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Subthreshold auditory inputs to extrastriate visual neurons are responsive to parametric changes in stimulus quality: Sensory-specific versus non-specific coding

机译:亚阈视觉听觉输入到外泌体视觉神经元对刺激质量的参数变化做出响应:感觉特异性编码与非特异性编码

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摘要

A new subthreshold form of multisensory processing has been recently identified that results from the convergence of suprathreshold excitatory inputs from one modality with subthreshold inputs from another. Because of the subthreshold nature of the second modality, descriptive measures of sensory features such as receptive field properties or location are not directly apparent as they are for traditional bimodal neurons. This raises the question of whether or not subthreshold signals actually convey sensory-specific receptive field information as seen in their bimodal counterparts, or if they represent non-specific effects such as arousal. The present experiment addressed this issue in visually-responsive neurons from the cat posterolateral lateral suprasylvian cortex (PLLS). Single-unit electrophysiological techniques were used to record neuronal responses to visual, auditory and combined visual-auditory stimuli while the intensity of stimulation in the subthreshold auditory modality was systematically altered. The results showed that subthreshold multisensory neurons were sensitive to changes in auditory stimulus intensity. These receptive field sensitivities are similar to those observed in bimodal neurons and thereby represent sensory-specific, not arousal-related responses. In addition, these results provide further support for the notion that multisensory processing occurs along a dynamic continuum of neuronal convergence patterns from bimodal to purely sensory-specific.
机译:最近已经确定了一种新的亚阈值形式的多感官处理,这是一种模式的阈值以上兴奋性输入与另一种模式的阈值以下输入相融合的结果。由于第二模态的亚阈值性质,对感官特征(如接受野特性或位置)的描述性测量并不像传统的双峰神经元那样直接显而易见。这就提出了一个问题,即亚阈值信号是否实际上传达了在双峰对应物中所见的感觉特异性感受野信息,或者它们是否代表非特异性效应(如唤醒)。本实验解决了来自猫后外侧外侧上上睑皮质(PLLS)的视觉响应神经元中的这个问题。单单元电生理技术用于记录对视觉,听觉和视觉听觉组合刺激的神经元反应,而阈下听觉方式的刺激强度则被系统地改变。结果表明,阈下多感觉神经元对听觉刺激强度的变化敏感。这些感受野的敏感性类似于在双峰神经元中观察到的,因此代表了感觉特异性而不是唤醒相关的反应。另外,这些结果为以下观点提供了进一步的支持:多感觉处理沿着神经元收敛模式的动态连续体从双峰到纯感觉特异性发生。

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