{"title":"从运动到情感:视觉通路和潜在的相互联系。","authors":"Aina Puce","doi":"10.1162/jocn_a_02141","DOIUrl":null,"url":null,"abstract":"<p><p>The two visual pathway description of [Ungerleider, L. G., & Mishkin, M. Two cortical visual systems. In D. J. Dingle, M. A. Goodale, & R. J. W. Mansfield (Eds.), Analysis of visual behavior (pp. 549-586). Cambridge, MA: MIT, 1982] changed the course of late 20th century systems and cognitive neuroscience. Here, I try to reexamine our laboratory's work through the lens of the [Pitcher, D., & Ungerleider, L. G. Evidence for a third visual pathway specialized for social perception. Trends in Cognitive Sciences, 25, 100-110, 2021] new third visual pathway. I also briefly review the literature related to brain responses to static and dynamic visual displays, visual stimulation involving multiple individuals, and compare existing models of social information processing for the face and body. In this context, I examine how the posterior STS might generate unique social information relative to other brain regions that also respond to social stimuli. I discuss some of the existing challenges we face with assessing how information flow progresses between structures in the proposed functional pathways and how some stimulus types and experimental designs may have complicated our data interpretation and model generation. I also note a series of outstanding questions for the field. Finally, I examine the idea of a potential expansion of the third visual pathway, to include aspects of previously proposed \"lateral\" visual pathways. Doing this would yield a more general entity for processing motion/action (i.e., \"[inter]action\") that deals with interactions between people, as well as people and objects. In this framework, a brief discussion of potential hemispheric biases for function, and different forms of neuropsychological impairments created by focal lesions in the posterior brain is highlighted to help situate various brain regions into an expanded [inter]action pathway.</p>","PeriodicalId":51081,"journal":{"name":"Journal of Cognitive Neuroscience","volume":null,"pages":null},"PeriodicalIF":3.1000,"publicationDate":"2024-03-22","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://www.ncbi.nlm.nih.gov/pmc/articles/PMC11416577/pdf/","citationCount":"0","resultStr":"{\"title\":\"From Motion to Emotion: Visual Pathways and Potential Interconnections.\",\"authors\":\"Aina Puce\",\"doi\":\"10.1162/jocn_a_02141\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>The two visual pathway description of [Ungerleider, L. G., & Mishkin, M. Two cortical visual systems. In D. J. Dingle, M. A. Goodale, & R. J. W. Mansfield (Eds.), Analysis of visual behavior (pp. 549-586). Cambridge, MA: MIT, 1982] changed the course of late 20th century systems and cognitive neuroscience. Here, I try to reexamine our laboratory's work through the lens of the [Pitcher, D., & Ungerleider, L. G. Evidence for a third visual pathway specialized for social perception. Trends in Cognitive Sciences, 25, 100-110, 2021] new third visual pathway. I also briefly review the literature related to brain responses to static and dynamic visual displays, visual stimulation involving multiple individuals, and compare existing models of social information processing for the face and body. In this context, I examine how the posterior STS might generate unique social information relative to other brain regions that also respond to social stimuli. I discuss some of the existing challenges we face with assessing how information flow progresses between structures in the proposed functional pathways and how some stimulus types and experimental designs may have complicated our data interpretation and model generation. I also note a series of outstanding questions for the field. Finally, I examine the idea of a potential expansion of the third visual pathway, to include aspects of previously proposed \\\"lateral\\\" visual pathways. Doing this would yield a more general entity for processing motion/action (i.e., \\\"[inter]action\\\") that deals with interactions between people, as well as people and objects. 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引用次数: 0
摘要
Ungerleider, L. G., & Mishkin, M. Two cortical visual systems.In D. J. Dingle, M. A. Goodale, & R. J. W. Mansfield (Eds.), Analysis of visual behavior (pp. 549-586).Cambridge, MA:麻省理工学院,1982 年]改变了 20 世纪晚期系统和认知神经科学的进程。Pitcher, D., & Ungerleider, L. G. Evidence for a third visual pathway specialized for social perception.认知科学趋势,25,100-110,2021]新的第三视觉通路。我还简要回顾了与大脑对静态和动态视觉显示、涉及多个个体的视觉刺激的反应有关的文献,并比较了现有的面部和身体社交信息处理模型。在此背景下,我将研究相对于其他同样对社会刺激做出反应的大脑区域,后部STS如何产生独特的社会信息。我将讨论我们在评估信息流如何在所提出的功能通路中的结构之间流动时所面临的一些现有挑战,以及一些刺激类型和实验设计是如何使我们的数据解释和模型生成复杂化的。我还指出了该领域一系列悬而未决的问题。最后,我研究了第三条视觉通路的潜在扩展,以包括之前提出的 "侧向 "视觉通路的各个方面。这样做将产生一个处理运动/动作(即"[inter]action")的更普遍的实体,处理人与人之间以及人与物体之间的互动。在这一框架下,我们将简要讨论大脑后部病灶造成的潜在半球功能偏差和不同形式的神经心理障碍,以帮助将不同的大脑区域纳入扩展的"[间]动作 "通路。
From Motion to Emotion: Visual Pathways and Potential Interconnections.
The two visual pathway description of [Ungerleider, L. G., & Mishkin, M. Two cortical visual systems. In D. J. Dingle, M. A. Goodale, & R. J. W. Mansfield (Eds.), Analysis of visual behavior (pp. 549-586). Cambridge, MA: MIT, 1982] changed the course of late 20th century systems and cognitive neuroscience. Here, I try to reexamine our laboratory's work through the lens of the [Pitcher, D., & Ungerleider, L. G. Evidence for a third visual pathway specialized for social perception. Trends in Cognitive Sciences, 25, 100-110, 2021] new third visual pathway. I also briefly review the literature related to brain responses to static and dynamic visual displays, visual stimulation involving multiple individuals, and compare existing models of social information processing for the face and body. In this context, I examine how the posterior STS might generate unique social information relative to other brain regions that also respond to social stimuli. I discuss some of the existing challenges we face with assessing how information flow progresses between structures in the proposed functional pathways and how some stimulus types and experimental designs may have complicated our data interpretation and model generation. I also note a series of outstanding questions for the field. Finally, I examine the idea of a potential expansion of the third visual pathway, to include aspects of previously proposed "lateral" visual pathways. Doing this would yield a more general entity for processing motion/action (i.e., "[inter]action") that deals with interactions between people, as well as people and objects. In this framework, a brief discussion of potential hemispheric biases for function, and different forms of neuropsychological impairments created by focal lesions in the posterior brain is highlighted to help situate various brain regions into an expanded [inter]action pathway.