Retinal waves coordinate patterned activity throughout the developing visual system

被引:355
作者
Ackman, James B. [1 ]
Burbridge, Timothy J. [1 ]
Crair, Michael C. [1 ]
机构
[1] Yale Univ, Sch Med, Dept Neurobiol, New Haven, CT 06510 USA
基金
美国国家卫生研究院;
关键词
RETINOTOPIC MAP REFINEMENT; EYE-SPECIFIC SEGREGATION; GANGLION-CELLS; ACTIVITY TRANSIENTS; DIRECTION SELECTIVITY; ACTION-POTENTIALS; OCULAR DOMINANCE; INSTRUCTIVE ROLE; MOUSE; COLUMNS;
D O I
10.1038/nature11529
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
The morphological and functional development of the vertebrate nervous system is initially governed by genetic factors and subsequently refined by neuronal activity. However, fundamental features of the nervous system emerge before sensory experience is possible. Thus, activity-dependent development occurring before the onset of experience must be driven by spontaneous activity, but the origin and nature of activity in vivo remains largely untested. Here we use optical methods to show in live neonatal mice that waves of spontaneous retinal activity are present and propagate throughout the entire visual system before eye opening. This patterned activity encompassed the visual field, relied on cholinergic neurotransmission, preferentially initiated in the binocular retina and exhibited spatiotemporal correlations between the two hemispheres. Retinal waves were the primary source of activity in the midbrain and primary visual cortex, but only modulated ongoing activity in secondary visual areas. Thus, spontaneous retinal activity is transmitted through the entire visual system and carries patterned information capable of guiding the activity-dependent development of complex intra-and inter-hemispheric circuits before the onset of vision.
引用
收藏
页码:219 / +
页数:9
相关论文
共 59 条
[31]   Retinotopic map refinement requires spontaneous retinal waves during a brief critical period of development [J].
McLaughlin, T ;
Torborg, CL ;
Feller, MB ;
O'Leary, DDM .
NEURON, 2003, 40 (06) :1147-1160
[32]   SYNCHRONOUS BURSTS OF ACTION-POTENTIALS IN GANGLION-CELLS OF THE DEVELOPING MAMMALIAN RETINA [J].
MEISTER, M ;
WONG, ROL ;
BAYLOR, DA ;
SHATZ, CJ .
SCIENCE, 1991, 252 (5008) :939-943
[33]   Thalamic relay of spontaneous retinal activity prior to vision [J].
Mooney, R ;
Penn, AA ;
Gallego, R ;
Shatz, CJ .
NEURON, 1996, 17 (05) :863-874
[34]   A SMALL POPULATION OF RETINAL GANGLION-CELLS PROJECTING TO THE RETINA OF THE OTHER EYE - AN EXPERIMENTAL-STUDY IN THE RAT AND THE RABBIT [J].
MULLER, M ;
HOLLANDER, H .
EXPERIMENTAL BRAIN RESEARCH, 1988, 71 (03) :611-617
[35]   Competition in retinogeniculate patterning driven by spontaneous activity [J].
Penn, AA ;
Riquelme, PA ;
Feller, MB ;
Shatz, CJ .
SCIENCE, 1998, 279 (5359) :2108-2112
[36]   Spontaneous muscle twitches during sleep guide spinal self-organization [J].
Petersson, P ;
Waldenström, A ;
Fåhraeus, C ;
Schouenborg, J .
NATURE, 2003, 424 (6944) :72-75
[37]   Ephrin-As and neural activity are required for eye-specific patterning during retinogeniculate mapping [J].
Pfeiffenberger, C ;
Cutforth, T ;
Woods, G ;
Yamada, J ;
Rentería, RC ;
Copenhagen, DR ;
Flanagan, JG ;
Feldheim, DA .
NATURE NEUROSCIENCE, 2005, 8 (08) :1022-1027
[38]   PRENATAL GENESIS OF CONNECTIONS SUBSERVING OCULAR DOMINANCE IN RHESUS-MONKEY [J].
RAKIC, P .
NATURE, 1976, 261 (5560) :467-471
[39]   Switching Retinogeniculate Axon Laterality Leads to Normal Targeting but Abnormal Eye-Specific Segregation That Is Activity Dependent [J].
Rebsam, Alexandra ;
Petros, Timothy J. ;
Mason, Carol A. .
JOURNAL OF NEUROSCIENCE, 2009, 29 (47) :14855-14863
[40]   Development of Direction Selectivity in Mouse Cortical Neurons [J].
Rochefort, Nathalie L. ;
Narushima, Madoka ;
Grienberger, Christine ;
Marandi, Nima ;
Hill, Daniel N. ;
Konnerth, Arthur .
NEURON, 2011, 71 (03) :425-432