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Acoustic field modeling for physiotherapy ultrasound applicators by using approximated functions of measured non-uniform radiation distributions

机译:通过使用测得的非均匀辐射分布的近似函数,对理疗超声施加器进行声场建模

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摘要

The strongest therapeutic effects in ultrasonic physiotherapy are mainly produced at the first centimeters, i.e. close to the applicator surface and, in general, only in the near-field zone. The acoustic field produced in practice by this type of transducers differs from the classical models because the vibration distribution on the real transducer surfaces is non-uniform. However, neither models using uniform distribution, nor those using typical non-uniform distribution patterns for the source accurately represent the radiation of this kind of transducers. Although this therapy is widely used and many efforts have been made in experimentally studying the patterns of ultrasound radiation produced during physiotherapy applications (IEC-61689, 1998), additional modeling researches still would be needed in order to achieve improved models giving field patterns closer to the measured ultrasonic results. In this paper, acoustic patterns produced from two source radiation functions are proposed and evaluated for field modeling of physiotherapy applicators. Both the functions are approximations to the pressure distribution measured close to the emitting surface and they are based on the modulation of the classical simply-supported function using either sinusoidal or Bessel-type distributions. The simply-supported function is accounted for the radiator-fixing condition and the modulation function simulates the complex vibration distribution of this kind of transducer. The modulator Bessel function is based on reports about Bessel-type vibration distributions found in piezoelectric disk resonators. The use of a selected sinusoidal segment represents another analytical option for obtaining an approximated behavior of the measured data in a real applicator. Both the field models are implemented using the finite element method (FEM) to obtain the numerical solution of wave equation at each point in the radiated space. The solution is reached by considering axisymmetric radiation in attenuation-free media. The results indicate the viability of applying an adequate model for acoustic field calculation by simulating the radiating distribution on the emitting surface as either sinusoidal or Bessel-modulated functions. Models using both the functions describe reasonably real behaviors, but those based on Bessel functions are better correlated with the measurements. The results for three commercial applicators indicate the possibility of representing, with adequate verisimilitude, the acoustic field radiated by physiotherapy ultrasound transducers using linear combinations of Bessel profiles describing the radiation source.
机译:超声物理治疗中最强的治疗效果主要在第一厘米处产生,即靠近施药器表面,通常仅在近场区域产生。实际上,这种类型的换能器产生的声场与经典模型不同,这是因为实际换能器表面上的振动分布是不均匀的。但是,无论是使用均匀分布的模型,还是使用典型的非均匀分布图案作为源的模型,都不能准确地代表这种换能器的辐射。尽管这种疗法已被广泛使用,并且在实验研究物理疗法应用过程中产生的超声波辐射模式方面做出了许多努力(IEC-61689,1998),但仍需要进行额外的建模研究,以实现使电场模式更接近于人体的改进模型。测量的超声波结果。在本文中,提出了由两个源辐射函数产生的声学模式,并对其进行了评估,以用于理疗施药器的现场建模。这两个函数都是在靠近发射表面测得的压力分布的近似值,它们都是基于使用正弦或贝塞尔型分布的经典简单支撑函数的调制。散热器固定条件考虑了简单支持的功能,而调制功能则模拟了这种换能器的复杂振动分布。调制器Bessel功能基于有关压电盘谐振器中Bessel型振动分布的报告。所选择的正弦曲线段的使用代表了另一种分析选择,可用于在实际施加器中获得测量数据的近似行为。两种场模型都使用有限元方法(FEM)来实现,以获取辐射空间中每个点处波动方程的数值解。通过考虑无衰减介质中的轴对称辐射可以找到解决方案。结果表明,通过将发射表面上的辐射分布模拟为正弦或贝塞尔调制函数,可以为声场计算应用适当的模型。使用这两个函数的模型可以描述合理的真实行为,但是基于贝塞尔函数的模型则可以更好地与测量相关。三个商用敷料器的结果表明,可以使用描述辐射源的贝塞尔曲线的线性组合,以足够的逼真度来表示理疗超声换能器辐射的声场。

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