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人体初级体感皮层 3b、1 和 2 区中足部和腿部代表区的解剖和功能特性:7T fMRI 研究。

Anatomical and functional properties of the foot and leg representation in areas 3b, 1 and 2 of primary somatosensory cortex in humans: A 7T fMRI study.

机构信息

Center for Neuroprosthetics, Swiss Federal Institute of Technology of Lausanne (EPFL), Lausanne, Switzerland; Laboratory of Cognitive Neuroscience, Swiss Federal Institute of Technology of Lausanne (EPFL), Lausanne, Switzerland; Rehabilitation Engineering Laboratory, Swiss Federal Institute of Technology of Zurich, Zurich, Switzerland; Laboratory MySpace, University Hospital of Lausanne (CHUV), Lausanne, Switzerland.

Center for Neuroprosthetics, Swiss Federal Institute of Technology of Lausanne (EPFL), Lausanne, Switzerland; Laboratory of Cognitive Neuroscience, Swiss Federal Institute of Technology of Lausanne (EPFL), Lausanne, Switzerland; Foundation Campus Biotech Geneva, Geneva, Switzerland.

出版信息

Neuroimage. 2017 Oct 1;159:473-487. doi: 10.1016/j.neuroimage.2017.06.021. Epub 2017 Jun 17.

Abstract

Primary somatosensory cortex (S1) processes somatosensory information and is composed of multiple subregions. In particular, tactile information from the skin is encoded in three subregions, namely Brodmann areas (BAs) 3b, 1 and 2, with each area representing a complete map of the contralateral body. Although, much is known about the somatotopic organization of the hand in human S1, less research has been carried out regarding the somatotopic maps of the foot and leg in S1. Moreover, a latero-medial S1 organization along the superior part of the postcentral gyrus has been reported when moving from hip to toes, yet to date there is no study investigating leg/foot maps within the different subregions of S1. Using ultra-high field MRI (7T), we mapped six cortical representations of the lower limb (hip to toes) at the single subject level and performed this analysis separately for BAs 3b, 1 and 2. Analyzing the BOLD responses associated with tactile stimulations of the mapped foot and leg regions on each side, we quantified the extent and the strength of activation to determine somatotopic organization. In addition, we investigated whether each mapped representation also responded to the stimulation of other body parts (i.e. response selectivity) and conducted dissimilarity analysis relating these anatomical and functional properties of S1 to the physical structure of the lower limbs. Our data reveal somatotopy for the leg, but not for the foot in all investigated BAs, with large inter-subject variability. We found only minor differences between the properties of the three investigated BAs, suggesting that S1 maps for the lower limbs differ from those described for the hand. We also describe greater extent/strength of S1 activation for the big toe representation (compared to the other mapped representations) within all BAs, suggesting a possible homology between the first digit of upper and lower extremity in humans, and report different patterns of selectivity in the foot representations (i.e. lower selectivity) compared to the other leg representations (i.e. greater selectivity). These data provide a detailed description of human S1 subregions for the foot and leg, highlight the importance of high-resolution mapping studies and of single subject analysis, and indicate potential differences between the lower and the upper limb.

摘要

初级躯体感觉皮层(S1)处理躯体感觉信息,由多个子区域组成。特别是,皮肤的触觉信息由三个子区域编码,即布罗德曼区域(BA)3b、1 和 2,每个区域代表对侧身体的完整图谱。尽管已知人类 S1 中手的躯体感觉组织,但对 S1 中脚和腿的躯体感觉图谱的研究较少。此外,据报道,从中枢后回的上部到臀部到脚趾,S1 沿侧向-内侧组织,但迄今为止,尚无研究调查 S1 不同子区域内的腿/脚图谱。使用超高场 MRI(7T),我们在单个受试者水平上绘制了下肢(臀部到脚趾)的六个皮质代表,并分别对 BA 3b、1 和 2 进行了分析。分析与映射的脚和腿区域的触觉刺激相关的 BOLD 反应,我们量化了激活的程度和强度以确定躯体感觉组织。此外,我们还研究了每个映射的表示是否也对其他身体部位的刺激有反应(即反应选择性),并进行了不相似性分析,将 S1 的这些解剖学和功能特性与下肢的物理结构相关联。我们的数据显示,在所有研究的 BA 中,腿具有躯体感觉组织,但脚没有,并且具有较大的个体间变异性。我们发现三个研究的 BA 的性质之间只有很小的差异,这表明下肢的 S1 图谱与描述的手部图谱不同。我们还描述了在所有 BA 中,大脚趾代表的 S1 激活的范围/强度较大(与其他映射的代表相比),这表明人类上下肢的第一个数字之间可能存在同源性,并报告了脚代表(即较低的选择性)与其他腿代表(即较高的选择性)之间不同的选择性模式。这些数据提供了人类 S1 子区域的详细描述足部和腿部,强调了高分辨率映射研究和单个受试者分析的重要性,并表明了下肢和上肢之间的潜在差异。

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