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后半规管神经激活的前庭脊髓神经元的特性与轴突轨迹

Properties and axonal trajectories of posterior semicircular canal nerve-activated vestibulospinal neurons.

作者信息

Kushiro Keisuke, Bai Rishu, Kitajima Naoharu, Sugita-Kitajima Akemi, Uchino Yoshio

机构信息

Department of Human and Environmental Studies, Kyoto University, Yoshida-nihonmatsu-cho, Sakyo-ku, Kyoto 606-8501, Japan.

出版信息

Exp Brain Res. 2008 Nov;191(3):257-64. doi: 10.1007/s00221-008-1503-9. Epub 2008 Oct 2.

Abstract

We studied the axonal projections of vestibulospinal neurons activated from the posterior semicircular canal. The axonal projection level, axonal pathway, and location of the vestibulospinal neurons originating from the PC were investigated in seven decerebrated cats. Selective electrical stimulation was applied to the PC nerve, and extracellular recordings in the vestibular nuclei were performed. The properties of the PC nerve-activated vestibulospinal neurons were then studied. To estimate the neural pathway in the spinal cord, floating electrodes were placed at the ipsilateral (i) and contralateral (c) lateral vestibulospinal tract (LVST) and medial vestibulospinal tract (MVST) at the C1/C2 junction. To elucidate the projection level, floating electrodes were placed at i-LVST and MVST at the C3, T1, and L3 segments in the spinal cord. Collision block test between orthodromic inputs from the PC nerve and antidromic inputs from the spinal cord verified the existence of the vestibulospinal neurons in the vestibular nuclei. Most (44/47) of the PC nerve-activated vestibulospinal neurons responded to orthodromic stimulation to the PC nerve with a short (<1.4 ms) latency, indicating that they were second-order vestibulospinal neurons. The rest (3/47) responded with a longer (>/=1.4 ms) latency, indicating the existence of polysynaptic connections. In 36/47 PC nerve-activated vestibulospinal neurons, the axonal pathway was histologically verified to lie in the spinal cord. The axons of 17/36 vestibulospinal neurons projected to the i-LVST, whereas 14 neurons projected to the MVST, and 5 to the c-LVST. The spinal segment levels of projection of these neurons elucidated that the axons of most (15/17) of vestibulospinal neurons passing through the i-LVST reached the L3 segment level; none (0/14) of the neurons passing through the MVST extended to the L3 segment level; most (13/14) of them did not descend lower than the C3 segment level. In relation to the latency and the pathway, 33/36 PC nerve-activated vestibulospinal neurons were second-order neurons, whereas the remaining three were polysynaptic neurons. Of these, 33 second-order vestibulospinal neurons, 16 passed through the i-LVST, while 13 and 4 descended through the MVST and c-LVST, respectively. The remaining three were polysynaptic neurons. Histological analysis showed that most of the PC nerve-activated vestibulospinal neurons were located within a specific area in the medial part of the lateral vestibular nucleus and the rostral part of the descending vestibular nucleus. In conclusion, it was suggested that PC nerve-activated vestibulospinal neurons that were located within a focal area of the vestibular nuclei have strong connections with the lower segments of the spinal cord and are related to postural stability that is maintained by the short latency vestibulospinal reflex.

摘要

我们研究了由后半规管激活的前庭脊髓神经元的轴突投射。在七只去大脑猫中,研究了起源于后半规管(PC)的前庭脊髓神经元的轴突投射水平、轴突通路及位置。对PC神经施加选择性电刺激,并在前庭核中进行细胞外记录。然后研究PC神经激活的前庭脊髓神经元的特性。为了评估脊髓中的神经通路,在C1/C2交界处的同侧(i)和对侧(c)外侧前庭脊髓束(LVST)及内侧前庭脊髓束(MVST)放置漂浮电极。为了阐明投射水平,在脊髓的C3、T1和L3节段的i-LVST和MVST处放置漂浮电极。PC神经的顺向输入与脊髓的逆向输入之间的碰撞阻断试验证实了前庭核中存在前庭脊髓神经元。大多数(44/47)PC神经激活的前庭脊髓神经元对PC神经的顺向刺激反应潜伏期短(<1.4毫秒),表明它们是二级前庭脊髓神经元。其余(3/47)的反应潜伏期较长(≥1.4毫秒),表明存在多突触连接。在47个PC神经激活的前庭脊髓神经元中的36个中,其轴突通路经组织学证实位于脊髓中。36个前庭脊髓神经元中的17个轴突投射到同侧LVST,而14个神经元投射到MVST,5个投射到对侧LVST。这些神经元投射的脊髓节段水平表明,大多数(15/17)通过同侧LVST的前庭脊髓神经元的轴突到达L3节段水平;通过MVST的神经元无一(0/14)延伸至L3节段水平;其中大多数(13/14)不低于C3节段水平。就潜伏期和通路而言,36个PC神经激活的前庭脊髓神经元中的33个是二级神经元,其余三个是多突触神经元。其中,33个二级前庭脊髓神经元中,16个通过同侧LVST,13个和4个分别通过MVST和对侧LVST下行。其余三个是多突触神经元。组织学分析表明,大多数PC神经激活的前庭脊髓神经元位于外侧前庭核内侧部分和下行前庭核头端部分的特定区域内。总之,提示位于前庭核局部区域的PC神经激活的前庭脊髓神经元与脊髓下段有强连接,并与由短潜伏期前庭脊髓反射维持的姿势稳定性有关。

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