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“dˆÊŠ´Žó«F‘f‚ð—p‚¢‚½”]Šˆ“®‚Ìin vivo ŽÀŽžŠÔƒCƒ[ƒWƒ“ƒO
Real-time Imaging of Cortical Activity in vivo.


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1) Y. Chen, W. S. Geisler, E. Seidemann, gOptimal decoding of correlated neural population responses in the primate visual cortex., h Nat. Neurosci., 2006, 9(11) , 1412-20.

2) L. B. Cohen, B. M. Salzberg, H. V. Davila, W. N. Ross, D. Landowne, A. S. Waggoner, C. H. Wang, gChanges in axon fluorescence during activity: Molecular probes of membrane potentialh, J. Membrane Biology , 1974, 19 , 1-36.

3) R. C. deCharms, M. M. Merzenich, g Primary cortical representation of sounds by the coordination of action-potential timingh, Nature , 1996, 381(6583) , 610-3.

4)A. Grinvald, E. E. Lieke, R. D. Frostig, R. Hildesheim, gCortical point-spread function and long-range lateral interactions revealed by real-time optical imaging of macaque monkey primary visual cortexh, J. Neurosci. , 1994, 14 , 2545-2568.

5) A. Grinvald, R. Hildesheim,gVSDI: A new era in functional imaging of cortical dynamicsh, Nature Reviews Neuroscience ,2004, 5 (11) , 874-885.

6) A. Hyvarinen, J. Karhunen, E. Oja, gIndependent component analysish,John Wiley & Sons, Inc, New York , 2001.

7) S. Inagaki, T. Katura, H. Kawaguchi, and W-J. Song, gIsolation of neural activity from respiratory and heartbeat noises for in vivo optical recordings using independent component analysish, Neurosci Lett ., 2003, 352 , 9-12.

8) L. M. Loew, gDesign and characterization of electrochromic membrane probesh, J. Biochem Biophys Methods , 1982, 6 (3), 243-60.

9) A. Matiukas, B. G. Mitrea, M. Qin, A. M. Pertsov, A. G. Shvedko, M. D. Warren, A. V. Zaitsev, J. P. Wuskell, M. D. Wei, J. Watras, L. M. Loew, gNear-infrared voltage-sensitive fluorescent dyes optimized for optical mapping in blood-perfused myocardiumh, Heart Rhythm ., 2007, 4 (11), 1441-51.

10) M. Nishimura, H. Shirasawa, W-J Song, gA light-emitting diode light source for imaging of neural activities with voltage-sensitive dyesh, Neurosci Res ., 2006, 54 , 230-234.

11) M. Nishimura, H. Shirasawa, H. Kaizo, W-J Song, gNew field with tonotopiv organization in guinea pig auditory cortexh, J. Neurophysiol , 2007, 97 , 927- 932.

12)D. Shoham, D. E. Glaser, A. Arieli, T. Kenet, R. Hildesheim and A. Grinvald, gImaging cortical architecture and dynamics at high spatial and temporal resolution with new voltage-sensitive dyesh, Neuron , 1999, 24 , 1-12.

13) W-J. Song, M. Kanda, K. Okawa, F. Murakami, gPerinatal development of action potential propagation in cat rubrospinal axonsh, J Physiol (London) , 1995, 488 , 419-426.

14) W-J Song, H. Kawaguchi, S. Totoki, Y. Inoue, T. Katura, S. Maeda, S. Inagaki, H. Shirasawa, M. Nishimura, gCortical intrinsic circuits can support activity propagation through an isofrequency strip of the guinea pig primary auditory cortexh, Cereb Cortex , 2006, 16 (5), 718-729.

15) W-J Song and F. Murakami, gDevelopment of functional topography in the corticorubral projection: An in vivo assessment using synaptic potentials recorded from fetal and newborn catsh, J. Neurosci ., 1998, 18 , 9354-9364.

16) H. Tsutsui, S. Karasawa, Y. Okamura, A. Miyawaki,gImproving membrane voltage measurements using FRET with new fluorescent proteinsh, Nature Methods , 2008, 8 , 683-685.

17) E. Zwicker, gMasking and psychological excitation as consequences of the earfs frequency analysis. In Frequency Analysis and Periodicity Detection in Hearing (eds R. Plomp and G.F. Smoorenberg)h, Sijthoff, Leiden , 1970, 376.

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