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皮质脊髓束布线模式对上运动神经元型脑瘫患者上肢运动功能的感觉运动功能连接和临床相关性的影响。

Influence of the corticospinal tract wiring pattern on sensorimotor functional connectivity and clinical correlates of upper limb function in unilateral cerebral palsy.

机构信息

KU Leuven Department of Rehabilitation Sciences, Leuven, Belgium.

Neural Control of Movement Lab, Department of Health Sciences and Technology, ETH, Zurich, Switzerland.

出版信息

Sci Rep. 2019 Jun 3;9(1):8230. doi: 10.1038/s41598-019-44728-9.

Abstract

In children with unilateral cerebral palsy (uCP), the corticospinal tract (CST)-wiring patterns may differ (contralateral, ipsilateral or bilateral), partially determining motor deficits. However, the impact of such CST-wiring on functional connectivity remains unknown. Here, we explored resting-state sensorimotor functional connectivity in 26 uCP with periventricular white matter lesions (mean age (standard deviation): 12.87 m (±4.5), CST wiring: 9 contralateral, 9 ipsilateral, 6 bilateral) compared to 60 healthy controls (mean age (standard deviation): 14.54 (±4.8)), and between CST-wiring patterns. Functional connectivity from each M1 to three bilateral sensorimotor regions of interest (primary sensory cortex, dorsal and ventral premotor cortex) and the supplementary motor area was compared between groups (controls vs. uCP; and controls vs. each CST-wiring group). Seed-to-voxel analyses from bilateral M1 were compared between groups. Additionally, relations with upper limb motor deficits were explored. Aberrant sensorimotor functional connectivity seemed to be CST-dependent rather than specific from all the uCP population: in the dominant hemisphere, the contralateral CST group showed increased connectivity between M1 and premotor cortices, whereas the bilateral CST group showed higher connectivity between M1 and somatosensory association areas. These results suggest that functional connectivity of the sensorimotor network is CST-wiring-dependent, although the impact on upper limb function remains unclear.

摘要

在单侧脑瘫(uCP)患儿中,皮质脊髓束(CST)的连接方式可能不同(对侧、同侧或双侧),部分决定运动缺陷。然而,这种 CST 连接方式对功能连接的影响尚不清楚。在这里,我们比较了 26 例伴有脑室周围白质病变的 uCP(平均年龄(标准差):12.87 m(±4.5),CST 连接:9 例对侧,9 例同侧,6 例双侧)与 60 名健康对照(平均年龄(标准差):14.54(±4.8))以及不同 CST 连接方式之间的静息状态感觉运动功能连接。在组间(对照组与 uCP 之间;对照组与各 CST 连接组之间)比较了从每个 M1 到三个双侧感觉运动感兴趣区(初级感觉皮层、背侧和腹侧运动前皮层)和辅助运动区的功能连接。比较了双侧 M1 的种子到体素分析在组间的差异。此外,还探讨了与上肢运动缺陷的关系。异常的感觉运动功能连接似乎依赖于 CST,而不是所有 uCP 人群所特有的:在优势半球中,对侧 CST 组显示 M1 与运动前皮质之间的连接增加,而双侧 CST 组显示 M1 与躯体感觉联合区之间的连接增加。这些结果表明,感觉运动网络的功能连接依赖于 CST 连接方式,但对上肢功能的影响尚不清楚。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc56/6547689/e94897fabac9/41598_2019_44728_Fig1_HTML.jpg

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