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猫上丘神经元多感觉整合的空间决定因素。

Spatial determinants of multisensory integration in cat superior colliculus neurons.

作者信息

Meredith M A, Stein B E

机构信息

Department of Anatomy, Medical College of Virginia, Virginia Commonwealth University, Richmond 23298-0709, USA.

出版信息

J Neurophysiol. 1996 May;75(5):1843-57. doi: 10.1152/jn.1996.75.5.1843.

DOI:10.1152/jn.1996.75.5.1843
PMID:8734584
Abstract
  1. Although a representation of multisensory space is contained in the superior colliculus, little is known about the spatial requirements of multisensory stimuli that influence the activity of neurons here. Critical to this problem is an assessment of the registry of the different receptive fields within individual multisensory neurons. The present study was initiated to determine how closely the receptive fields of individual multisensory neurons are aligned, the physiological role of that alignment, and the possible functional consequences of inducing receptive-field misalignment. 2. Individual multisensory neurons in the superior colliculus of anesthetized, paralyzed cats were studied with the use of standard extracellular recording techniques. The receptive fields of multisensory neurons were large, as reported previously, but exhibited a surprisingly high degree of spatial coincidence. The average proportion of receptive-field overlap was 86% for the population of visual-auditory neurons sampled. 3. Because of this high degree of intersensory receptive-field correspondence, combined-modality stimuli that were coincident in space tended to fall within the excitatory regions of the receptive fields involved. The result was a significantly enhanced neuronal response in 88% of the multisensory neurons studied. If stimuli were spatially disparate, so that one fell outside its receptive field, either a decreased response occurred (56%), or no intersensory effect was apparent (44%). 4. The normal alignment of the different receptive fields of a multisensory neuron could be disrupted by passively displacing the eyes, pinnae, or limbs/body. In no case was a shift in location or size observed in a neuron's other receptive field(s) to compensate for this displacement. The physiological result of receptive-field misalignment was predictable and based on the location of the stimuli relative to the new positions of their respective receptive fields. Now, for example, one component of a spatially coincident pair of stimuli might fall outside its receptive field and inhibit the other's effects. 5. These data underscore the dependence of multisensory integrative responses on the relationship of the different stimuli to their corresponding receptive fields rather than to the spatial relationship of the stimuli to one another. Apparently, the alignment of different receptive fields for individual multisensory neurons ensures that responses to combinations of stimuli derived from the same event are integrated to increase the salience of that event. Therefore the maintenance of receptive-field alignment is critical for the appropriate integration of converging sensory signals and, ultimately, elicitation of adaptive behaviors.
摘要
  1. 虽然上丘中包含多感觉空间的表征,但对于影响此处神经元活动的多感觉刺激的空间要求却知之甚少。解决这个问题的关键在于评估单个多感觉神经元内不同感受野的配准情况。本研究旨在确定单个多感觉神经元的感受野对齐程度、这种对齐的生理作用以及诱导感受野错位可能产生的功能后果。2. 使用标准的细胞外记录技术对麻醉、瘫痪猫的上丘中的单个多感觉神经元进行了研究。如先前报道的那样,多感觉神经元的感受野很大,但呈现出惊人的高度空间重合度。所采样的视觉 - 听觉神经元群体的感受野重叠平均比例为86%。3. 由于这种高度的感觉间感受野对应性,在空间上重合的联合模态刺激往往落在所涉及的感受野的兴奋区域内。结果是,在所研究的88%的多感觉神经元中,神经元反应显著增强。如果刺激在空间上不重合,以至于其中一个落在其感受野之外,要么反应降低(56%),要么没有明显的感觉间效应(44%)。4. 通过被动移动眼睛、耳廓或肢体/身体,可以破坏多感觉神经元不同感受野的正常对齐。在任何情况下,都未观察到神经元的其他感受野在位置或大小上发生偏移以补偿这种位移。感受野错位的生理结果是可预测的,并且基于刺激相对于其各自感受野新位置的位置。例如,现在,一对在空间上重合的刺激中的一个成分可能落在其感受野之外并抑制另一个的效应。5. 这些数据强调了多感觉整合反应对不同刺激与其相应感受野之间关系的依赖性,而不是对刺激彼此之间空间关系的依赖性。显然,单个多感觉神经元不同感受野的对齐确保了对来自同一事件的刺激组合的反应被整合以增加该事件的显著性。因此,维持感受野对齐对于汇聚感觉信号的适当整合以及最终引发适应性行为至关重要。

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