Record 14054 View: Overview | Glossary HistCite Guide |
Author(s): Momose-Sato Y; Sato K; Kamino K
Title: Optical approaches to embryonic development of neural functions in the brainstem
Source: PROGRESS IN NEUROBIOLOGY 63 (2): 151-197
Date: 2001 FEB
Document Type: Journal : Review
Language: English
Comment:
Address: Tokyo Med & Dent Univ, Sch Med, Dept Physiol, Bunkyo Ku, Tokyo 1138519, Japan.
Tokyo Med & Dent Univ, Grad Sch, Dept Neurobehav Med, Bunkyo Ku, Tokyo 1138519, Japan. Hayashibara Biochem Labs Inc, Kankoh Shikiso Kenkyusho, Okayama 7010221, Japan. Reprint: Momose-Sato, Y, Tokyo Med & Dent Univ, Sch Med, Dept Physiol, Bunkyo
Ku, Tokyo 1138519, Japan. Abstract: The ontogenetic approach to physiological events is a useful strategy for understanding the functional organization/ architecture of the vertebrate brainstem, However, conventional electrophysiological techniques are difficult or impossible to employ in the early embryonic central nervous system. Optical techniques using voltage-sensitive dyes have made it possible to monitor neural activities from multiple regions of living systems, and have proven to be a useful tool for analyzing the embryogenetic expression of brainstem neural function. This review describes recent progress in optical studies made on embryonic chick and rat brainstems, Several technical issues concerning optical recording from the embryonic brainstem preparations are discussed, and characteristics of the optical signals evoked by cranial nerve stimulation or occurring spontaneously are described. Special attention is paid to the chronological analyses of embryogenetic expression of brainstem function and to the spatial patterning of the functional organization/architecture of the brainstem nuclei. In addition, optical analyses of glutamate, GABA, and glycine receptor functions during embryogenesis are described in detail for the chick nucleus tractus solitarius. This review also discusses intrinsic optical signals associated with neuronal depolarization. Some emphases are also placed on the physiological properties of embryonic brainstem neurons, which may be of interest from the viewpoint of developmental neurobiology. (C) 2000 Elsevier Science Ltd. All rights reserved.
Cited References: ADELMANN HB, 1925, J COMP NEUROL, V39, P19 AGARD DA, 1983, NATURE, V302, P676 AGARD DA, 1984, ANNU REV BIOPHYS BIO, V13, P191 AKAIKE N, 1985, EXPERIENTIA, V41, P70 ALAMTN J, 1982, DEV CRANIAL NERVE GA ALBOWITZ B, 1990, EXP BRAIN RES, V81, P241 ALGER BE, 1982, J PHYSIOL-LONDON, V328, P125 ALTMAN J, 1980, J COMP NEUROL, V194, P1 ALTMAN J, 1995, ATLAS PRENATAL RAT B ANDERSEN P, 1980, J PHYSL, V305, P279 ANDREW RD, 1994, NEUROSCIENCE, V62, P371 ANDREW RD, 1996, J NEUROPHYSIOL, V76, P2707 AOSAKI T, 