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Compartment Syndrome Detection Using Vibration-Enabled Ultrasound Shear Wave Elastography - Simulation and Experimental Results

机译:使用振动的超声剪切波弹性造影的隔室综合征检测 - 模拟和实验结果

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Ultrasound shear wave elastography (SWE) has become a clinically accepted tool for tissue characterization, cancer diagnosis, and therapy assessment. However, it is only commercially available on premium ultrasound scanners and high-performance transducers capable of sustaining high-voltage, long-duration acoustic push-pulses. Mechanical vibration is an alternative method for acoustic radiation force (ARF) to induce shear wave propagation inside soft tissue, thus enabling ultrasound SWE on low-cost and portable systems. One potential application is compartment syndrome (CS), with the acute cases commonly seen in traumatic injuries and chronic cases caused by exercise injuries. CS is a condition in which the increased pressure in the muscle compartment inhibits capillary blood flow and subsequently causes muscle ischemia. To avoid permanent muscle injury, CS must be diagnosed and treated rapidly. In this study, a vibration-enabled SWE prototype was implemented on a commercial scanner and evaluated using an in vivo swine CS model as a proof-of-concept for non-invasive CS detection.
机译:超声剪切波弹性显影(SWE)已成为组织特征,癌症诊断和治疗评估的临床接受的工具。然而,它仅在高级超声扫描仪和高性能传感器上商购获得,能够维持高压,长持续时间声学推动脉冲。机械振动是用于声辐射力(ARF)的替代方法,以诱导软组织内的剪切波传播,从而使超声波在低成本和便携式系统上。一个潜在的应用是隔室综合征(CS),具有急性病例,常见于创伤损伤和运动损伤造成的慢性病例。 CS是肌室中增加压力抑制毛细血流的条件,随后导致肌肉缺血。为避免永久性肌肉损伤,必须诊断CS迅速诊断和治疗。在本研究中,在商业扫描仪上实现了启用振动的SWE原型,并使用体内猪CS模型进行评估,作为非侵入性CS检测的概念验证。

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