Edds-Walton Peggy L, Fay Richard R
Neuroscience Institute, Marine Biological Laboratory, Woods Hole, MA 02543, USA.
J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2005 Dec;191(12):1079-86. doi: 10.1007/s00359-005-0051-z. Epub 2005 Sep 20.
Our previous studies have shown that the peripheral auditory system of the toadfish encodes the direction of a sound source. Here, we compare directional responses of peripheral saccular afferents, cells in the descending octaval nucleus (DON) of the medulla, and the torus semicircularis (TS) of the midbrain. Recording locations in the brain were labeled with neurobiotin to confirm the site. To compare directional responses among cells, we calculated an index [sharpening ratio (SR)] that weights the relative strength of responses to the best direction for that cell and to the adjacent stimulus angles tested. Unsharpened saccular afferents tend to have a cosinusoidal directional response pattern (DRP) with an expected SR of 0.87. In DON, more than 60% of the cells exhibited directional sharpening (defined as SR <0.8). In TS, more than 80% of the cells exhibited directional sharpening. We conclude that directional auditory sharpening first occurs in DON and some additional sharpening occurs in the ascending pathway to the midbrain, particularly in azimuth. The sharpening of directional selectivity is likely to be an important component of the neural computations underlying directional hearing.
我们之前的研究表明,蟾鱼的外周听觉系统对声源方向进行编码。在此,我们比较了外周球囊传入神经、延髓下行八分体核(DON)中的细胞以及中脑半规管隆起(TS)的方向反应。大脑中的记录位置用神经生物素标记以确认位点。为了比较细胞间的方向反应,我们计算了一个指数[锐化率(SR)],该指数权衡了细胞对最佳方向和所测试的相邻刺激角度的反应相对强度。未锐化的球囊传入神经往往具有余弦方向反应模式(DRP),预期SR为0.87。在DON中,超过60%的细胞表现出方向锐化(定义为SR<0.8)。在TS中,超过80%的细胞表现出方向锐化。我们得出结论,方向听觉锐化首先发生在DON,并且在向中脑的上行通路中会发生一些额外的锐化,尤其是在方位角方面。方向选择性的锐化可能是方向听觉背后神经计算的一个重要组成部分。