Brugge J F, Orman S S, Coleman J R, Chan J C, Phillips D P
Hear Res. 1985;20(3):275-87. doi: 10.1016/0378-5955(85)90032-2.
Binaural interactions were recorded in auditory cortical (AI) neurons of anesthetized adult cats that had unilateral atresias created shortly after birth by surgically ligating and cutting one external ear canal. At the time of the recording experiment, the atresia and associated debris were removed and tones were delivered to both tympanic membranes via a sealed and calibrated acoustic system. The majority of neurons recorded were in the cortex ipsilateral to the previously occluded ear. Thresholds for monaural stimulation of either the operated or unoperated ear were within normal range although thresholds to stimulation of the previously operated ear tended to occupy the upper end of the normal distribution. Monotonic and nonmonotonic spike count-vs-intensity functions derived from responses to monaural stimulation of the atretic ear were indistinguishable in their shape from those recorded in normal cats. All binaural classes were represented in our sample in proportions similar to those reported in cats with two normal ears. The forms of the functions relating spike count to interaural intensity differences and interaural phase differences were essentially the same as those seen in normal animals. The main binaural deficit observed under these conditions was a shift in the interaural intensity difference to which an AI neuron was most sensitive. The intensity needed for a stimulus to the atretic ear to participate in the binaural response was as much as 50 dB higher than that at the opposite normal ear in contrast to the nearly equal SPLs required for binaural interactions in cats with two ears intact. It was suggested that elevated thresholds at the previously operated ear could account for much of the shift observed.
在出生后不久通过手术结扎和切断一侧外耳道而造成单侧闭锁的成年麻醉猫的听觉皮层(AI)神经元中记录双耳相互作用。在记录实验时,去除闭锁及相关碎片,并通过密封且校准的声学系统向双侧鼓膜输送纯音。记录的大多数神经元位于先前被阻塞耳朵同侧的皮层中。尽管对先前手术耳朵的刺激阈值往往处于正态分布的上限,但对手术侧或未手术侧耳朵进行单耳刺激的阈值均在正常范围内。从对闭锁耳朵单耳刺激的反应得出的单调和非单调的放电计数与强度函数,其形状与在正常猫中记录的函数无法区分。我们样本中的所有双耳类别所占比例与两只耳朵正常的猫中所报告的比例相似。将放电计数与耳间强度差和耳间相位差相关的函数形式与正常动物中所见的基本相同。在这些条件下观察到的主要双耳缺陷是AI神经元最敏感的耳间强度差发生了偏移。与两只耳朵完好的猫中双耳相互作用所需的声压级几乎相等相比,刺激闭锁耳朵以参与双耳反应所需的强度比相对的正常耳朵高出多达50分贝。有人认为,先前手术耳朵的阈值升高可以解释所观察到的大部分偏移。