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一名存在运动致形觉缺陷的患者中背侧和腹侧通路对运动致形觉感知的贡献:病例报告

Dorsal and ventral stream contributions to form-from-motion perception in a patient with form-from motion deficit: a case report.

作者信息

Mercier Manuel R, Schwartz Sophie, Spinelli Laurent, Michel Christoph M, Blanke Olaf

机构信息

Laboratory of Cognitive Neuroscience, Brain-Mind Institute, Ecole Polytechnique Fédérale de Lausanne (EPFL), Station 19, 1015, Lausanne, Switzerland.

The Functional Brain Mapping Laboratory, Department of Neuroscience, University of Geneva, Geneva, Switzerland.

出版信息

Brain Struct Funct. 2017 Mar;222(2):1093-1107. doi: 10.1007/s00429-016-1245-6. Epub 2016 Jun 18.

Abstract

The main model of visual processing in primates proposes an anatomo-functional distinction between the dorsal stream, specialized in spatio-temporal information, and the ventral stream, processing essentially form information. However, these two pathways also communicate to share much visual information. These dorso-ventral interactions have been studied using form-from-motion (FfM) stimuli, revealing that FfM perception first activates dorsal regions (e.g., MT+/V5), followed by successive activations of ventral regions (e.g., LOC). However, relatively little is known about the implications of focal brain damage of visual areas on these dorso-ventral interactions. In the present case report, we investigated the dynamics of dorsal and ventral activations related to FfM perception (using topographical ERP analysis and electrical source imaging) in a patient suffering from a deficit in FfM perception due to right extrastriate brain damage in the ventral stream. Despite the patient's FfM impairment, both successful (observed for the highest level of FfM signal) and absent/failed FfM perception evoked the same temporal sequence of three processing states observed previously in healthy subjects. During the first period, brain source localization revealed cortical activations along the dorsal stream, currently associated with preserved elementary motion processing. During the latter two periods, the patterns of activity differed from normal subjects: activations were observed in the ventral stream (as reported for normal subjects), but also in the dorsal pathway, with the strongest and most sustained activity localized in the parieto-occipital regions. On the other hand, absent/failed FfM perception was characterized by weaker brain activity, restricted to the more lateral regions. This study shows that in the present case report, successful FfM perception, while following the same temporal sequence of processing steps as in normal subjects, evoked different patterns of brain activity. By revealing a brain circuit involving the most rostral part of the dorsal pathway, this study provides further support for neuro-imaging studies and brain lesion investigations that have suggested the existence of different brain circuits associated with different profiles of interaction between the dorsal and the ventral streams.

摘要

灵长类动物视觉处理的主要模型提出,在专门处理时空信息的背侧流和主要处理形状信息的腹侧流之间存在解剖学-功能上的区分。然而,这两条通路也会进行交流以共享大量视觉信息。人们利用运动致形(FfM)刺激对这些背腹交互作用进行了研究,结果显示,FfM感知首先激活背侧区域(如MT+/V5),随后腹侧区域(如LOC)相继被激活。然而,对于视觉区域的局灶性脑损伤对这些背腹交互作用的影响,人们了解得相对较少。在本病例报告中,我们对一名因腹侧流右侧纹外脑损伤而存在FfM感知缺陷的患者,研究了与FfM感知相关的背侧和腹侧激活的动态变化(使用地形学ERP分析和电源成像)。尽管该患者存在FfM损伤,但成功的FfM感知(在最高水平的FfM信号时观察到)和缺失/失败的FfM感知都引发了与健康受试者先前观察到的相同的三个处理状态的时间序列。在第一个阶段,脑源定位显示沿背侧流有皮层激活,目前认为这与保留的基本运动处理有关。在随后的两个阶段,活动模式与正常受试者不同:腹侧流出现了激活(如正常受试者的报告),但背侧通路也有激活,最强且最持续的活动位于顶枕区域。另一方面,缺失/失败的FfM感知的特征是脑活动较弱,局限于更外侧的区域。本研究表明,在本病例报告中,成功的FfM感知虽然遵循与正常受试者相同的处理步骤时间序列,但引发了不同的脑活动模式。通过揭示一条涉及背侧通路最前端部分的脑回路,本研究为神经影像学研究和脑损伤调查提供了进一步支持,这些研究表明存在与背侧和腹侧流之间不同交互模式相关的不同脑回路。

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