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Volumn , Issue , 2013, Pages 23-33

Current challenges in optogenetics

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EID: 85039802164     PISSN: None     EISSN: None     Source Type: Book    
DOI: None     Document Type: Chapter
Times cited : (8)

References (17)
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    • Kinetic evaluation of photosensitivity in genetically engineered neurons expressing green algae light-gated channels
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    • Ishizuka, T.1    Kakuda, M.2    Araki, R.3    Yawo, H.4
  • 3
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    • Millisecond-timescale, genetically targeted optical control of neural activity
    • Boyden ES, Zhang F, Bamberg E, Nagel G, Deisseroth K. Millisecond-timescale, genetically targeted optical control of neural activity. Nat. Neurosci. 2005; 8: 1263-8.
    • (2005) Nat. Neurosci. , vol.8 , pp. 1263-1268
    • Boyden, E.S.1    Zhang, F.2    Bamberg, E.3    Nagel, G.4    Deisseroth, K.5
  • 4
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    • Optogenetic Technologies for Psychiatric Disease Research
    • 4th edition, edited by D Charney and E Nestler. New York: Oxford University Press
    • Fenno LE, Deisseroth K. Optogenetic Technologies for Psychiatric Disease Research. In: Neurobiology of Mental Illness, 4th edition, edited by D Charney and E Nestler. New York: Oxford University Press, 2013.
    • (2013) Neurobiology of Mental Illness
    • Fenno, L.E.1    Deisseroth, K.2
  • 5
    • 34548546911 scopus 로고    scopus 로고
    • Structural basis for light-dependent signaling in the dimeric LOV domain of the photosensor YtvA
    • Oct 12
    • Möglich A, Moffat K. Structural basis for light-dependent signaling in the dimeric LOV domain of the photosensor YtvA. J. Mol. Biol. 2007 Oct 12; 373(1): 112-26.
    • (2007) J. Mol. Biol. , vol.373 , Issue.1 , pp. 112-126
    • Möglich, A.1    Moffat, K.2
  • 6
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    • A genetically encoded photoactivatable Rac controls the motility of living cells
    • Sep 3
    • Wu YI, Frey D, Lungu OI, Jaehrig A, Schlichting I, Kuhlman B, Hahn KM. A genetically encoded photoactivatable Rac controls the motility of living cells. Nature. 2009 Sep 3; 461(7260): 104-8.
    • (2009) Nature , vol.461 , Issue.7260 , pp. 104-108
    • Wu, Y.I.1    Frey, D.2    Lungu, O.I.3    Jaehrig, A.4    Schlichting, I.5    Kuhlman, B.6    Hahn, K.M.7
  • 9
    • 84892564537 scopus 로고    scopus 로고
    • Optogenetics in the behaving rat: integration of diverse new technologies in a vital animal model
    • Zalocusky KA, Deisseroth K. Optogenetics in the behaving rat: integration of diverse new technologies in a vital animal model. Optogenetics 2013; 1: 1-17.
    • (2013) Optogenetics , vol.1 , pp. 1-17
    • Zalocusky, K.A.1    Deisseroth, K.2
  • 12
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    • Principles for applying optogenetic tools derived from direct comparative analysis of microbial opsins
    • Mattis J, Tye K, Ferenczi E. Principles for applying optogenetic tools derived from direct comparative analysis of microbial opsins. Nat. Methods 2012; 9: 159-72.
    • (2012) Nat. Methods , vol.9 , pp. 159-172
    • Mattis, J.1    Tye, K.2    Ferenczi, E.3
  • 13
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    • eNpHR: a Natronomonas halorhodopsin enhanced for optogenetic applications
    • Gradinaru V, Thompson KR, Deisseroth K. eNpHR: a Natronomonas halorhodopsin enhanced for optogenetic applications. Brain Cell Biol. 2008; 36: 129-39.
    • (2008) Brain Cell Biol. , vol.36 , pp. 129-139
    • Gradinaru, V.1    Thompson, K.R.2    Deisseroth, K.3
  • 16
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    • Evolution of the channelrhodopsin photocycle model
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    • Stehfest, K.1    Hegemann, P.2
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    • Characterization of engineered channelrhodopsin variants with improved properties and kinetics
    • Lin JY, Lin MZ, Steinbach P, Tsien RY. Characterization of engineered channelrhodopsin variants with improved properties and kinetics. Biophys. J. 2009; 96: 1803-14.
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* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.