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Non-linear Wave Propagation and Safety Standards for Diagnostic Ultrasound Devices

机译:诊断超声设备的非线性波传播和安全标准

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Safety standards for clinical diagnostic ultrasonic devices were developed for use in relatively low-frequency systems (1–10 MHz), under the assumption that non-linear effects would be negligible. This article reviews ways in which neglecting non-linear wave propagation affects the measurements and calculations required to comply with safety standards and U.S. Food and Drug Administration guidance that recognizes these standards. An attempt is made to evaluate whether ignoring non-linear effects could result in significant error in the exposure quantities defined in these standards at either low or high frequencies, based on published literature. This article maintains that although non-linear effects have been considered in some parts of safety standards related to hydrophone requirements, the coverage is inadequate, especially for modern equipment with high working frequencies. A new approach is required to assess the magnitude of thermal heating for recently developed high-frequency systems to incorporate non-linear effects. In contrast, the current approach for evaluating the risk of cavitation can be used after appropriate modifications.
机译:开发了临床诊断超声装置的安全标准,用于相对低频的系统(1-10 MHz),假设非线性效应可以忽略不计。本文审查了忽视非线性波传播的方式影响符合安全标准和美国食品和药物管理指导所需的测量和计算,以确认这些标准。尝试评估忽略非线性效应是否可能导致在这些标准中定义的曝光量的基于出版的文献中的低频或高频。本文认为,尽管在与水电器要求相关的安全标准的某些部位考虑了非线性效果,但覆盖率不足,特别是对于具有高工作频率的现代设备。需要一种新的方法来评估最近开发的高频系统的热加热的大小,以包含非线性效果。相反,可以在适当的修改后使用目前用于评估空化风险的方法。

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