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猫前庭眼反射系统中的感觉运动转换。I. 编码代偿性眼球运动空间协调的神经元信号。

Sensorimotor transformation in the cat's vestibuloocular reflex system. I. Neuronal signals coding spatial coordination of compensatory eye movements.

作者信息

Graf W, Baker J, Peterson B W

机构信息

Rockefeller University, New York 10021.

出版信息

J Neurophysiol. 1993 Dec;70(6):2425-41. doi: 10.1152/jn.1993.70.6.2425.

Abstract
  1. Coordinate transformation between vestibular and oculomotor reference frames is required to produce compensatory, vestibuloocular reflex (VOR) eye movements in view of the differing, although similar, peripheral three-dimensional geometry of the semicircular canals and the extraocular muscles. This transformation requires convergence of canal-specific signals at some level in the VOR arc. 2. To investigate the networks that underlie the transformation between oculomotor and vestibular reference frames for spatial coordination of compensatory eye movements, we recorded intracellularly in decerebrate cats from 93 identified second-order vestibulooculomotor and abducens internuclear neurons in the medial longitudinal fasciculus (MLF) between abducens and trochlear nuclei and characterized their spatial response properties. Neurons were classified according to whether they were activated from the labyrinth ipsi- or contralateral to the recording site and according to the canal from which they received their strongest input. Our data revealed neurons that carried single- and multiple-canal signals. 3. Twenty-two neurons received their primary input from the ipsi- or contralateral anterior canal (AC). Ten nonconvergent AC neurons responded maximally to rotation in a plane within 10 degrees of the AC plane, whereas 6 AC neurons received sufficient convergent input from the orthogonal vertical canals to shift their plane of maximum response > 10 degrees from the AC plane. Of 29 ipsi- and contralateral posterior canal (PC) neurons, 9 were non-convergent, whereas 13 received sufficient convergent input from the orthogonal vertical canals to shift their response plane > 10 degrees from the PC plane. The rotational responses of 6 AC and 12 PC neurons indicated that they received convergent input from the horizontal canals. However, when these responses were averaged, the horizontal responses tended to cancel, leaving little net population response to horizontal rotation. We also encountered 19 ascending axons of second-order neurons activated primarily from the horizontal canals. Nine of these received significant input from the vertical canals, but the mean population response was within 4 degrees of the horizontal canal plane. 4. Our results demonstrate single canal responses and specific canal-canal convergence within the population of vertical vestibulooculomotor neurons. This convergence is thought to participate in the coordinate transformation within the specific geometry of the VOR system. The data indicate response shifts of a population of AC neurons toward the plane of the inferior oblique muscle, and of a population of PC neurons toward the plane of the superior oblique muscle. Conspicuously absent are neurons that fall into the plane of either the superior rectus or the inferior rectus muscles. (ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 鉴于半规管和眼外肌的外周三维几何结构虽相似但有所不同,要产生代偿性前庭眼反射(VOR)眼动,就需要在前庭和动眼参考系之间进行坐标转换。这种转换需要特定管信号在VOR弧的某个水平上汇聚。2. 为了研究在补偿性眼动的空间协调中,动眼和前庭参考系之间转换所依据的神经网络,我们在去大脑猫中,对93个位于展神经核与滑车神经核之间的内侧纵束(MLF)中已确认的二阶前庭动眼神经元和展神经核间神经元进行了细胞内记录,并对它们的空间反应特性进行了表征。神经元根据其激活是来自记录部位同侧还是对侧的迷路,以及它们从哪条半规管接收最强输入来分类。我们的数据揭示了携带单半规管和多半规管信号的神经元。3. 22个神经元主要从同侧或对侧的前半规管(AC)接收输入。10个非汇聚性AC神经元在与AC平面成10度以内的平面内旋转时反应最大,而6个AC神经元从正交垂直半规管接收了足够的汇聚输入,使其最大反应平面从AC平面偏移超过10度。在29个同侧和对侧后半规管(PC)神经元中,9个是非汇聚性的,而13个从正交垂直半规管接收了足够的汇聚输入,使其反应平面从PC平面偏移超过10度。6个AC神经元和12个PC神经元的旋转反应表明它们从水平半规管接收了汇聚输入。然而,当对这些反应进行平均时,水平反应往往相互抵消,对水平旋转几乎没有净群体反应。我们还遇到了19个主要由水平半规管激活的二阶神经元的上升轴突。其中9个从垂直半规管接收了显著输入,但平均群体反应在水平半规管平面的4度范围内。4. 我们的结果表明,垂直前庭动眼神经元群体中存在单半规管反应和特定的半规管 - 半规管汇聚。这种汇聚被认为参与了VOR系统特定几何结构内的坐标转换。数据表明,一群AC神经元的反应平面向下斜肌平面偏移,一群PC神经元的反应平面向上斜肌平面偏移。明显没有落入上直肌或下直肌平面的神经元。(摘要截选至400字)

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