21.
    • (2012) Nat. Rev. Neurosci , vol.13 , pp. 7-21
    • Eggermann, E.1    Bucurenciu, I.2    Goswami, S.P.3    Jonas, P.4
  • 5
    • 84879677618 scopus 로고    scopus 로고
    • Seeing the forest tree by tree: Super-resolution light microscopy meets the neurosciences
    • Maglione, M., and Sigrist, S.J. (2013). Seeing the forest tree by tree: super-resolution light microscopy meets the neurosciences. Nat. Neurosci. 16, 790-797.
    • (2013) Nat. Neurosci , vol.16 , pp. 790-797
    • Maglione, M.1    Sigrist, S.J.2
  • 6
    • 84861231844 scopus 로고    scopus 로고
    • Deep molecular diversity of mammalian synapses: Why it matters and how to measure it
    • O'Rourke, N.A., Weiler, N.C., Micheva, K.D., and Smith, S.J. (2012). Deep molecular diversity of mammalian synapses: why it matters and how to measure it. Nat. Rev. Neurosci. 13, 365-379.
    • (2012) Nat. Rev. Neurosci , vol.13 , pp. 365-379
    • O'Rourke, N.A.1    Weiler, N.C.2    Micheva, K.D.3    Smith, S.J.4
  • 11
    • 54049091941 scopus 로고    scopus 로고
    • Neuroligins and neurexins link synaptic function to cognitive disease
    • Südhof, T.C. (2008). Neuroligins and neurexins link synaptic function to cognitive disease. Nature 455, 903-911.
    • (2008) Nature , vol.455 , pp. 903-911
    • Südhof, T.C.1
  • 12
    • 84863826404 scopus 로고    scopus 로고
    • The presynaptic active zone
    • Südhof, T.C. (2012). The presynaptic active zone. Neuron 75, 11-25.
    • (2012) Neuron , vol.75 , pp. 11-25
    • Südhof, T.C.1
  • 13
    • 80755127297 scopus 로고    scopus 로고
    • The Liprin homology domain is essential for the homomeric interaction of SYD-2/Liprin-alpha protein in presynaptic assembly
    • Taru, H., and Jin, Y. (2011). The Liprin homology domain is essential for the homomeric interaction of SYD-2/Liprin-alpha protein in presynaptic assembly. J. Neurosci. 31, 16261-16268.
    • (2011) J. Neurosci , vol.31 , pp. 16261-16268
    • Taru, H.1    Jin, Y.2
  • 15
    • 8144230701 scopus 로고    scopus 로고
    • The architecture of the active zone in the presynaptic nerve terminal
    • Zhai, R.G., and Bellen, H.J. (2004). The architecture of the active zone in the presynaptic nerve terminal. Physiology 19, 262-270.
    • (2004) Physiology , vol.19 , pp. 262-270
    • Zhai, R.G.1    Bellen, H.J.2


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.