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首页> 外文期刊>JAOA: The Journal of the American Osteopathic Association >Duration and Magnitude of Myofascial Release in 3-Dimensional Bioengineered Tendons: Effects on Wound Healing
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Duration and Magnitude of Myofascial Release in 3-Dimensional Bioengineered Tendons: Effects on Wound Healing

机译:3维生物工程肌腱肌筋膜释放的持续时间和幅度:对伤口愈合的影响

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Context: Myofascial release (MFR) is one of the most commonly used manual manipulative treatments for patients with soft tissue injury. However, a paucity of basic science evidence has been published to support any particular mechanism that may contribute to reported clinical efficacies of MFR. Objective: To investigate the effects of duration and magnitude of MFR strain on wound healing in bioengineered tendons (BETs) in vitro. Methods: The BETs were cultured on a deformable matrix and then wounded with a steel cutting tip. Using vacuum pressure, they were then strained with a modeled MFR paradigm. The duration of MFR dose consisted of a slow-loading strain that stretched the BETs 6% beyond their resting length, held them for 0, 1, 2, 3, 4, or 5 minutes, and then slowly released them back to baseline. To assess the effects of MFR magnitude, the BETs were stretched to 0%, 3%, 6%, 9%, or 12% beyond resting length, held for 90 seconds, and then released back to baseline. Repeated measures of BET width and the wound's area, shape, and major and minor axes were quantified using microscopy over a 48-hour period. Results: An 11% and 12% reduction in BET width were observed in groups with a 9% (0.961 mm; P.01) and 12% (0.952 mm; P.05) strain, respectively. Reduction of the minor axis of the wound was unrelated to changes in BET width. In the 3% strain group, a statistically significant decrease (?40%; P.05) in wound size was observed at 24 hours compared with 48 hours in the nonstrain, 6% strain, and 9% strain groups. Longer duration of MFR resulted in rapid decreases in wound size, which were observed as early as 3 hours after strain. Conclusion: Wound healing is highly dependent on the duration and magnitude of MFR strain, with a lower magnitude and longer duration leading to the most improvement. The rapid change in wound area observed 3 hours after strain suggests that this phenomenon is likely a result of the modification of the existing matrix protein architecture. These data suggest that MFR's effect on the extracellular matrix can potentially promote wound healing.
机译:背景:肌筋膜松解(MFR)是软组织损伤患者最常用的手法治疗方法之一。但是,已经发表了很少的基础科学证据来支持可能有助于所报告的MFR临床疗效的任何特定机制。目的:研究MFR菌株的持续时间和强度对体外生物工程肌腱(BETs)伤口愈合的影响。方法:将BETs培养在可变形的基质上,然后用钢制切割刀头伤口。然后使用真空压力,用模型化的MFR范例对它们进行应变。 MFR剂量的持续时间由缓慢加载的应变组成,该应变将BETs拉伸超过其静止长度6%,将其保持0、1、2、3、4或5分钟,然后缓慢释放回基线。为了评估MFR幅度的影响,将BET拉伸至静息长度以外的0%,3%,6%,9%或12%,保持90秒,然后释放回基线。使用显微镜在48小时内对BET宽度和伤口的面积,形状以及长轴和短轴的重复测量进行量化。结果:在分别观察到9%(0.961 mm; P <.01)和12%(0.952 mm; P <.05)应变的组中,BET宽度分别减小了11%和12%。伤口短轴的减少与BET宽度的变化无关。在3%应变组中,在24小时观察到伤口大小有统计学意义的降低(?40%; P <.05),而在非应变,6%应变和9%应变组中则为48小时。 MFR持续时间越长,伤口大小会迅速减小,最早在应变后3小时即可观察到。结论:伤口愈合高度依赖于MFR应变的持续时间和强度,较低的强度和较长的持续时间可带来最大的改善。应变后3小时观察到的伤口面积的快速变化表明,这种现象很可能是现有基质蛋白结构修饰的结果。这些数据表明,MFR对细胞外基质的作用可能促进伤口愈合。

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