首页> 美国卫生研究院文献>European Journal of Translational Myology >3D False Color Computed Tomography for Diagnosis and Follow-Up of Permanent Denervated Human Muscles Submitted to Home-Based Functional Electrical Stimulation
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3D False Color Computed Tomography for Diagnosis and Follow-Up of Permanent Denervated Human Muscles Submitted to Home-Based Functional Electrical Stimulation

机译:3D虚假彩色计算机断层扫描技术用于诊断和随访永久性屈曲的人体肌肉以进行基于家庭的功能性电刺激

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摘要

This report outlines the use of a customized false-color 3D computed tomography (CT) protocol for the imaging of the rectus femoris of spinal cord injury (SCI) patients suffering from complete and permanent denervation, as characterized by complete Conus and Cauda Equina syndrome. This muscle imaging method elicits the progression of the syndrome from initial atrophy to eventual degeneration, as well as the extent to which patients' quadriceps could be recovered during four years of home-based functional electrical stimulation (h-b FES). Patients were pre-selected from several European hospitals and functionally tested by, and enrolled in the EU Commission Shared Cost Project RISE (Contract n. QLG5-CT-2001-02191) at the Department of Physical Medicine, Wilhelminenspital, Vienna, Austria. Denervated muscles were electrically stimulated using a custom-designed stimulator, large surface electrodes, and customized progressive stimulation settings. Spiral CT images and specialized computational tools were used to isolate the rectus femoris muscle and produce 3D and 2D reconstructions of the denervated muscles. The cross sections of the muscles were determined by 2D Color CT, while muscle volumes were reconstructed by 3D Color CT. Shape, volume, and density changes were measured over the entirety of each rectus femoris muscle. Changes in tissue composition within the muscle were visualized by associating different colors to specified Hounsfield unit (HU) values for fat, (yellow: [-200; -10]), loose connective tissue or atrophic muscle, (cyan: [-9; 40]), and normal muscle, fascia and tendons included, (red: [41; 200]). The results from this analysis are presented as the average HU values within the rectus femoris muscle reconstruction, as well as the percentage of these tissues with respect to the total muscle volume. Results from this study demonstrate that h-b FES induces a compliance-dependent recovery of muscle volume and size of muscle fibers, as evidenced by the gain and loss in muscle mass. These results highlight the particular utility of this modality in the quantitative longitudinal assessment of the responses of skeletal muscle to long-term denervation and h-b FES recovery.
机译:本报告概述了使用定制的假彩色3D计算机断层扫描(CT)协议对患有完全性和永久性神经支配的脊髓直肌损伤(SCI)患者的股直肌成像,其特征在于完全Conus和Cauda Equina综合征。这种肌肉成像方法引发了综合征从最初的萎缩发展到最终的退化,以及在四年的家庭功能性电刺激(h-b FES)期间患者四头肌可以恢复的程度。患者已从几家欧洲医院中进行了预选,并由奥地利维也纳维尔明斯皮塔尔市物理医学系的欧盟委员会分担费用项目RISE(合同编号QLG5-CT-2001-02191)进行了功能测试。使用定制设计的刺激器,大型表面电极和定制的渐进式刺激设置对无神经肌肉进行电刺激。螺旋CT图像和专门的计算工具被用于隔离股直肌,并产生失神经肌的3D和2D重建。肌肉的横截面由2D Color CT确定,而肌肉体积由3D Color CT重建。测量整个股直肌的形状,体积和密度变化。通过将不同的颜色与脂肪(黄色:[-200; -10]),疏松的结缔组织或萎缩性肌肉(青色:[-9;]所指定的Hounsfield单位(HU)值相关联,可以看到肌肉内组织组成的变化。 40]),并包括正常的肌肉,筋膜和肌腱(红色:[41; 200])。该分析的结果表示为股直肌重建内的平均HU值,以及这些组织相对于总肌肉体积的百分比。这项研究的结果表明,h-b FES可以诱导顺应性依赖性的肌肉体积和肌肉纤维大小恢复,如肌肉质量的增加和减少所证明。这些结果突出了这种方式在骨骼肌对长期神经支配和h-b FES恢复的反应的定量纵向评估中的特殊用途。

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