首页> 美国卫生研究院文献>The Journal of Neuroscience >White Matter Organization in Cervical Spinal Cord Relates Differently to Age and Control of Grip Force in Healthy Subjects
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White Matter Organization in Cervical Spinal Cord Relates Differently to Age and Control of Grip Force in Healthy Subjects

机译:颈脊髓中的白色物质组织与健康受试者的年龄和握力控制不同

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摘要

Diffusion tensor imaging (DTI) can be used to elucidate relations between CNS structure and function. We hypothesized that the degree of spinal white matter organization relates to the accuracy of control of grip force. Healthy subjects of different age were studied using DTI and visuomotor tracking of precision grip force. The latter is a prime component of manual dexterity. A regional analysis of spinal white matter [fractional anisotropy (FA)] across multiple cervical levels (C2–C3, C4–C5, and C6–C7) and in different regions of interest (left and right lateral or medial spinal cord) was performed. FA was highest at the C2–C3 level, higher on the right than the left side, and higher in the lateral than in the medial spinal cord (p < 0.001). FA of whole cervical spinal cord (C2–C7) was lower in subjects with high tracking error (r = −0.56, p = 0.004) and decreased with age (r = −0.63, p = 0.001). A multiple regression analysis revealed an independent contribution of each predictor (semipartial correlations: age, r = −0.55, p < 0.001; tracking error, r = −0.49, p = 0.003). The closest relation between FA and tracking error was found at the C6–C7 level in the lateral spinal cord, in which the corticospinal tract innervates spinal circuitry controlling hand and digit muscles. FA of the medial spinal cord correlated consistently with age across all cervical levels, whereas FA of the lateral spinal cord did not. The results suggest (1) a functionally relevant specialization of lateral spinal cord white matter and (2) an increased sensitivity to age-related decline in medial spinal cord white matter in healthy subjects.
机译:扩散张量成像(DTI)可用于阐明CNS结构与功能之间的关系。我们假设脊髓白质组织的程度与抓握力的控制准确性有关。使用DTI和精确抓握力的视觉运动跟踪研究了不同年龄的健康受试者。后者是手巧的主要组成部分。进行了跨多个子宫颈水平(C2-C3,C4-C5和C6-C7)以及感兴趣的不同区域(左右外侧或内侧脊髓)的脊髓白质[分数各向异性(FA)]的区域分析。 FA在C2-C3水平上最高,在右侧高于左侧,在外侧高于内侧脊髓(p <0.001)。在高跟踪误差的受试者中,整个颈脊髓的FA(C2-C7)较低(r = -0.56,p = 0.004),并随着年龄的增长而降低(r = -0.63,p = 0.001)。多元回归分析揭示了每个预测变量的独立贡献(半相关性:年龄,r = -0.55,p <0.001;跟踪误差,r = -0.49,p = 0.003)。 FA和跟踪误差之间的最密切关系是在外侧脊髓的C6–C7水平上发现的,其中皮质脊髓束神经支配控制手和手指肌肉的脊髓回路。在所有子宫颈水平上,内侧脊髓的FA与年龄均相关,而外侧脊髓的FA与年龄无关。结果表明(1)功能相关的外侧脊髓白质的专业化(2)健康受试者对年龄相关的内侧脊髓白质下降的敏感性增加。

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