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N-甲基-D-天冬氨酸受体对猫上丘深层多模态整合的重要性。

Importance of NMDA receptors for multimodal integration in the deep layers of the cat superior colliculus.

作者信息

Binns K E, Salt T E

机构信息

Department of Visual Science, Institute of Ophthalmology, London, United Kingdom.

出版信息

J Neurophysiol. 1996 Feb;75(2):920-30. doi: 10.1152/jn.1996.75.2.920.

Abstract
  1. Many sensory events contain multimodal information, yet most sensory nuclei are devoted to the analysis of single-modality information. In the deep superior colliculus (DSC), visual, auditory, and somatosensory information converges on individual multimodal neurons. The responses of multimodal neurons are determined by the temporal and spatial correspondence properties of the converging inputs such that stimuli arising from the same event elicit a facilitated multimodal response. 2. N-methyl-D-aspartate (NMDA) receptors may underlie the detection of spatial and temporal coincidence and could be involved in the generation of multimodal facilitatory responses because of the nonlinear properties of NMDA-receptor-mediated events. To assess the role of NMDA receptors in multimodal integration, we made extracellular recordings from single multisensory neurons in the DSC of the cat. 3. The responses to visual, auditory, and somatosensory stimuli alone and to multimodal combinations of stimuli were challenged with iontophoretically applied D-2-amino-5-phosphonovalerate (AP5), an NMDA receptor antagonist. All responses to visual stimuli presented alone (n = 9) were greatly reduced. Somatosensory responses (n = 25) were usually decreased. In contrast, the responses to auditory stimulation were decreased (n = 9), unaffected (n = 3), or enhanced (n = 5). 4. Responses to multimodal stimulus presentations were consistently reduced during iontophoretic application of AP5, irrespective of the modalities that made up the stimulus. The reductions of multimodal responses were significantly greater than the sum of the reductions of responses to single-modality stimuli. 5. The data suggest that for unimodal stimuli, the importance of NMDA receptors in synaptic transmission of sensory responses in DSC may be dependent on the stimulus modality. Furthermore, NMDA receptors are of major importance in the integration of input from different modalities for the generation of multimodal responses.
摘要
  1. 许多感觉事件包含多模态信息,但大多数感觉核专门用于单模态信息的分析。在深层上丘(DSC)中,视觉、听觉和体感信息汇聚于单个多模态神经元。多模态神经元的反应由汇聚输入的时间和空间对应特性决定,使得同一事件产生的刺激引发增强的多模态反应。2. N-甲基-D-天冬氨酸(NMDA)受体可能是检测时空一致性的基础,并且由于NMDA受体介导事件的非线性特性,可能参与多模态促进反应的产生。为了评估NMDA受体在多模态整合中的作用,我们在猫的DSC中对单个多感觉神经元进行了细胞外记录。3. 单独对视觉、听觉和体感刺激以及对刺激的多模态组合的反应,用离子电渗法施加的NMDA受体拮抗剂D-2-氨基-5-磷酸戊酸(AP5)进行了挑战。单独呈现的所有视觉刺激反应(n = 9)都大大降低。体感反应(n = 25)通常减少。相比之下,对听觉刺激的反应减少(n = 9)、未受影响(n = 3)或增强(n = 5)。4. 在离子电渗施加AP5期间,对多模态刺激呈现的反应持续降低,无论构成刺激的模态如何。多模态反应的降低明显大于对单模态刺激反应降低的总和。5. 数据表明,对于单模态刺激,NMDA受体在DSC中感觉反应的突触传递中的重要性可能取决于刺激模态。此外,NMDA受体在整合来自不同模态的输入以产生多模态反应方面至关重要。

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