Sato H, Imagawa M, Meng H, Zhang X, Bai R, Uchino Y
Department of Physiology, Tokyo Medical University, 6-1-1 Shinjuku, Shinjuku-ku, Tokyo 160-8402, Japan.
Exp Brain Res. 2002 Aug;145(3):351-64. doi: 10.1007/s00221-002-1119-4. Epub 2002 Jun 13.
Convergent inputs from the ipsilateral semicircular canal nerves onto single vestibular nucleus neurons were investigated in decerebrate cats using intracellular recording after selective stimulation of each ampullar nerve. One hundred and seventy-four neurons were activated by stimulating the anterior semicircular (AC) and/or posterior semicircular canal (PC) nerves. These neurons were also antidromically stimulated and classified according to the pattern of their collateral projections to the oculomotor complex and the spinal cord. Four types were found: vestibulo-ocular (VO), vestibulospinal (VS), vestibulo-oculospinal (VOS), and vestibular (V) neurons, the latter of which were not activated by stimulation of either the oculomotor complex or the spinal cord. Of 174 AC- and/or PC-activated vestibular nucleus neurons, 32 (18%) received convergent inputs from both nerves. These convergent neurons included 11 VS, 6 VOS, and 15 V neurons. We found no VO neurons with convergent input. The vast majority (82%) of AC/PC-activated VS and VOS convergent neurons received excitatory inputs from both nerves, 12% received reciprocal inputs (i.e., excitatory from one and inhibitory from the other), and the remaining neurons received inhibitory inputs from both nerves. By stimulating the horizontal semicircular (HC) and/or PC nerves, 183 neurons were activated. Of these, 44 (24%) received convergent inputs from both nerves. These convergent neurons included 19 VS, 5 VOS, 2 VO, and 18 V neurons. Approximately one-half (46%) of HC/PC-activated VS and VOS convergent neurons received excitatory inputs from both nerves and 42% received reciprocal inputs, and the remaining neurons received inhibitory inputs from both nerves. In both nerve pairs, the percentage of VS neurons was higher (AC/PC, 34%; HC/PC, 43%) than that of VOS or VO neurons. Approximately half of these convergent neurons were located in the lateral nucleus. These results suggest that, during mixed angular head accelerations, the vestibulocollic reflex may be partly accomplished by VS and VOS convergent neurons.
在去大脑猫中,通过对每个壶腹神经进行选择性刺激后采用细胞内记录法,研究了来自同侧半规管神经到单个前庭核神经元的汇聚输入。通过刺激前半规管(AC)和/或后半规管(PC)神经,激活了174个神经元。这些神经元也接受了逆向刺激,并根据它们向动眼神经复合体和脊髓的侧支投射模式进行分类。发现了四种类型:前庭眼(VO)、前庭脊髓(VS)、前庭眼脊髓(VOS)和前庭(V)神经元,其中后者在刺激动眼神经复合体或脊髓时未被激活。在174个由AC和/或PC激活的前庭核神经元中,32个(18%)接受了来自两条神经的汇聚输入。这些汇聚神经元包括11个VS、6个VOS和15个V神经元。我们未发现具有汇聚输入的VO神经元。绝大多数(82%)由AC/PC激活的VS和VOS汇聚神经元接受来自两条神经的兴奋性输入,12%接受相互性输入(即一条神经为兴奋性输入,另一条神经为抑制性输入);其余神经元接受来自两条神经的抑制性输入。通过刺激水平半规管(HC)和/或PC神经,激活了183个神经元。其中,44个(24%)接受了来自两条神经的汇聚输入。这些汇聚神经元包括19个VS、5个VOS、2个VO和18个V神经元。大约一半(46%)由HC/PC激活的VS和VOS汇聚神经元接受来自两条神经的兴奋性输入,42%接受相互性输入;其余神经元接受来自两条神经的抑制性输入。在这两对神经中,VS神经元的百分比(AC/PC为34%;HC/PC为43%)高于VOS或VO神经元。这些汇聚神经元中约一半位于外侧核。这些结果表明,在混合角向头部加速度期间,前庭颈反射可能部分由VS和VOS汇聚神经元完成。