IEEE Trans Ultrason Ferroelectr Freq Control. 2023 Feb;70(2):138-146. doi: 10.1109/TUFFC.2022.3221049. Epub 2023 Feb 6.
The radiation force balance (RFB) is a widely used method for measuring acoustic power output of ultrasonic transducers. The reflecting cone target is attractive due to its simplicity and long-term stability, at a reasonable cost. However, accurate measurements using this method depend on the alignment between the ultrasound beam and cone axes, especially for highly focused beams utilized in therapeutic applications. With the advent of dual-mode ultrasound arrays (DMUAs) for imaging and therapy, image-guided measurements of acoustic output using the RFB method can be used to improve measurement accuracy. In this article, we describe an image-guided RFB measurement of focused DMUA beams using a widely used commercial instrument. DMUA imaging is used to optimize the alignment between the acoustic beam and reflecting cone axes. In addition to image-guided alignment, DMUA echo data is used to track the displacement of the cone, which provides an auxiliary measurement of acoustic power. Experimental results using a DMUA prototype with [Formula: see text] shows that 1-2 mm of misalignment can result in 5%-14% error in the measured acoustic power. In addition to the use of B-mode image guidance for improving measurement accuracy, we present preliminary results demonstrating the benefit of displacement tracking using real-time DMUA imaging during the application of (sub)therapeutic focused beams. Displacement tracking provides a direct measurement of the radiation force with high sensitivity and follows the expected dependence on changes in amplitude and duty cycle (DC) of the focused ultrasound (FUS) beam. This could lead to simpler, more reliable methods for measuring acoustic power based on the radiation force principle. Combined with appropriate computational modeling, the direct measurement of acoustic radiation force could lead to reliable dosimetry in situ in emerging applications such as transcranial FUS (tFUS) therapies.
辐射力平衡(RFB)是一种广泛用于测量超声换能器声功率输出的方法。反射圆锥靶因其简单性和长期稳定性,以及合理的成本而具有吸引力。然而,这种方法的准确测量取决于超声束与圆锥轴之间的对准,尤其是在治疗应用中使用的高聚焦光束。随着用于成像和治疗的双模超声阵列(DMUA)的出现,可以使用 RFB 方法对声输出进行图像引导测量,以提高测量精度。在本文中,我们描述了一种使用广泛使用的商业仪器对聚焦 DMUA 光束进行图像引导 RFB 测量的方法。DMUA 成像用于优化声束和反射圆锥轴之间的对准。除了图像引导对准外,DMUA 回波数据还用于跟踪圆锥的位移,这提供了声功率的辅助测量。使用具有[公式:见文本]的 DMUA 原型的实验结果表明,1-2 毫米的失准会导致测量声功率的误差为 5%-14%。除了使用 B 模式图像引导来提高测量精度外,我们还展示了初步结果,证明了在应用(亚)治疗聚焦光束时使用实时 DMUA 成像进行位移跟踪的益处。位移跟踪提供了辐射力的直接测量,具有高灵敏度,并遵循幅度和占空比(DC)变化的预期依赖性聚焦超声(FUS)束。这可能导致基于辐射力原理的更简单、更可靠的声功率测量方法。结合适当的计算模型,直接测量声辐射力可能会导致在新兴应用中(如经颅 FUS(tFUS)治疗)进行原位可靠剂量测定。