首页> 美国卫生研究院文献>Journal of Therapeutic Ultrasound >Full-wave acoustic and thermal modeling of transcranial ultrasound propagation and investigation of skull-induced aberration correction techniques: a feasibility study
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Full-wave acoustic and thermal modeling of transcranial ultrasound propagation and investigation of skull-induced aberration correction techniques: a feasibility study

机译:经颅超声传播的全波声学和热学模型以及颅骨像差校正技术的研究:可行性研究

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摘要

BackgroundTranscranial focused ultrasound (tcFUS) is an attractive noninvasive modality for neurosurgical interventions. The presence of the skull, however, compromises the efficiency of tcFUS therapy, as its heterogeneous nature and acoustic characteristics induce significant distortion of the acoustic energy deposition, focal shifts, and thermal gain decrease. Phased-array transducers allow for partial compensation of skull-induced aberrations by application of precalculated phase and amplitude corrections.
机译:背景经颅聚焦超声(tcFUS)是一种用于神经外科干预的有吸引力的非侵入性方式。但是,颅骨的存在损害了tcFUS治疗的效率,因为其异质性和声学特性会引起声能沉积的明显变形,焦点偏移和热增益降低。相控阵换能器可通过应用预先计算的相位和幅度校正来部分补偿颅骨诱发的像差。

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