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上丘中伴随快速扫视的视运动爆发神经元的活动。

Activity of visuomotor burst neurons in the superior colliculus accompanying express saccades.

作者信息

Edelman J A, Keller E L

机构信息

Graduate Group in Bioengineering, University of California at Berkeley 94720, USA.

出版信息

J Neurophysiol. 1996 Aug;76(2):908-26. doi: 10.1152/jn.1996.76.2.908.

Abstract
  1. We recorded visuomotor burst neurons in the deeper layers of the superior colliculus while two monkeys (Macaca fascicularis) made short-latency saccades known as express saccades to visual targets in order to determine whether the visual discharge normally seen for these cells served as the premotor burst during express saccades. We then compared saccade-related activity during express saccades with that recorded during regular latency saccades and delayed saccades. 2. Saccade latency histograms for two monkeys during trials with a temporal gap between fixation-point offset and target onset showed a distinct peak of saccades around 70-80 ms. One monkey also showed an additional peak around 125 ms. 3. Express saccades were found on the average to have the same relationship of saccade peak velocity to saccade amplitude as regular latency saccades and delayed saccades. Express saccades tended to be somewhat more hypometric than the other classes of saccades. However, express saccades were clearly visually guided and not anticipatory responses. 4. For most cells studied (33/40), express saccades were accompanied by a single, uninterrupted burst of activity beginning 40-50 ms after target onset and continuing until sometime around the end of the saccade. For a smaller group of cells (7/40), two peaks of burst activity were seen, although the second peak was smaller and tended to occur late, after saccade onset. Across all cells, the peak of visuomotor cell activity during express saccades correlated just as well with target onset as it did with saccade onset. 5. When considered as discharge temporally aligned to the onset of the saccade, bursts accompanying express saccades tended to begin at approximately the same time as that for regular and delayed saccades. However, this discharge generally peaked earlier for express than for regular and delayed saccades. Also, the magnitude of discharge for express saccades was higher than that for delayed saccades throughout the burst. 6. When considered as discharge temporally aligned to the appearance of the target, bursts began earlier for express and regular saccade trials than for delayed saccade trials. Peak discharge tended to be greater for express saccades than for the other classes of saccades. 7. The results of this investigation are consistent with the suggestion that the visual burst of visuomotor neurons in the deeper layers of the superior colliculus plays a role in the initiation of express saccades similar to that played by the premotor burst for saccades of longer latency. The elevated discharge for express saccades supports the idea that the superior colliculus plays a more critical role in express saccade generation than in the generation of longer-latency saccades. The elevated discharge also suggests that visuomotor bursters do not code one-to-one for saccade velocity nor for saccade dynamic motor error.
摘要
  1. 我们在两只猕猴(食蟹猴)向视觉目标做出称为快速扫视的短潜伏期扫视时,记录了上丘深层的视运动爆发神经元,以确定这些细胞通常所见的视觉放电是否在快速扫视期间充当运动前爆发。然后我们将快速扫视期间与扫视相关的活动与在常规潜伏期扫视和延迟扫视期间记录的活动进行了比较。2. 在注视点偏移和目标出现之间存在时间间隔的试验中,两只猕猴的扫视潜伏期直方图显示在70 - 80毫秒左右有一个明显的扫视峰值。一只猕猴在125毫秒左右还显示出另一个峰值。3. 发现快速扫视平均而言与常规潜伏期扫视和延迟扫视具有相同的扫视峰值速度与扫视幅度的关系。快速扫视往往比其他类型的扫视稍微欠测一些。然而,快速扫视显然是由视觉引导的,而不是预期反应。4. 对于大多数研究的细胞(40个中的33个),快速扫视伴随着在目标出现后40 - 50毫秒开始并持续到扫视结束前后某个时间的单个、不间断的活动爆发。对于一小部分细胞(40个中的7个),观察到有两个爆发活动峰值,尽管第二个峰值较小且倾向于在扫视开始后较晚出现。在所有细胞中,快速扫视期间视运动细胞活动的峰值与目标出现的相关性与与扫视开始的相关性一样好。5. 当被视为与扫视开始时间对齐的放电时,伴随快速扫视的爆发往往与常规和延迟扫视的爆发大致同时开始。然而,这种放电通常在快速扫视中比在常规和延迟扫视中更早达到峰值。而且,在整个爆发过程中,快速扫视的放电幅度高于延迟扫视。6. 当被视为与目标出现时间对齐的放电时,快速扫视和常规扫视试验中的爆发比延迟扫视试验中的爆发开始得更早。快速扫视的放电峰值往往比其他类型的扫视更大。7. 这项研究的结果与以下观点一致,即上丘深层视运动神经元的视觉爆发在快速扫视的启动中起作用,类似于运动前爆发在较长潜伏期扫视中所起的作用。快速扫视中升高的放电支持了上丘在快速扫视产生中比在较长潜伏期扫视产生中起更关键作用的观点。升高的放电还表明,视运动爆发神经元并非一对一地编码扫视速度或扫视动态运动误差。

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