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应用功能磁共振成像评估人类上肢触觉刺激时颈脊髓活动的空间分布。

Assessing the spatial distribution of cervical spinal cord activity during tactile stimulation of the upper extremity in humans with functional magnetic resonance imaging.

机构信息

Systems Neuroscience and Pain Lab, Department of Anesthesiology, Perioperative and Pain Medicine, Stanford University, Palo Alto, CA, USA.

Department of Radiology, Northwestern University Feinberg School of Medicine, Chicago, IL, USA.

出版信息

Neuroimage. 2020 Aug 15;217:116905. doi: 10.1016/j.neuroimage.2020.116905. Epub 2020 May 6.

Abstract

Dermatomal maps are a mainstay of clinical practice and provide information on the spatial distribution of the cutaneous innervation of spinal nerves. Dermatomal deficits can help isolate the level of spinal nerve root involvement in spinal conditions and guide clinicians in diagnosis and treatment. Dermatomal maps, however, have limitations, and the spatial distribution of spinal cord sensory activity in humans remains to be quantitatively assessed. Here we used spinal cord functional MRI to map and quantitatively compare the spatial distribution of sensory spinal cord activity during tactile stimulation of the left and right lateral shoulders (i.e. C5 dermatome) and dorsal third digits of the hands (i.e., C7 dermatome) in healthy humans (n ​= ​24, age ​= ​36.8 ​± ​11.8 years). Based on the central sites for processing of innocuous tactile sensory information, we hypothesized that the activity would be localized more to the ipsilateral dorsal spinal cord with the lateral shoulder stimulation activity being localized more superiorly than the dorsal third digit. The findings demonstrate lateralization of the activity with the left- and right-sided stimuli having more activation in the ipsilateral hemicord. Contradictory to our hypotheses, the activity for both stimulation sites was spread across the dorsal and ventral hemicords and did not demonstrate a clear superior-inferior localization. Instead, the activity for both stimuli had a broader than expected distribution, extending across the C5, C6, and C7 spinal cord segments. We highlight the complexity of the human spinal cord neuroanatomy and several sources of variability that may explain the observed patterns of activity. While the findings were not completely consistent with our a priori hypotheses, this study provides a foundation for continued work and is an important step towards developing normative quantitative spinal cord measures of sensory function, which may become useful objective MRI-based biomarkers of neurological injury and improve the management of spinal disorders.

摘要

皮节图是临床实践的主要依据,提供了脊神经皮肤神经支配的空间分布信息。皮节缺陷有助于确定脊神经根受累的脊柱疾病水平,并指导临床医生进行诊断和治疗。然而,皮节图存在局限性,人类脊髓感觉活动的空间分布仍有待定量评估。在这里,我们使用脊髓功能磁共振成像(fMRI)来绘制和定量比较健康人在左侧和右侧肩部(即 C5 皮节)和手部背侧第三指(即 C7 皮节)的触觉刺激过程中脊髓感觉活动的空间分布(n=24,年龄 36.8±11.8 岁)。基于处理无害触觉感觉信息的中枢部位,我们假设活动将更集中在同侧背侧脊髓,而肩部外侧刺激的活动将比背侧第三指更向上集中。研究结果表明,活动具有侧化性,左侧和右侧刺激在同侧半脊髓中具有更多的激活。与我们的假设相反,两种刺激部位的活动都分布在背侧和腹侧半脊髓中,没有明显的上下定位。相反,两种刺激的活动分布范围比预期的更广泛,延伸到 C5、C6 和 C7 脊髓节段。我们强调了人类脊髓神经解剖结构的复杂性和可能解释观察到的活动模式的几个来源的变异性。虽然研究结果与我们的先验假设不完全一致,但本研究为进一步的工作提供了基础,是朝着开发用于感觉功能的定量脊髓测量的规范性方法迈出的重要一步,这可能成为有用的基于 MRI 的神经损伤客观生物标志物,并改善脊柱疾病的管理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dc24/7386934/183b13f2565a/nihms-1608981-f0001.jpg

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