1989, PFLUG ARCH EUR J PHY, V414, P150 APRISON MH, 1978, ADV NEUROCHEM, V3, P203 ARAI Y, 1999, J NEUROPHYSIOL, V81, P1889 ARENS M, 1986, ANAT EMBRYOL, V174, P67 AURT B, 1980, J PHYSIOL-LONDON, V307, P413 BADER CR, 1983, NATURE, V305, P808 BARISH ME, 1996, J NEUROSCI, V16, P5672 BARKER JL, 1978, J PHYSIOL-LONDON, V280, P331 BARKER JL, 1981, SCIENCE, V212, P358 BAUDRY M, 1981, DEV BRAIN RES, V1, P37 BEAN BP, 1989, ANNU REV PHYSIOL, V51, P367 BENARI Y, 1989, J PHYSIOL-LONDON, V416, P303 BIANCHI AL, 1995, PHYSIOL REV, V75, P1 BONHOEFFER T, 1995, OPTICAL IMAGING BASE BORMANN J, 1988, TRENDS NEUROSCI, V11, P112 BORMANN J, 1995, TRENDS NEUROSCI, V18, P515 BOSTOCK H, 1983, J PHYSIOL-LONDON, V341, P59 BOWE MA, 1990, DEV BRAIN RES, V56, P55 BREAZILE JE, 1979, NOMINA ANATOMICA AVI, P417 BREAZILE JE, 1979, NOMINA ANATOMICA AVI, P473 CASSELL MD, 1992, NEUROSCIENCE, V50, P907 CHERUBINI E, 1991, TRENDS NEUROSCI, V14, P515 CODE RA, 1989, J COMP NEUROL, V284, P504 CODE RA, 1991, HEARING RES, V54, P281 COHEN DH, 1970, J COMP NEUROL, V140, P299 COHEN LB, 1968, NATURE, V218, P438 COHEN LB, 1971, J PHYSIOL-LONDON, V212, P259 COHEN LB, 1972, J PHYSIOL-LONDON, V224, P727 COHEN LB, 1973, PHYSIOL REV, V53, P373 COHEN LB, 1978, REV PHYSL BIOCH PHAR, V83, P35 COHEN LB, 1986, OPTICAL METHODS CELL, P71 COLLINGRIDGE GL, 1988, J PHYSIOL-LONDON, V399, P283 COLLINGRIDGE GL, 1989, PHARMACOL REV, V41, P143 CONNOR JA, 1987, J NEUROSCI, V7, P1384 COVELL DA, 1989, J COMP NEUROL, V286, P488 DAMICOMARTEL A, 1980, J EMBRYOL EXP MORPH, V55, P167 DAMICOMARTEL A, 1982, AM J ANAT, V163, P351 DASHEIFF RM, 1988, J CLIN NEUROPHYSIOL, V5, P211 DAVIES J, 1981, NEUROSCI LETT, V21, P77 DIETZEL I, 1980, EXP BRAIN RES, V40, P432 DIETZEL I, 1982, EXP BRAIN RES, V46, P73 DIETZEL ID, 1995, PERSPECT DEV NEUROBI, V2, P293 DREW CA, 1984, NEUROSCI LETT, V52, P317 DUNLAP K, 1995, TRENDS NEUROSCI, V18, P89 EBNER TJ, 1995, PROG NEUROBIOL, V46, P463 EDWARDS DH, 1990, J NEUROPHYSIOL, V64, P532 ELLINOR PT, 1993, NATURE, V363, P455 EVANS RH, 1977, EXPERIENTIA, V33, P489 FALK CX, 1993, J NEUROSCI, V13, P4072 FEIGENSPAN A, 1993, NATURE, V361, P159 FLINT AC, 1998, NEURON, V20, P43 FORTIN G, 1994, NEUROREPORT, V5, P1149 FORTIN G, 1995, J PHYSIOL-LONDON, V486, P735 FOSTER AC, 1984, BRAIN RES REV, V7, P103 FUJII S, 1980, J PHYSIOL-LONDON, V304, P503 FUJII S, 1981, J PHYSIOL-LONDON, V319, P529 FUJITA S, 1964, J COMP NEUROL, V122, P311 FUKUDA A, 1987, J PHYSL SOC JPN, V49, P395 GANONG AH, 1983, BRAIN RES, V273, P170 GARZA FM, 1989, J MICROSC-OXFORD, V153, P205 GILLIS RA, 1980, BRAIN RES, V181, P476 GLAUM SR, 1992, J NEUROSCI, V12, P2251 GODEMENT P, 1987, DEVELOPMENT, V101, P697 GOODMAN CS, 1979, NATURE, V280, P208 GRINVALD A, 1981, SCIENCE, V212, P1164 GRINVALD A, 1982, J PHYSIOL-LONDON, V333, P269 