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灵长类前庭眼反射对外周前庭输入改变的适应。II 适应性慢相眼速的时空特性。

Adaptation of primate vestibuloocular reflex to altered peripheral vestibular inputs. II Spatiotemporal properties of the adapted slow-phase eye velocity.

作者信息

Angelaki D E, Hess B J

机构信息

Department of Surgery (Otolaryngology), University of Mississippi Medical Center, Jackson 39216-4505, USA.

出版信息

J Neurophysiol. 1996 Nov;76(5):2954-71. doi: 10.1152/jn.1996.76.5.2954.

Abstract
  1. The ability of the vestibuloocular reflex (VOR) to undergo adaptive modification after selective changes in the peripheral vestibular system was investigated in rhesus monkeys by recording three-dimensional eye movements before and after inactivation of selective semicircular canals. In the preceding paper we showed that the horizontal VOR gain evoked by passive yaw oscillations after lateral semicircular canal inactivation recovers gradually over time in a frequency-specific manner. Here we present the spatial tuning of the adapted slow-phase eye velocity and describe its spatiotemporal properties as a function of time after canal inactivation. 2. The spatial organization of the VOR was investigated during oscillations at different head positions in the pitch, roll, and yaw planes, as well as in the right anterior/left posterior and left anterior/right posterior canal planes. Acutely after bilateral inactivation of the lateral semicircular canals, a small horizontal response could still be elicited that peaked during rotations in pitched head positions that would maximally stimulate vertical semicircular canals. In addition, the phase of horizontal slow-phase velocity abruptly reversed through 180 degrees at positions close to upright, similarly to torsional slow-phase velocity. These spatial response properties suggest that the small, residual horizontal response components that are present acutely after plugging of both lateral canals originate from vertical semicircular canal signals. 3. As the horizontal response amplitude increased over time, consistent changes were also observed in the spatiotemporal tuning of horizontal slow-phase velocity. 1) The spatiotemporal response properties of horizontal slow-phase velocity acquired noncosine tuning characteristics, primarily in the pitch plane, in the right anterior/left posterior and left anterior/right posterior canal planes. Accordingly, horizontal response amplitude was nonzero during rotation in any head position in these planes and response phase varied significantly as a function of head orientation. 2) The peak horizontal response amplitude shifted spatially over time, such that 5-10 mo after plugging it was maximal during rotations at head positions close to upright. 4. In parallel to these unique spatiotemporal response properties characterizing the adapted horizontal VOR, torsional slow-phase velocity also exhibited small spatiotemporal changes after lateral canal inactivation that tended to precede in time the changes associated with the horizontal response components. In contrast, vertical slow-phase velocity in the plugged animals was unaltered and continued to be characterized by cosine-tuned spatial properties in three dimensions. 5. Recovery of the horizontal response gain during yaw oscillations in upright position, as well as the unique, noncosine spatiotemporal characteristics of the adapted horizontal VOR, were also observed in an animal with all but one vertical semicircular canals inactivated. There was, however, no sign of VOR gain recovery up to 2 mo after all semicircular canals were inactivated. These results suggest that the observed recovery of horizontal VOR is at least partly due to signals originating from the remaining intact vertical canal(s). Even in the presence of a single intact vertical canal, the improvement in horizontal gaze stability is at least partly restored through spatiotemporal changes in the processing of vestibuloocular signals that improve the gain and spatial tuning of horizontal VOR at the expense of temporal response properties.
摘要
  1. 通过记录选择性半规管失活前后的三维眼动,研究了恒河猴外周前庭系统选择性改变后前庭眼反射(VOR)进行适应性改变的能力。在前一篇论文中,我们表明,外侧半规管失活后,被动偏航振荡诱发的水平VOR增益会随着时间逐渐恢复,且具有频率特异性。在此,我们展示适应后的慢相眼速度的空间调谐,并描述其作为半规管失活后时间函数的时空特性。2. 在俯仰、横滚和偏航平面以及右前/左后和左前/右后半规管平面的不同头部位置振荡期间,研究了VOR的空间组织。外侧半规管双侧失活后不久,仍可诱发一个小的水平反应,该反应在使垂直半规管受到最大刺激的俯仰头部位置旋转期间达到峰值。此外,水平慢相速度的相位在接近直立位置时突然反转180度,类似于扭转慢相速度。这些空间反应特性表明,双侧半规管堵塞后立即出现的小的、残余的水平反应成分源自垂直半规管信号。3. 随着水平反应幅度随时间增加,水平慢相速度的时空调谐也观察到一致变化。1)水平慢相速度的时空反应特性获得了非余弦调谐特征,主要在俯仰平面、右前/左后和左前/右后半规管平面。因此,在这些平面的任何头部位置旋转期间,水平反应幅度均非零,且反应相位随头部方向显著变化。2)水平反应峰值幅度随时间在空间上发生移动,使得堵塞后5 - 10个月,在接近直立的头部位置旋转期间达到最大。4. 与这些表征适应后水平VOR的独特时空反应特性并行,扭转慢相速度在外侧半规管失活后也表现出小的时空变化,这些变化在时间上倾向于先于与水平反应成分相关的变化。相比之下,堵塞动物的垂直慢相速度未改变,并且在三维空间中继续以余弦调谐的空间特性为特征。5. 在除一个垂直半规管外所有垂直半规管均失活的动物中,也观察到直立位置偏航振荡期间水平反应增益的恢复以及适应后水平VOR独特的非余弦时空特征。然而,所有半规管失活后长达2个月都没有VOR增益恢复的迹象。这些结果表明,观察到的水平VOR恢复至少部分归因于源自剩余完整垂直半规管的信号。即使存在单个完整的垂直半规管,水平注视稳定性的改善也至少部分通过前庭眼信号处理的时空变化得以恢复,这些变化以牺牲时间反应特性为代价改善了水平VOR的增益和空间调谐。

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