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首页> 外文期刊>Journal of applied physiology >Role of ischemia and deformation in the onset of compression-induced deep tissue injury: MRI-based studies in a rat model.
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Role of ischemia and deformation in the onset of compression-induced deep tissue injury: MRI-based studies in a rat model.

机译:缺血和变形在压迫性深部组织损伤发作中的作用:在大鼠模型中基于MRI的研究。

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摘要

A rat model was used to distinguish between the different factors that contribute to muscle tissue damage related to deep pressure ulcers that develop after compressive loading. The separate and combined effects of ischemia and deformation were studied. Loading was applied to the hindlimb of rats for 2 h. Muscle tissue was examined using MR imaging (MRI) and histology. An MR-compatible loading device allowed simultaneous loading and measurement of tissue status. Two separate loading protocols incorporated uniaxial loading, resulting in tissue compression and ischemic loading. Uniaxial loading was applied to the tibialis anterior by means of an indenter, and ischemic loading was accomplished with an inflatable tourniquet. Deformation of the muscle tissue during uniaxial loading was measured using MR tagging. Compression of the tissues for 2 h led to increased T2 values, which were correlated to necrotic regions in the tibialis anterior. Perfusion measurements, by means of contrast-enhanced MRI, indicated a large ischemic region during indentation. Pure ischemic loading for 2 h led to reversible tissue changes. From the MR-tagging experiments, local strain fields were calculated. A 4.5-mm deformation, corresponding to a surface pressure of 150 kPa, resulted in maximum shear strain up to 1.0. There was a good correlation between the location of damage and the location of high shear strain. It was concluded that the large deformations, in conjunction with ischemia, provided the main trigger for irreversible muscle damage.
机译:使用大鼠模型来区分导致与压缩负荷后发展的深部压疮有关的肌肉组织损伤的不同因素。研究了局部缺血和变形的联合作用。将负荷施加于大鼠的后肢2小时。使用MR成像(MRI)和组织学检查肌肉组织。兼容MR的加载设备允许同时加载和测量组织状态。两种单独的加载方案结合了单轴加载,从而导致组织受压和局部缺血加载。通过压头将单轴负荷施加到胫骨前部,并通过可充气止血带完成缺血负荷。使用MR标签测量单轴加载过程中肌肉组织的变形。压缩组织2 h导致T2值增加,这与胫骨前部的坏死区域相关。通过对比增强MRI进行的灌注测量表明,压痕过程中存在较大的局部缺血区域。纯缺血负荷2 h导致组织可逆变化。从MR标签实验中,计算出局部应变场。 4.5毫米的变形(对应于150 kPa的表面压力)导致最大剪切应变高达1.0。损伤的位置与高剪切应变的位置之间具有良好的相关性。结论是,大的变形与局部缺血一起是不可逆性肌肉损伤的主要诱因。

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