Integration of visual and whisker signals in rat superior colliculus

被引:0
|
作者
Saba Gharaei
Ehsan Arabzadeh
Samuel G. Solomon
机构
[1] School of Medical Sciences,Discipline of Physiology
[2] The University of Sydney,Eccles Institute of Neuroscience
[3] John Curtin School of Medical Research,Institute of Behavioural Neuroscience
[4] The Australian National University,undefined
[5] Australian Research Council Centre of Excellence for Integrative Brain Function,undefined
[6] The Australian National University Node,undefined
[7] University College London,undefined
来源
Scientific Reports | / 8卷
关键词
Whisker Stimuli; Suppressive Interactions; Whisker Representation; Multisensory Integration; Whisker Response;
D O I
暂无
中图分类号
学科分类号
摘要
Multisensory integration is a process by which signals from different sensory modalities are combined to facilitate detection and localization of external events. One substrate for multisensory integration is the midbrain superior colliculus (SC) which plays an important role in orienting behavior. In rodent SC, visual and somatosensory (whisker) representations are in approximate registration, but whether and how these signals interact is unclear. We measured spiking activity in SC of anesthetized hooded rats, during presentation of visual- and whisker stimuli that were tested simultaneously or in isolation. Visual responses were found in all layers, but were primarily located in superficial layers. Whisker responsive sites were primarily found in intermediate layers. In single- and multi-unit recording sites, spiking activity was usually only sensitive to one modality, when stimuli were presented in isolation. By contrast, we observed robust and primarily suppressive interactions when stimuli were presented simultaneously to both modalities. We conclude that while visual and whisker representations in SC of rat are partially overlapping, there is limited excitatory convergence onto individual sites. Multimodal integration may instead rely on suppressive interactions between modalities.
引用
收藏
相关论文
共 50 条
  • [21] Depth-dependence of visual signals in the human superior colliculus at 9.4 T
    Loureiro, Joana R.
    Hagberg, Gisela E.
    Ethofer, Thomas
    Erb, Michael
    Bause, Jonas
    Ehses, Philipp
    Scheffler, Klaus
    Himmelbach, Marc
    HUMAN BRAIN MAPPING, 2017, 38 (01) : 574 - 587
  • [22] CELL-TYPES IN VISUAL LAYER OF DEVELOPING RAT SUPERIOR COLLICULUS
    LABRIOLA, AR
    ANATOMICAL RECORD, 1976, 184 (03): : 455 - 455
  • [23] THE PROJECTION FROM DIFFERENT VISUAL CORTICAL AREAS TO THE RAT SUPERIOR COLLICULUS
    HARVEY, AR
    WORTHINGTON, DR
    JOURNAL OF COMPARATIVE NEUROLOGY, 1990, 298 (03) : 281 - 292
  • [24] Stimuli Localization: An Integration Methodology Inspired by the Superior Colliculus for Audio and Visual Attention
    Ravulakollu, Kiran Kumar
    Liu, Jindong
    Burn, Kevin
    PROCEEDINGS OF THE INTERNATIONAL NEURAL NETWORK SOCIETY WINTER CONFERENCE (INNS-WC2012), 2012, 13 : 31 - 42
  • [26] The influence of visual and auditory receptive field organization on multisensory integration in the superior colliculus
    Kadunce, DC
    Vaughan, JW
    Wallace, MT
    Stein, BE
    EXPERIMENTAL BRAIN RESEARCH, 2001, 139 (03) : 303 - 310
  • [27] The influence of visual and auditory receptive field organization on multisensory integration in the superior colliculus
    Daniel C. Kadunce
    William J. Vaughan
    Mark T. Wallace
    Barry E. Stein
    Experimental Brain Research, 2001, 139 : 303 - 310
  • [28] The influence of visual and auditory receptive field organization on multisensory integration in the superior colliculus
    Daniel C. Kadunce
    J. William Vaughan
    Mark T. Wallace
    Barry E. Stein
    Experimental Brain Research, 2002, 143 (3) : 394 - 394
  • [29] VISUAL, AUDITORY, AND SOMATOSENSORY CONVERGENCE ON CELLS IN SUPERIOR COLLICULUS RESULTS IN MULTISENSORY INTEGRATION
    MEREDITH, MA
    STEIN, BE
    JOURNAL OF NEUROPHYSIOLOGY, 1986, 56 (03) : 640 - 662
  • [30] Silicon Superior Colliculus for the Integration of Visual and Auditory Information with Adaptive Axon Connection
    Huo, Juan
    Reekie, Martin
    Murray, Alan
    ISCAS: 2009 IEEE INTERNATIONAL SYMPOSIUM ON CIRCUITS AND SYSTEMS, VOLS 1-5, 2009, : 2157 - 2160