首页> 外文OA文献 >Neural correlates of motion processing through echolocation, source hearing, and vision in blind echolocation experts and sighted echolocation novices.
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Neural correlates of motion processing through echolocation, source hearing, and vision in blind echolocation experts and sighted echolocation novices.

机译:通过回声定位,源听觉和盲回声定位专家和有眼回声定位新手的视觉进行运动处理的神经相关性。

摘要

We have shown in previous research (Thaler L, Arnott SR, Goodale MA. PLoS One 6: e20162, 2011) that motion processing through echolocation activates temporal-occipital cortex in blind echolocation experts. Here we investigated how neural substrates of echo-motion are related to neural substrates of auditory source-motion and visual-motion. Three blind echolocation experts and twelve sighted echolocation novices underwent functional MRI scanning while they listened to binaural recordings of moving or stationary echolocation or auditory source sounds located either in left or right space. Sighted participants' brain activity was also measured while they viewed moving or stationary visual stimuli. For each of the three modalities separately (echo, source, vision), we then identified motion-sensitive areas in temporal-occipital cortex and in the planum temporale. We then used a region of interest (ROI) analysis to investigate cross-modal responses, as well as laterality effects. In both sighted novices and blind experts, we found that temporal-occipital source-motion ROIs did not respond to echo-motion, and echo-motion ROIs did not respond to source-motion. This double-dissociation was absent in planum temporale ROIs. Furthermore, temporal-occipital echo-motion ROIs in blind, but not sighted, participants showed evidence for contralateral motion preference. Temporal-occipital source-motion ROIs did not show evidence for contralateral preference in either blind or sighted participants. Our data suggest a functional segregation of processing of auditory source-motion and echo-motion in human temporal-occipital cortex. Furthermore, the data suggest that the echo-motion response in blind experts may represent a reorganization rather than exaggeration of response observed in sighted novices. There is the possibility that this reorganization involves the recruitment of “visual” cortical areas.ud
机译:我们在先前的研究(Thaler L,Arnott SR,Goodale MA。PLoS One 6:e20162,2011)中已经表明,通过回声定位进行运动处理可以激活盲回声定位专家中的颞枕皮质。在这里,我们研究了回声运动的神经底物如何与听觉源运动和视觉运动的神经底物相关。三名盲回声定位专家和十二名视线回声定位新手在听双声道记录的移动或固定回声定位或听觉源声音位于左或右空间时,均接受了功能性MRI扫描。在观察运动或静止的视觉刺激时,也测量了有视力的参与者的大脑活动。然后分别针对这三种方式(回声,来源,视觉)中的每一种,我们确定颞枕皮质和颞平面中的运动敏感区域。然后,我们使用感兴趣区域(ROI)分析来研究交叉模式响应以及横向影响。在有视力的新手和盲人专家中,我们都发现颞枕源运动ROI对回声运动没有反应,而回声运动ROI对源运动也没有反应。颞平面ROI中不存在这种双重解离。此外,在盲人但无视者中,颞枕回声运动ROI显示出对侧运动偏好的证据。盲人或视力参与者的颞枕源运动ROI均未显示出对侧偏爱的证据。我们的数据表明人类颞枕皮质中听觉源运动和回声运动的处理功能隔离。此外,数据表明盲人专家的回声运动反应可能代表了重组,而不是夸大了有眼新手的反应。这种重组有可能涉及“视觉”皮层区域的招募。

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