Sabatini B L, Regehr W G
Department of Neurobiology, Harvard Medical School, Boston, Massachusetts 02115, USA.
Annu Rev Physiol. 1999;61:521-42. doi: 10.1146/annurev.physiol.61.1.521.
Many behaviors require rapid and precisely timed synaptic transmission. These include the determination of a sound's direction by detecting small interaural time differences and visual processing, which relies on synchronous activation of large populations of neurons. In addition, throughout the brain, concerted firing is required by Hebbian learning mechanisms, and local circuits are recruited rapidly by fast synaptic transmission. To achieve speed and precision, synapses must optimize the many steps between the firing of a presynaptic cell and the response of its postsynaptic targets. Until recently, the behavior of mammalian synapses at physiological temperatures was primarily extrapolated from studies at room temperature or from the properties of invertebrate synapses. Recent studies have revealed some of the specializations that make synapses fast and precise in the mammalian central nervous system at physiological temperatures.
许多行为都需要快速且精确计时的突触传递。这些行为包括通过检测微小的双耳时间差来确定声音方向以及视觉处理,而视觉处理依赖于大量神经元的同步激活。此外,在整个大脑中,赫布学习机制需要协同放电,并且快速的突触传递会迅速招募局部回路。为了实现速度和精度,突触必须优化从突触前细胞放电到其突触后靶点反应之间的众多步骤。直到最近,哺乳动物突触在生理温度下的行为主要是从室温研究或无脊椎动物突触的特性推断而来的。最近的研究揭示了一些使哺乳动物中枢神经系统中的突触在生理温度下快速且精确的特殊机制。