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Residual motion perception in a motion-blind patient assessed with limited-lifetime random dot stimuli

机译:通过有限寿命的随机点刺激评估运动盲患者的残余运动知觉

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摘要

A neurological patient (L.M.) suffering a specific loss of visual motion perception (Zihl et al., 1983) due to extrastriate cortical damage was studied using random dot “limited-lifetime” stimuli with a direction discrimination task. With a stimulus like that of Newsome and Pare (1988), the patient exhibited a severe deficit for motion perception, only being able to perform well for very high values of coherence. Different versions of the stimulus were employed to separate out the effects of limited lifetime versus the effects of additive noise as coherence was lowered. When all “signal” dots had a fixed, specified value of lifetime, and varying percentages of “noise” dots were added, the patient showed a profound deficit. In contrast, a stimulus consisting of no noise dots at all, and signal dots having fixed values of lifetime, revealed relatively good performance for surprisingly brief dot lifetimes. Thus, it is the presence of noisy, incoherent dot motion, rather than brief lifetimes, that causes such poor performance on the stimulus of Newsome and Pare (1988). Most surprising was the finding that the presence of even very small percentages of stationary noise dots was sufficient to disrupt totally direction discrimination of moving signal dots. The findings reported here suggest that one major role of extrastriate cortical processing might be the interpretation of stimuli that suffer from an impaired signal-to-noise ratio; the most commonly encountered form of “noise” would presumably be contamination by irrelevant directional spatio- temporal frequency components.
机译:使用随机点“有限寿命”刺激与方向辨别任务,研究了神经性患者(L.M.)由于过度的皮质损伤而导致视觉运动知觉的特定丧失(Zihl等,1983)。像Newsome and Pare(1988)这样的刺激,患者表现出严重的运动知觉缺陷,只能在非常高的连贯性下表现良好。随着相干性的降低,采用了不同形式的刺激来区分有限寿命的影响与附加噪声的影响。当所有“信号”点均具有固定的指定寿命值,并且添加了不同百分比的“噪声”点时,患者表现出严重的缺陷。相反,完全不包含噪声点和具有固定寿命值的信号点的刺激,对于令人惊讶的短暂的点寿命显示出相对良好的性能。因此,是噪声的,不连贯的点运动而不是短暂的寿命的存在,导致了Newsome和Pare(1988)的刺激下如此糟糕的表现。最令人惊讶的发现是,即使很小百分比的固定噪声点的存在也足以破坏运动信号点的方向识别。此处报道的发现表明,外泌皮层处理的一个主要作用可能是解释信噪比受损的刺激。最常见的“噪声”形式可能是不相关的方向时空频率分量造成的污染。

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