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自然扫视与电诱发扫视之间的相互作用。III. 非平稳性是积分器未瞬间重置的结果吗?

Interactions between natural and electrically evoked saccades. III. Is the nonstationarity the result of an integrator not instantaneously reset?

作者信息

Schlag J, Pouget A, Sadeghpour S, Schlag-Rey M

机构信息

Brain Research Institute and Department of Neurobiology, UCLA, Los Angeles, California 90095-1763, USA.

出版信息

J Neurophysiol. 1998 Feb;79(2):903-10. doi: 10.1152/jn.1998.79.2.903.

Abstract

In the monkey, fixed-vector saccades evoked by superior colliculus (SC) stimulation when the animal fixates can be dramatically modified if the stimulation is applied during or immediately after an initial natural saccade. The vector is then deviated in the direction opposite to the displacement just accomplished as if it were compensating for part of the preceding trajectory. Recently, it was suggested that the amplitude of the compensatory deviation is related to the amplitude of the initial saccade linearly, and that the ratio between the two decreases exponentially as stimulation is applied later. These two findings (spatial linearity and temporal nonstationarity) were invoked as evidence for the noninstantaneous resetting of a feedback integrator. Such an integrator is included in most models of saccade generation for the specific purpose of terminating a saccade when it has reached its intended goal. However, the hypothesis of a feedback integrator in the process of being reset implies that the exponential decay of the compensatory deviation is temporally linked to the end of the initial saccade. We analyzed the time course of this decay in stimulation experiments performed at 24 SC sites in two monkeys. The results show that if the start of the exponential decay of compensation is assumed to be linked to the end of the initial saccade, then the relation between the amount of compensatory deviation and the amplitude of the initial saccade is not linear. On the other hand, it is possible to show a linear relation if the measurements of compensatory deviation are made in terms of delay of stimulation from the saccade beginning. We conclude that stimulating the SC just after a visually guided saccade does not seem to test the properties of a feedback integrator. Whether such an integrator is or is not resettable is not likely to be decided by this approach. Conversely, as the nonstationarity of compensation is linked to the beginning of the saccade, the nonstationarity seems to represent a property of an event occurring at saccade onset. We suggest that this event, close to the input of the oculomotor apparatus, is the summation of the visual signal with a damped signal of eye position or displacement.

摘要

在猴子身上,当动物注视时,由上丘(SC)刺激诱发的固定向量扫视,如果在初始自然扫视期间或之后立即施加刺激,可能会发生显著改变。然后,向量会朝着与刚刚完成的位移相反的方向偏离,就好像它在补偿先前轨迹的一部分。最近,有人提出补偿性偏差的幅度与初始扫视的幅度呈线性关系,并且随着刺激施加时间的延迟,两者之间的比率呈指数下降。这两个发现(空间线性和时间非平稳性)被用作反馈积分器非即时重置的证据。大多数扫视生成模型都包含这样一个积分器,其特定目的是在扫视达到预期目标时终止扫视。然而,反馈积分器在重置过程中的假设意味着补偿性偏差的指数衰减在时间上与初始扫视的结束相关。我们在两只猴子的24个SC位点进行的刺激实验中分析了这种衰减的时间进程。结果表明,如果假设补偿的指数衰减开始与初始扫视的结束相关,那么补偿性偏差量与初始扫视幅度之间的关系不是线性的。另一方面,如果根据刺激相对于扫视开始的延迟来测量补偿性偏差,则可以显示出线性关系。我们得出结论,在视觉引导的扫视之后立即刺激SC似乎并不能测试反馈积分器的特性。这种积分器是否可重置不太可能由这种方法决定。相反,由于补偿的非平稳性与扫视的开始相关,这种非平稳性似乎代表了扫视开始时发生的一个事件的特性。我们认为,这个接近动眼神经装置输入的事件是视觉信号与眼位或位移的衰减信号的总和。

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