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Development of an Expansion Wave Generator for Shock Wave Therapy

机译:冲击波治疗用扩展波发生器的研制

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Shock waves have recently attracted attention for their effects on biological soft tissues, such as angiogenesis. When shock waves are reflected at some surfaces of biological tissues, an expansion wave with as short duration as shock wave can be generated because of a change in acoustic impedance. We hypothesized that the expansion wave affects soft tissues, inducing bioeffects. In this study, we developed an expansion wave generator consisting of an ellipsoidal reflector and a polydimethyl siloxane (PDMS) unit. A shock wave (compression wave) was generated by underwater electric discharge and focused by reflection from an ellipsoidal mirror. The shock wave propagated in the water and was transmitted at the water-PDMS boundary surface because they have almost the same acoustic impedance (1.5 × 10~(6) kg/m~(2)·s for water, approximately 1.4 × 10~(6) kg/m~(2)·s for PDMS). Next, the shock wave was reflected at the PDMS-air boundary surface. At this surface, the shock wave was converted to an expansion wave because the acoustic impedance of PDMS is much higher than that of air (4.3 × 10~(2) kg/m~(2)·s). After these reflections, the expansion wave was focused. At the focal point, the peak pressure measured by a hydrophone was - 5.52 ± 1.23 MPa (n = 10) when the discharge voltage was 4 kV. Moreover, the half-width of the expansion wave was 0.55 ± 0.16 μs (n = 10). These values were the same as those of the shock wave. These results indicate that our expansion wave generator is able to produce expansion waves and is useful for studying their bioeffects.
机译:冲击波最近对生物软组织的影响(如血管生成)引起了人们的关注。当冲击波在生物组织的某些表面反射时,由于声阻抗的变化,可以产生与冲击波一样短的持续时间的膨胀波。我们假设膨胀波会影响软组织,并产生生物效应。在这项研究中,我们开发了由椭圆形反射镜和聚二甲基硅氧烷(PDMS)单元组成的扩展波发生器。水下放电产生冲击波(压缩波),并通过椭球镜的反射聚焦。冲击波在水中传播并在水-PDMS界面处传播,因为它们具有几乎相同的声阻抗(对于水,为1.5×10〜(6)kg / m〜(2)·s,大约为1.4×10〜 PDMS为(6)kg / m〜(2)·s。接下来,冲击波在PDMS-空气界面处反射。在此表面上,由于PDMS的声阻抗远高于空气声阻抗(4.3×10〜(2)kg / m〜(2)·s),因此冲击波转换为膨胀波。经过这些反射,膨胀波聚焦了。在焦点处,当放电电压为4kV时,通过水听器测量的峰值压力为-5.52±1.23MPa(n = 10)。此外,膨胀波的半峰宽为0.55±0.16μs(n = 10)。这些值与冲击波的值相同。这些结果表明,我们的膨胀波发生器能够产生膨胀波,对于研究其生物效应很有用。

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