GRINVALD A, 1984, NATURE, V308, P848 GRINVALD A, 1985, ANNU REV NEUROSCI, V8, P263 GRINVALD A, 1988, PHYSIOL REV, V68, P1285 GUPTA RK, 1981, J MEMBRANE BIOL, V58, P1 GYNTHER BD, 1986, NEUROSCI LETT, V68, P211 HAMBURGER V, 1951, J MORPHOL, V88, P49 HEATON MB, 1980, J COMP NEUROL, V189, P61 HEINEMANN U, 1984, J NEUROPHYSIOL, V52, P421 HESS P, 1990, ANNU REV NEUROSCI, V13, P337 HILL DK, 1949, J PHYSIOL-LONDON, V108, P278 HILL DR, 1981, NATURE, V290, P149 HILLYARD DR, 1992, NEURON, V9, P69 HIRAOKA Y, 1990, BIOPHYS J, V57, P325 HIROTA A, 1985, J PHYSIOL-LONDON, V366, P89 HIROTA A, 1985, J PHYSIOL-LONDON, V369, P209 HIROTA A, 1995, J NEUROSCI METH, V56, P187 HISCOCK J, 1986, HISTOL HISTOPATHOL, V1, P129 HODGKIN AL, 1959, J PHYSIOL, V148, P127 HOLTHOFF K, 1994, NEUROSCI LETT, V180, P227 HOLTHOFF K, 1996, J NEUROSCI, V16, P2740 HONIG MG, 1986, J CELL BIOL, V103, P171 HONORE T, 1988, SCIENCE, V241, P701 HUGUENARD JR, 1996, ANNU REV PHYSIOL, V58, P329 HYSON RL, 1995, BRAIN RES, V677, P117 INSEL TR, 1990, NEUROSCIENCE, V35, P31 JIANG C, 1994, EXP BRAIN RES, V100, P407 JOHNSON JW, 1987, NATURE, V325, P529 KAMINO K, 1973, BIOCHIM BIOPHYS ACTA, V330, P39 KAMINO K, 1981, NATURE, V290, P595 KAMINO K, 1983, P JPN ACAD B-PHYS, V59, P186 KAMINO K, 1989, ADV BIOPHYS, V25, P45 KAMINO K, 1989, J PHYSIOL-LONDON, V409, P263 KAMINO K, 1990, JPN J PHYSIOL, V40, P443 KAMINO K, 1990, NEUROSCI RES, V8, P255 KAMINO K, 1991, PHYSIOL REV, V71, P53 KAMINO K, 1992, FLUORESCENCE SPECTRO, P289 KAMINO K, 1993, JPN J PHYSIOL S1, V43, PS43 KANDLER K, 1995, J NEUROSCI, V15, P6890 KANEDA M, 1990, J NEUROPHYSIOL, V63, P1046 KERR DIB, 1987, BRAIN RES, V405, P150 KERR DIB, 1988, NEUROSCI LETT, V92, P92 KERR LM, 1984, NATURE, V308, P282 KINGSTON RH, 1978, DETECTION OPTICAL IN KOJIMA S, 1999, J NEUROSCI, V19, P2580 KOMURO H, 1986, JPN J PHYSIOL, V36, P123 KOMURO H, 1991, J PHYSIOL-LONDON, V442, P631 KOMURO H, 1993, NEUROSCIENCE, V52, P555 KONNERTH A, 1986, NEUROSCI LETT, V66, P49 KONNERTH A, 1987, J PHYSIOL-LONDON, V393, P681 KONNERTH A, 1988, GLIA, V1, P225 KONTRO P, 1987, INT J DEV NEUROSCI, V5, P461 KORADA S, 1999, J COMP NEUROL, V409, P664 KOSHIYA N, 1999, NATURE, V400, P360 KOTAK VC, 1998, J NEUROSCI, V18, P4646 KREISMAN NR, 1995, BRAIN RES, V693, P179 KUBO T, 1987, NEUROSCI LETT, V74, P331 KUBO T, 1992, NEUROSCI LETT, V140, P150 KUHLENBECK H, 1975, SPINAL CORD DENTEREN, V4 KUNGEL M, 1997, DEV BRAIN RES, V102, P157 LANDMESSER L, 1972, J PHYSIOL-LONDON, V222, P691 LARGE WA, 1996, AM J PHYSIOL-CELL PH, V271, PC435 LATORRE R, 1989, ANNU REV PHYSIOL, V51, P385 LAUDER JM, 1993, TRENDS NEUROSCI, V16, P233 LAWRENCE AJ, 1996, PROG NEUROBIOL, V48, P21 LEVRAM V, 1986, P NATL ACAD SCI USA, V83, P6651 LI YQ, 1994, CELL, V76, P427 LIPTON P, 1973, J