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物体与空间感知——这是半球的问题吗?

Object and space perception - is it a matter of hemisphere?

作者信息

Schintu Selene, Hadj-Bouziane Fadila, Dal Monte Olga, Knutson Kristine M, Pardini Matteo, Wassermann Eric M, Grafman Jordan, Krueger Frank

机构信息

INSERM, U1028, CNRS, UMR5292, Lyon Neuroscience Research Center, ImpAct Team, Lyon, France; University UCBL Lyon 1, France.

INSERM, U1028, CNRS, UMR5292, Lyon Neuroscience Research Center, ImpAct Team, Lyon, France; University UCBL Lyon 1, France.

出版信息

Cortex. 2014 Aug;57:244-53. doi: 10.1016/j.cortex.2014.04.009. Epub 2014 May 2.

Abstract

In the 1980s, following Newcombe's observations, Ungerleider and Mishkin put forward the functional subdivision of the visual system into a ventral stream dedicated to object perception and a dorsal stream dedicated to space perception. Ten years after this discovery, the perception-action model re-defined the dorsal stream as responsible for non-conscious visual guidance, and most recently a tripartition has been suggested to account for a variety of visuospatial functions. Here, we investigated the neural underpinnings of object and space perception by combining the administration of the Visual Object Space Perception (VOSP) battery with a voxel-based lesion symptom mapping (VLSM) approach in a large sample of patients with penetrating traumatic brain injury (pTBI). First, our results provided new support for the complementary role of both hemispheres in object recognition. The right lateral occipital complex was found to be critical in early perceptual discrimination, whereas more anterior temporal and frontal regions in the left hemisphere were found to be critical in more complex forms of object discrimination and recognition. Second, our findings confirmed that space perception depended on the integrity of the right inferior parietal lobule (IPL) and revealed that a network linking the right IPL with the right premotor cortex was critical for the perception of spatial relationships in both 2D and 3D representations. Taken together, our results supported the functional subdivision of the visual system and shed new light on the specific processes involved along both the dorsal and the ventral streams.

摘要

20世纪80年代,继纽科姆的观察之后,昂格尔莱德和米什金提出将视觉系统功能细分为一个负责物体感知的腹侧流和一个负责空间感知的背侧流。这一发现十年后,感知-行动模型将背侧流重新定义为负责无意识视觉引导,最近有人提出一种三分法来解释各种视觉空间功能。在这里,我们通过在大量穿透性创伤性脑损伤(pTBI)患者样本中,将视觉物体空间感知(VOSP)测试组的应用与基于体素的损伤症状映射(VLSM)方法相结合,研究了物体和空间感知的神经基础。首先,我们的结果为两个半球在物体识别中的互补作用提供了新的支持。发现右侧枕外侧复合体在早期感知辨别中至关重要,而左侧半球更靠前的颞叶和额叶区域在更复杂的物体辨别和识别形式中至关重要。其次,我们的研究结果证实空间感知依赖于右侧顶下小叶(IPL)的完整性,并揭示了一个将右侧IPL与右侧运动前皮质连接起来的网络对于二维和三维表征中的空间关系感知至关重要。综上所述,我们的结果支持了视觉系统的功能细分,并为背侧流和腹侧流中涉及的具体过程提供了新的线索。

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