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Spatial receptive field shift by preceding cross‐modal stimulation in the cat superior colliculus

机译:猫高级小集中的跨模态刺激前空间接受场转移

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摘要

Key points It has been known for some time that sensory information of one type can bias the spatial perception of another modality. However, there is a lack of evidence of this occurring in individual neurons. In the present study, we found that the spatial receptive field of superior colliculus multisensory neurons could be dynamically shifted by a preceding stimulus in a different modality. The extent to which the receptive field shifted was dependent on both temporal and spatial gaps between the preceding and following stimuli, as well as the salience of the preceding stimulus. This result provides a neural mechanism that could underlie the process of cross‐modal spatial calibration. Abstract Psychophysical studies have shown that the different senses can be spatially entrained by each other. This can be observed in certain phenomena, such as ventriloquism, in which a visual stimulus can attract the perceived location of a spatially discordant sound. However, the neural mechanism underlying this cross‐modal spatial recalibration has remained unclear, as has whether it takes place dynamically. We explored these issues in multisensory neurons of the cat superior colliculus (SC), a midbrain structure that involves both cross‐modal and sensorimotor integration. Sequential cross‐modal stimulation showed that the preceding stimulus can shift the receptive field (RF) of the lagging response. This cross‐modal spatial calibration took place in both auditory and visual RFs, although auditory RFs shifted slightly more. By contrast, if a preceding stimulus was from the same modality, it failed to induce a similarly substantial RF shift. The extent of the RF shift was dependent on both temporal and spatial gaps between the preceding and following stimuli, as well as the salience of the preceding stimulus. A narrow time gap and high stimulus salience were able to induce larger RF shifts. In addition, when both visual and auditory stimuli were presented simultaneously, a substantial RF shift toward the location‐fixed stimulus was also induced. These results, taken together, reveal an online cross‐modal process and reflect the details of the organization of SC inter‐sensory spatial calibration.
机译:关键点已知一段时间内的某种时间可以偏离另一种模态的空间感知。然而,在个体神经元中缺乏这种情况。在本研究中,我们发现优质小集体多扰神经元的空间接收领域可以通过不同的模态通过前面的刺激动态移动。接收场移位的程度取决于前后和后续刺激之间的时间和空间间隙,以及前面的刺激的显着性。该结果提供了一种神经机制,可以利于跨模型空间校准的过程。摘要心理物理学研究表明,不同的感官可以彼此空间夹带。这可以在某些现象中观察到,例如伴文室,其中视觉刺激可以吸引空间不和谐的声音的感知位置。然而,这种跨模型空间重新校准的神经机制仍然不清楚,以及它是否动态进行。我们探讨了猫高级小集(SC)的多思科神经元中的这些问题,这是一种涉及跨模型和传感器集成的中脑结构。连续的横向模态刺激表明,前面的刺激可以移动滞后响应的接受场(RF)。这种跨模型空间校准在听觉和视觉射频中进行,尽管听觉射频稍微移位。相比之下,如果先前的刺激来自相同的模态,则未能诱导类似地大幅度的RF移位。 RF移位的程度依赖于前后和后续刺激之间的时间和空间间隙,以及前一刺激的显着性。狭窄的时间差距和高刺激显着性能够诱导更大的RF偏移。另外,当同时呈现视觉和听觉刺激时,还诱导了朝向位置固定刺激的实质性RF移位。这些结果集合在一起,揭示了在线跨模型过程,并反映了SC间空间校准组织的细节。

著录项

  • 来源
    《The Journal of Physiology》 |2018年第20期|共18页
  • 作者单位

    Key Laboratory of Brain Functional Genomics (East China Normal University) Ministry of Education;

    Key Laboratory of Brain Functional Genomics (East China Normal University) Ministry of Education;

    Key Laboratory of Brain Functional Genomics (East China Normal University) Ministry of Education;

    Key Laboratory of Brain Functional Genomics (East China Normal University) Ministry of Education;

    Key Laboratory of Brain Functional Genomics (East China Normal University) Ministry of Education;

    Key Laboratory of Brain Functional Genomics (East China Normal University) Ministry of Education;

    Key Laboratory of Brain Functional Genomics (East China Normal University) Ministry of Education;

    Key Laboratory of Brain Functional Genomics (East China Normal University) Ministry of Education;

    Key Laboratory of Brain Functional Genomics (East China Normal University) Ministry of Education;

    Department of Physical TherapyUniversity of Maryland Eastern ShorePrincess Anne MD USA;

    Key Laboratory of Brain Functional Genomics (East China Normal University) Ministry of Education;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 人体生理学;
  • 关键词

    multisensory integration; cross‐modal spatial calibration; Superior colliculus; receptive field;

    机译:多思科集成;跨模型空间校准;优越的小芯片;接受领域;

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