PHYSL, V231, P365 LIU JP, 1997, J NEUROSCI, V17, P2420 LOEW LM, 1988, SPECTROSCOPIC MEMBRA, V2, P139 LONDON JA, 1987, J NEUROSCI, V7, P649 LUKASIEWICZ PD, 1994, J NEUROSCI, V14, P1202 LUKASIEWICZ PD, 1994, J NEUROSCI, V14, P1213 LUMSDEN A, 1989, NATURE, V337, P424 MACDONALD JF, 1990, TRENDS PHARMACOL SCI, V11, P167 MACDONALD RL, 1994, ANNU REV NEUROSCI, V17, P569 MACVICAR BA, 1991, J NEUROSCI, V11, P1458 MADTES P, 1983, LIFE SCI, V33, P979 MAYER ML, 1984, NATURE, V309, P261 MCBAIN CJ, 1990, SCIENCE, V249, P674 MCCONNELL JA, 1980, J COMP NEUROL, V192, P769 MEELEY MP, 1989, J NEUROCHEM, V53, P1807 MEIER E, 1985, INT J DEV NEUROSCI, V3, P401 MICHLER A, 1990, INT J DEV NEUROSCI, V8, P463 MILLER LP, 1990, NEUROSCIENCE, V35, P45 MILLER RJ, 1988, TRENDS NEUROSCI, V11, P415 MINTZ IM, 1992, NATURE, V355, P827 MINTZ IM, 1992, NEURON, V9, P85 MISGELD U, 1986, SCIENCE, V232, P1413 MISGELD U, 1995, PROG NEUROBIOL, V46, P423 MISU Y, 1996, PROG NEUROBIOL, V49, P415 MOMOSESATO Y, 1991, BIOMED RES, V12, P139 MOMOSESATO Y, 1991, J PHYSIOL-LONDON, V442, P649 MOMOSESATO Y, 1993, ANN NY ACAD SCI, V707, P454 MOMOSESATO Y, 1994, J NEUROSCI, V14, P7572 MOMOSESATO Y, 1995, J MEMBRANE BIOL, V144, P167 MOMOSESATO Y, 1995, NEUROSCI LETT, V191, P193 MOMOSESATO Y, 1996, ADV PHAR SC, P255 MOMOSESATO Y, 1997, NEUROSCIENCE, V80, P203 MOMOSESATO Y, 1998, J NEUROPHYSIOL, V79, P2208 MOMOSESATO Y, 1998, JPN J PHYSIOL S, V48, PS132 MOMOSESATO Y, 1998, NEUROSCI RES S, V22, PS114 MOMOSESATO Y, 1999, J MEMBRANE BIOL, V172, P145 MOMOSESATO Y, 1999, JPN J PHYSIOL S, P49 MOMOSESATO Y, 1999, NEUROSCI RES S, P23 MOMOSESATO Y, 1999, NEUROSCIENCE, V90, P1069 MOMOSESATO Y, 1999, NEUROSCIENCE, V90, P1293 MORRISETT RA, 1990, DEV BRAIN RES, V56, P257 NAKAGAMI Y, 1997, NEUROSCIENCE, V81, P1 NARAHASHI T, 1992, TOXICOL LETT, V64, P429 NODEN DM, 1980, J COMP NEUROL, V190, P429 NORD SG, 1967, J COMP NEUROL, V130, P343 NOWAK L, 1984, NATURE, V307, P462 OBAID AL, 1985, J GEN PHYSIOL, V85, P481 OBAID AL, 1989, J GEN PHYSIOL, V93, P715 OBATA K, 1978, BRAIN RES, V144, P179 ODONOVAN MJ, 1989, J NEUROSCI, V9, P943 OLPE HR, 1990, EUR J PHARMACOL, V187, P27 ONIMARU H, 1996, NEUROSCI RES, V25, P183 OPPENHEIM RW, 1991, ANNU REV NEUROSCI, V14, P453 ORBACH HS, 1983, J NEUROSCI, V3, P2251 ORBACH HS, 1985, J NEUROSCI, V5, P1886 PARSONS TD, 1989, BIOPHYS J, V56, P213 PARSONS TD, 1991, J NEUROPHYSIOL, V66, P316 PATTEN BM, 1971, EARLY EMBRYOLOGY CHI PERRONE MH, 1981, BRAIN RES, V230, P283 PETRALIA RS, 1990, J COMP NEUROL, V292, P231 PHELPS PE, 1990, DEV BRAIN RES, V56, P63 POLISCHUK TM, 1996, CAN J PHYSIOL PHARM, V74, P712 QIAN HH, 1993, NATURE, V361, P162 RANCK JB, 1981, ELECT STIMULATION RE, P1 RANDALL A, 1995, J NEUROSCI, V15, P2995 REGAN LJ, 1991, NEURON, V6, P269 REICHLING DB, 1994, J