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猫的上丘与头部和眼睛的运动

The superior colliculus and movements of the head and eyes in cats.

作者信息

Harris L R

出版信息

J Physiol. 1980 Mar;300:367-91. doi: 10.1113/jphysiol.1980.sp013167.

Abstract
  1. The superior colliculus has been studied in alert cats which were restrained and whose head and eye movements were monitored.2. Microstimulation within the rostral part of the colliculus, which represents the central 25 deg of the visual field, evokes saccadic eye movements that carry the area centralis to that region of visual space previously occupied by the receptive fields of the cells that were stimulated (;foveation'). These saccades are not generally accompanied by a movement of the head.3. At more caudal locations the visual receptive fields of collicular neurones lie at a greater eccentricity relative to the area centralis than the maximum possible deviation of the eyes from the central position in normal circumstances. At these sites electrical stimulation produces a combined movement of the head and eyes whose co-ordination is identical to that of natural gaze changes in response to novel stimuli. Prolonged stimulation results in the addition of further co-ordinated eye-head movements.4. The addition of a movement of the head does not increase the area of visual space that may be foveated in a single gaze change. Movements of the head are compensated by the vestibulo-ocular reflex. The visual receptive fields of cells at more caudal locations cannot be foveated by a single gaze change.5. A third class of response to electrical stimulation is also occasionally found in the caudal part of the colliculus. The head movement often begins before an accompanying eye movement and continues smoothly for the entire stimulation duration or until limited by the range of mobility.6. Electrical microstimulation was never found to produce so-called ;goal-directed eye movement, in which the eyes move, in a single saccade, to a fixed orbital position regardless of their starting position.7. Ninety-nine cells were recorded from the superior colliculus and classified into four types based on their responses, or lack of responses, during or preceding eye and head movements. Type 1 cells did not show changes in activity prior to gaze changes Type 2 cells were inhibited prior to and during eye movements. Cells discharging before normal saccadic eye movements (type 3) were found only in the rostral part of the colliculus. Cells discharging before head movements (type 4) were found only in the caudal part.8. These results are discussed with respect to the production of gaze changes in the cat.
摘要
  1. 已经在清醒且受到约束、头部和眼球运动受到监测的猫身上对上丘进行了研究。

  2. 在上丘的前部(代表视野中央25度)进行微刺激,会引发眼球的快速扫视运动,使中央凹移至视觉空间中先前被受刺激细胞的感受野所占据的区域(即“注视”)。这些扫视运动通常不伴随头部运动。

  3. 在更靠后的位置,上丘神经元的视觉感受野相对于中央凹的偏心度,比在正常情况下眼睛偏离中心位置的最大可能偏差更大。在这些部位,电刺激会产生头部和眼睛的联合运动,其协调方式与对新刺激的自然注视变化相同。长时间刺激会导致进一步的协调眼-头运动。

  4. 头部运动的加入并不会增加单次注视变化中可被注视的视觉空间面积。头部运动由前庭眼反射进行补偿。在更靠后的位置的细胞的视觉感受野无法通过单次注视变化被注视到。

  5. 在丘的尾部偶尔也会发现对电刺激的第三类反应。头部运动通常在伴随的眼球运动之前开始,并在整个刺激持续时间内平稳持续,或直到受到活动范围的限制。

  6. 从未发现电微刺激会产生所谓的“目标导向性眼球运动”,即眼睛在单次扫视中移动到固定的眼眶位置,而不管其起始位置如何。

  7. 从上丘记录了99个细胞,并根据它们在眼球和头部运动期间或之前的反应(或无反应)分为四种类型。1型细胞在注视变化之前没有显示出活动变化;2型细胞在眼球运动之前和期间受到抑制。仅在上丘的前部发现了在正常眼球快速扫视运动之前放电的细胞(3型)。仅在丘的尾部发现了在头部运动之前放电的细胞(4型)。

  8. 针对猫的注视变化的产生对这些结果进行了讨论。

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本文引用的文献

3
Fiber projections of the superior colliculus in the cat.猫上丘的纤维投射
J Comp Neurol. 1961 Apr;116:157-77. doi: 10.1002/cne.901160206.
6
The cat's vestibulo-ocular reflex.猫的前庭眼反射。
J Physiol. 1980 Mar;300:337-51. doi: 10.1113/jphysiol.1980.sp013165.
8
Two visual systems.两种视觉系统。
Science. 1969 Feb 28;163(3870):895-902. doi: 10.1126/science.163.3870.895.

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