首页> 外文期刊>Journal of Biomechanics >Diffusion of water in skeletal muscle tissue is not influenced by compression in a rat model of deep tissue injury.
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Diffusion of water in skeletal muscle tissue is not influenced by compression in a rat model of deep tissue injury.

机译:在深部组织损伤的大鼠模型中,骨骼肌组织中水的扩散不受压缩的影响。

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摘要

Sustained mechanical loading of skeletal muscle may result in the development of a severe type of pressure ulcer, referred to as deep tissue injury. Recently it was shown that the diffusion of large molecules (10-150kDa) is impaired during deformation of tissue-engineered skeletal muscle, suggesting a role for impaired diffusion in the aetiology of deep tissue injury. However, the influence of deformation on diffusion of smaller molecules on its aetiology is less clear. This motivated the present study designed to investigate the influence of deformation of skeletal muscle on the diffusion of water, which can be measured with diffusion tensor magnetic resonance imaging (MRI). It could be predicted that this approach will provide valuable information on the diffusion of small molecules. Additionally the relationship between muscle temperature and diffusion was investigated. During deformation of the tibialis anterior a decrease of the apparent diffusion coefficient (ADC) was observed (7.2+/-3.9%). The use of a finite element model showed that no correlation existed between the maximum shear strain and the decrease of the ADC. The ADC in the uncompressed gastrocnemius muscle decreased with 5.9+/-3.7%. In an additional experiment a clear correlation was obtained between the decrease of the ADC and the relative temperature change of skeletal muscle tissue as measured by MRI. Taken together, it was concluded that (1) the decreased diffusion of water was not a direct effect of tissue deformation and (2) that it is likely that the observed decreased ADC during deformation was a result of a decreased muscle temperature. The present study therefore provides evidence that diffusion of small molecules, particularly oxygen and carbon dioxide, is not impaired during deformation of skeletal muscle tissue.
机译:持续的骨骼肌机械负荷可能导致严重的压力性溃疡的发展,称为深部组织损伤。最近显示,在组织工程化的骨骼肌变形过程中大分子(10-150kDa)的扩散受到损害,这表明扩散的减弱在深部组织损伤的病因中起作用。但是,变形对小分子扩散对其病因的影响尚不清楚。这激发了本研究的动机,旨在研究骨骼肌变形对水扩散的影响,可以用扩散张量磁共振成像(MRI)进行测量。可以预见,这种方法将提供有关小分子扩散的有价值的信息。另外,研究了肌肉温度与扩散之间的关系。在胫骨前部变形期间,观察到表观扩散系数(ADC)下降(7.2 +/- 3.9%)。有限元模型的使用表明最大剪切应变与ADC的减小之间不存在相关性。未压迫腓肠肌中的ADC下降5.9 +/- 3.7%。在另一个实验中,通过MRI测量,ADC的下降与骨骼肌组织的相对温度变化之间存在明显的相关性。两者合计,得出的结论是:(1)水扩散的减少不是组织变形的直接影响;(2)观察到的变形期间ADC的下降很可能是肌肉温度下降的结果。因此,本研究提供了在骨骼肌组织变形过程中小分子,特别是氧气和二氧化碳的扩散不会受到损害的证据。

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