PHYSIOL-LONDON, V476, P411 REKLING JC, 1998, ANNU REV PHYSIOL, V60, P385 REYES AD, 1994, J NEUROSCI, V14, P5352 RINAMAN L, 1993, J NEUROBIOL, V24, P641 ROGERS LA, 1973, J COMP NEUROL, V147, P291 ROSS WN, 1977, J MEMBRANE BIOL, V33, P141 ROSS WN, 1979, J MEMBRANE BIOL, V48, P343 ROSS WN, 1986, J NEUROSCI, V6, P1148 SAKAI T, 1985, DEV BRAIN RES, V17, P39 SAKAI T, 1991, J PHYSIOL-LONDON, V439, P361 SAKAI T, 1997, JPN J PHYSIOL, V47, P179 SAKAI T, 1998, NEUROSCI LETT, V242, P1 SALZBERG BM, 1977, J NEUROPHYSIOL, V40, P1281 SALZBERG BM, 1983, CURRENT METHODS CELL, V3, P139 SALZBERG BM, 1983, NATURE, V306, P36 SALZBERG BM, 1985, J GEN PHYSIOL, V86, P395 SATO K, 1993, JPN J PHYSIOL, V43, P521 SATO K, 1995, 4 IBRO WORLD C NEUR, P180 SATO K, 1995, J NEUROSCI 2, V15, P2123 SATO K, 1996, NEUROSCIENCE, V72, P833 SATO K, 1997, JPN J PHYSIOL S, V47, PS141 SATO K, 1997, NEUROREPORT, V8, P3559 SATO K, 1998, J NEUROSCI, V18, P1345 SATO K, 1999, NEURAL DEV, P404 SATO K, 1999, NEUROSCIENCE, V93, P687 SAWANOBORI T, 1981, JPN J PHYSL, V31, P369 SCHLAGGAR BL, 1993, NATURE, V364, P623 SENSEMAN DM, 1987, J EXP ZOOL, V244, P79 SHINODA Y, 1976, EXP BRAIN RES, V26, P215 SINGER JH, 1998, J NEUROPHYSIOL, V80, P2608 SISSMAN NJ, 1970, AM J CARDIOL, V25, P141 SIVILOTTI L, 1991, PROG NEUROBIOL, V36, P35 SPITZER NC, 1979, ANNU REV NEUROSCI, V2, P363 SPITZER NC, 1994, TRENDS NEUROSCI, V17, P115 SPOERRI PE, 1988, SYNAPSE, V2, P11 STRAZNICKY C, 1985, ANAT EMBRYOL, V171, P91 SUN MK, 1988, BRAIN RES, V442, P229 TAKEMURA M, 1991, EXP NEUROL, V111, P324 TALMAN WT, 1980, SCIENCE, V209, P813 TALMAN WT, 1984, FED PROC, V43, P39 TALMAN WT, 1989, BRAIN RES, V477, P7 THOMSON AM, 1989, TRENDS NEUROSCI, V12, P349 TORVIK A, 1956, J COMP NEUROL, V106, P51 TREMBLAY E, 1988, BRAIN RES, V461, P393 VANGIERSBERGEN PLM, 1992, PHYSIOL REV, V72, P789 WAITE PME, 1982, P ROY SOC LOND B BIO, V214, P191 WAITE PME, 1995, RAT NERVOUS SYSTEM, P705 WANG G, 1997, J PHYSIOL-LONDON, V502, P351 WANG J, 1994, EUR J NEUROSCI, V6, P1275 WEISS G, 1901, COMPT RENDS SOC BIOL, V53, P440 WINDLE WF, 1936, J COMP NEUROL, V63, P431 WOLFF JR, 1978, NATURE, V274, P72 WOLFF JR, 1993, NEUROCHEM RES, V18, P453 WONG RKS, 1982, J NEUROPHYSIOL, V48, P938 WRIGHT LL, 1981, J COMP NEUROL, V199, P125 WU JY, 1993, FLUORESCENT LUMINESC, P389 WU JY, 1998, HISTOCHEM J, V30, P169 WU WI, 1992, J NEUROSCI, V12, P3935 XIA Y, 1992, NEUROSCIENCE, V49, P973 YAE HD, 1992, J NEUROSCI METH, V42, P195 YAMADA KA, 1989, J NEUROSCI, V9, P3230 YAROM Y, 1985, NEUROSCIENCE, V16, P719 YATES BJ, 1998, EXP BRAIN RES, V119, P269 YUAN CS, 1998, J PHARMACOL EXP THER, V286, P736 YUSTE R, 1991, NEURON, V6, P333 YUSTE R, 1997, CEREB CORTEX, V7, P546 ZHANG J, 1998, J AUTONOM NERV SYST, V73, P170 ZHANG W, 1999, EUR J NEUROSCI, V11, P2332 |