首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Convergence of vestibular and visual self-motion signals in an area of the posterior sylvian fissure.
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Convergence of vestibular and visual self-motion signals in an area of the posterior sylvian fissure.

机译:在后方裂隙区域内前庭和视觉自我运动信号的会聚。

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Convergence of visual motion information (optic flow) and vestibular signals is important for self-motion perception, and such convergence has been observed in the dorsal medial superior temporal (MSTd) and ventral intraparietal areas. In contrast, the parieto-insular vestibular cortex (PIVC), a cortical vestibular area in the sylvian fissure, is not responsive to optic flow. Here, we explore optic flow and vestibular convergence in the visual posterior sylvian area (VPS) of macaque monkeys. This area is located at the posterior end of the sylvian fissure, is strongly interconnected with PIVC, and receives projections from MSTd. We found robust optic flow and vestibular tuning in more than one-third of VPS cells, with all motion directions being represented uniformly. However, visual and vestibular direction preferences for translation were mostly opposite, unlike in area MSTd where roughly equal proportions of neurons have visual/vestibular heading preferences that are congruent or opposite. Overall, optic flow responses in VPS were weaker than those in MSTd, whereas vestibular responses were stronger in VPS than in MSTd. When visual and vestibular stimuli were presented together, VPS responses were dominated by vestibular signals, in contrast to MSTd, where optic flow tuning typically dominates. These findings suggest that VPS is proximal to MSTd in terms of vestibular processing, but distal to MSTd in terms of optic flow processing. Given the preponderance of neurons with opposite visual/vestibular heading preferences in VPS, this area may not play a major role in multisensory heading perception.
机译:视觉运动信息(光流)和前庭信号的融合对于自我运动知觉很重要,并且这种融合已经在背内侧颞上叶(MSTd)和腹顶壁内区域被观察到。相比之下,肩峰鞘前庭皮层(PIVC),即希尔维夫裂隙中的皮质前庭区域,对光流没有反应。在这里,我们探索猕猴的视觉后方的西尔维安地区(VPS)中的光流和前庭会聚。该区域位于希尔夫裂隙的后端,与PIVC紧密相连,并接收来自MSTd的投影。我们在超过三分之一的VPS单元中发现了强大的光流和前庭调谐功能,所有运动方向均被统一表示。但是,视觉和前庭方向的翻译偏好大体上是相反的,与MSTd区域不同,在MSTd区域中,大致相等比例的神经元具有一致的或相反的视觉/前庭朝向。总体而言,VPS的光流反应较MSTd弱,而VPS的前庭反应强于MSTd。当视觉和前庭刺激同时出现时,VPS反应以前庭信号为主,而MSTd则以光流量调节为主。这些发现表明,就前庭加工而言,VPS在MSTd附近,而在光流加工方面在MSTd附近。鉴于在VPS中具有相反的视觉/前庭朝向偏好的神经元占优势,该区域可能不会在多感官朝向感知中起主要作用。

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