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弹道冲击波治疗设备的声场

Acoustic field of a ballistic shock wave therapy device.

作者信息

Cleveland Robin O, Chitnis Parag V, McClure Scott R

机构信息

Department of Aerospace and Mechanical Engineering, Boston University, Boston, MA 02215, USA.

出版信息

Ultrasound Med Biol. 2007 Aug;33(8):1327-35. doi: 10.1016/j.ultrasmedbio.2007.02.014. Epub 2007 Apr 27.

Abstract

Shock wave therapy (SWT) refers to the use of focused shock waves for treatment of musculoskeletal indications including plantar fascitis and dystrophic mineralization of tendons and joint capsules. Measurements were made of a SWT device that uses a ballistic source. The ballistic source consists of a handpiece within which compressed air (1-4 bar) is used to fire a projectile that strikes a metal applicator placed on the skin. The projectile generates stress waves in the applicator that transmit as pressure waves into tissue. The acoustic fields from two applicators were measured: one applicator was 15 mm in diameter and the surface slightly convex and the second was 12 mm in diameter the surface was concave. Measurements were made in a water tank and both applicators generated a similar pressure pulse consisting of a rectangular positive phase (4 micros duration and up to 8 MPa peak pressure) followed by a predominantly negative tail (duration of 20 micros and peak negative pressure of -6 MPa), with many oscillations. The rise times of the waveforms were around 1 micros and were shown to be too long for the pulses to be considered shock waves. Measurements of the field indicated that region of high pressure was restricted to the near-field (20-40 mm) of the source and was consistent with the Rayleigh distance. The measured acoustic field did not display focusing supported by calculations, which demonstrated that the radius of curvature of the concave surface was too large to effect a focusing gain. Other SWT devices use electrohydraulic, electromagnetic and piezoelectric sources that do result in focused shock waves. This difference in the acoustic fields means there is potentially a significant mechanistic difference between a ballistic source and other SWT devices.

摘要

冲击波疗法(SWT)是指使用聚焦冲击波治疗肌肉骨骼疾病,包括足底筋膜炎以及肌腱和关节囊的营养不良性矿化。对一种使用弹道源的SWT设备进行了测量。弹道源由一个手持件组成,在该手持件中,压缩空气(1 - 4巴)用于发射一个射弹,该射弹撞击放置在皮肤上的金属施加器。射弹在施加器中产生应力波,这些应力波作为压力波传输到组织中。对两个施加器的声场进行了测量:一个施加器直径为15毫米,表面略凸,另一个直径为12毫米,表面为凹面。在水箱中进行测量,两个施加器都产生了类似的压力脉冲,该脉冲由一个矩形正相(持续时间4微秒,峰值压力高达8兆帕),随后是一个主要为负的尾部(持续时间20微秒,峰值负压为 - 6兆帕),并有许多振荡。波形的上升时间约为1微秒,结果表明该脉冲持续时间过长,不能被视为冲击波。声场测量表明,高压区域仅限于源的近场(20 - 40毫米),并且与瑞利距离一致。测量的声场未显示出计算所支持的聚焦效果,计算表明凹面的曲率半径太大,无法实现聚焦增益。其他SWT设备使用电液压、电磁和压电源,这些源确实会产生聚焦冲击波。声场的这种差异意味着弹道源与其他SWT设备之间可能存在显著的机制差异。

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