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Pulsed high-intensity focused ultrasound exposure decreases shear wave speed of rabbit's Achilles tendons

机译:脉冲高强度聚焦超声暴露降低了兔跟腱的剪切波速度

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Tightening and contracture of dense fibrous tissues including tendons and ligaments are debilitating conditions frequently encountered in clinical practice. Conservative management for loosening of the tightened tissues usually has limited effectiveness and invasive interventions are inevitable in most protracted conditions. Pulsed high-intensity focused ultrasound (HIFU) holds the promise of being an alternative nonsurgical option for releasing of the tightened tissues. In this work, we evaluated the feasibility of combining pulsed-HIFU and supersonic shear imaging (SSI) as a novel platform for loosening of tightened tissues in a controllable manner. An ex vivo model using fresh porcine tendons was first employed to determine the acoustic parameters set for the delivered HIFU pulses that are optimized for decrease of shear wave speed (SWS) in the tendons measured by SSI. Pulsed-HIFU insonation was then applied to the Achilles tendons of New Zealand white rabbits using the acoustic setting optimized in the ex vivo model. We found that pulsed-HIFU exposure with a pulse repetition frequency of 500 Hz, a pulse cycle of 50, and an exposure duration of 1 min significantly reduced SWS of the Achilles tendons in vivo without rising of the tissue temperature. By contrast, application of conventional continuous-wave HIFU in the ex vivo samples markedly increased tissue SWS and temperature. These findings suggest that pulsed-HIFU may loosen the treated tissue via non-thermal mechanisms. Our results indicate that pulsed-HIFU combing SSI as a promising therapeutic alternative for contracture of dense fibrous tissues.
机译:包括肌腱和韧带在内的致密纤维组织的紧缩和挛缩是临床实践中经常遇到的使人衰弱的病症。保守管理以使紧缩的组织松弛通常效果有限,并且在大多数旷日持久的情况下不可避免地需要进行侵入性干预。脉冲高强度聚焦超声(HIFU)有望成为释放紧绷组织的另一种非手术选择。在这项工作中,我们评估了将脉冲式HIFU和超声切变成像(SSI)结合在一起作为可控方式放松紧绷组织的新型平台的可行性。首先使用离体模型使用新鲜的猪腱来确定为所传递的HIFU脉冲设置的声学参数,这些参数针对通过SSI测量的腱中剪切波速度(SWS)的降低进行了优化。然后使用离体模型中优化的声学设置,将脉冲式HIFU声处理应用于新西兰白兔的跟腱。我们发现脉冲HIFU暴露具有500 Hz的脉冲重复频率,50的脉冲周期和1分钟的暴露时间,可以显着减少体内跟腱的SWS,而不会导致组织温度升高。相反,在离体样品中常规连续波HIFU的应用显着增加了组织的SWS和温度。这些发现表明,脉冲HIFU可通过非热机制使治疗的组织松弛。我们的结果表明,脉冲HIFU梳理SSI是致密纤维组织挛缩的一种有前途的治疗选择。

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