Tsuchitani C
Sensory Sciences Center, Graduate School of Biomedical Sciences, University of Texas Health Sciences Center at Houston 77030-2901.
Otolaryngol Head Neck Surg. 1994 Jan;110(1):84-92. doi: 10.1177/019459989411000110.
Single-unit responses of cat superior olivary complex neurons to acoustic stimuli were examined to determine whether the units' action potentials were sufficiently synchronized to contribute to the brain stem evoked response. The medial nucleus of the trapezoid body and lateral superior olive are two major nuclei within the cat superior olivary complex. The first-spike discharge latencies of medial nucleus of the trapezoid body and lateral superior olivary neurons to monaural presentations of tone burst stimuli were measured as a function of stimulus level. Evidence is provided to support the hypotheses that in cat the medial nucleus of the trapezoid body may contribute directly to the monaural brain stem evoked response by producing action potentials synchronized to stimulus onset and may also contribute indirectly to the brain stem evoked response binaural difference wave bc by inhibiting the lateral superior olive unit excitatory responses synchronized to stimulus onset.
研究了猫上橄榄复合体神经元对听觉刺激的单单位反应,以确定这些单位的动作电位是否充分同步,从而对脑干诱发电位产生影响。梯形体内侧核和外侧上橄榄核是猫上橄榄复合体内的两个主要核团。测量了梯形体内侧核和外侧上橄榄核神经元对单耳短纯音刺激的首次放电潜伏期,并将其作为刺激强度的函数。有证据支持以下假设:在猫中,梯形体内侧核可能通过产生与刺激开始同步的动作电位,直接对单耳脑干诱发电位产生影响,并且还可能通过抑制与刺激开始同步的外侧上橄榄核单位兴奋性反应,间接对脑干诱发电位的双耳差波产生影响。