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兔下橄榄核背帽微损伤对视动反射和前庭眼反射的影响。

Effects of microlesions of dorsal cap of inferior olive of rabbits on optokinetic and vestibuloocular reflexes.

作者信息

Barmack N H, Simpson J I

出版信息

J Neurophysiol. 1980 Jan;43(1):182-206. doi: 10.1152/jn.1980.43.1.182.

Abstract
  1. Discrete, unilateral, electrolytic lesions of the dorsal cap of the inferior olive were made in rabbits in an attempt to assess the effect on eye movements of removal of a visual climbing fiber input to the fluocculus. The position of the lesioning electrode within the dorsal cap was adjusted on the basis of the field potential evoked by flash stimulation of the contralateral eye. 2. Electrophysiological and anatomical evidence confirmed that the microlesions of the dorsal cap destroyed 10-80% of olivary cells, but cause only slight damage to the olivocerebellar pathway originating from the contralateral dorsal cap. 3. The immediate effect of the microlesions was a spontaneous, conjugate drift of the eyes to the side contralateral to the lesion. The effects of the microlesions on eye movements were further examined using reflexes evoked by vestibular and optokinetic stimulation. 4. Postoperatively, the vestibuloocular reflex (VOR) gain was not modified, but there was a marked VOR velocity bias to the contralateral side. This velocity bias was most pronounced at low stimulus frequencies (0.02-0.05 Hz, +/- 10 degrees) and was minimal at stimulus frequencies above 0.5 Hz. 5. Monocular, sinusoidal optokinetic stimulation with a large contrast-rich visual target evokes, in normal rabbits, a conjugate asymmetric following response with a higher eye velocity for target movement from posterior to anterior. Following damage to the dorsal cap, the asymmetry of this optokinetic reflex was reversed when the target was presented to the eye contralateral to the lesion. With monocular, constant-velocity optokinetic stimulation delivered to the contralateral eye, the optokinetic gain for movement in the posterior to anterior direction was decreased. 6. These data suggest that visual climbing fibers are part of a feedback loop that reduces retinal slip of low velocity. The relatively low discharge rate of climbing fibers would seem appropriate to ecode continuously retinal slip of low velocity and to influence low-velocity eye movements.
摘要
  1. 在兔子身上制作下橄榄核背帽的离散、单侧电解损伤,以评估去除向小脑绒球的视觉攀爬纤维输入对眼球运动的影响。根据对侧眼闪光刺激诱发的场电位来调整损伤电极在背帽内的位置。2. 电生理和解剖学证据证实,背帽的微损伤破坏了10%-80%的橄榄核细胞,但仅对源自对侧背帽的橄榄小脑通路造成轻微损伤。3. 微损伤的即时效应是眼球自发地向损伤对侧共轭漂移。使用前庭和视动刺激诱发的反射进一步研究微损伤对眼球运动的影响。4. 术后,前庭眼反射(VOR)增益未改变,但对侧存在明显的VOR速度偏差。这种速度偏差在低刺激频率(0.02-0.05Hz,±10度)时最为明显,在高于0.5Hz的刺激频率时最小。5. 用大的高对比度视觉目标进行单眼正弦视动刺激,在正常兔子中会诱发共轭不对称跟随反应,目标从后向前移动时眼速度更高。背帽损伤后,当目标呈现给损伤对侧眼时,这种视动反射的不对称性会反转。对损伤对侧眼进行单眼恒速视动刺激时,后向前方向运动的视动增益降低。6. 这些数据表明,视觉攀爬纤维是减少低速视网膜滑动的反馈回路的一部分。攀爬纤维相对较低的放电率似乎适合于连续编码低速视网膜滑动并影响低速眼球运动。

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