Tang Jie, Suga Nobuo
Department of Biology, Washington University, St. Louis, Missouri 63130, USA.
J Neurosci. 2009 Jun 3;29(22):7230-7. doi: 10.1523/JNEUROSCI.0373-09.2009.
In auditory cortex of the mustached bat, the FF (F means frequency modulation), dorsal fringe (DF), and ventral fringe (VF) areas consist of "combination-sensitive" neurons tuned to the pair of an emitted biosonar pulse and its echo with a specific delay (best delay: BD). The DF and VF areas are hierarchically at a higher level than the FF area. Focal electric stimulation of the FF area evokes "centrifugal" BD shifts of DF neurons, i.e., shifts away from the BD of the stimulated FF neurons, whereas stimulation of the DF neurons evokes "centripetal" BD shifts of FF neurons, i.e., shifts toward the BD of the stimulated DF neurons. In our current studies, we found that the feedforward projection from FF neurons evokes centrifugal BD shifts of VF neurons, that the feedback projection from VF neurons evokes centripetal BD shifts of FF neurons, that the contralateral projection from DF neurons evokes centripetal BD shifts of DF neurons, and that the centripetal BD shifts evoked by the DF and VF neurons are 2.5 times larger than the centrifugal BD shifts evoked by the FF neurons. The centrifugal BD shifts shape the selective neural representation of a specific target distance, whereas the centripetal BD shifts expand the representation of the selected specific target distance to focus on the processing of the target information at a specific distance. The centrifugal and centripetal BD shifts evoked by the feedforward and feedback projections promote finer analysis of a target at shorter distances.
在长有胡须的蝙蝠的听觉皮层中,FF(F表示频率调制)、背侧条纹(DF)和腹侧条纹(VF)区域由“组合敏感”神经元组成,这些神经元被调整到发出的生物声纳脉冲及其具有特定延迟的回声对(最佳延迟:BD)。DF和VF区域在层次上比FF区域更高。对FF区域进行局部电刺激会引起DF神经元的“离心”BD偏移,即偏离受刺激的FF神经元的BD,而刺激DF神经元会引起FF神经元的“向心”BD偏移,即朝着受刺激的DF神经元的BD偏移。在我们目前的研究中,我们发现FF神经元的前馈投射会引起VF神经元的离心BD偏移,VF神经元的反馈投射会引起FF神经元的向心BD偏移,DF神经元的对侧投射会引起DF神经元的向心BD偏移,并且DF和VF神经元引起的向心BD偏移比FF神经元引起的离心BD偏移大2.5倍。离心BD偏移塑造了特定目标距离的选择性神经表征,而向心BD偏移扩展了所选特定目标距离的表征,以专注于特定距离处目标信息的处理。前馈和反馈投射引起的离心和向心BD偏移促进了对较短距离目标的更精细分析。