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Ultrasonically marked instruments for ultrasound-guided interventions

机译:超声波引导干预的超声标记仪器

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In order to enhance needle and catheter visibility under ultrasound and enable tool tracking, it has been proposed to embed ultrasound receivers near the tip of interventional tools. Using these sensors to receive and analyze signals coming from the imaging probe as its beams sweep the field of view, the position of the sensor can be estimated with <;0.5mm accuracy even when the tool tip is invisible in the pulse-echo image. One crucial design parameter for these ultrasonically marked instruments is the sensitivity and directivity pattern of the sensor: the ideal sensor has to maintain adequate SNR at a wide range of depths and insonification angles depending on the clinical intervention. This paper presents the acoustical characterization of small (~1mm) high frequency (>10MHz) PZT sensors in different form factors for acoustical marking of needles and catheters. PZT-equipped tools including guidewires, steerable sheaths, and biopsy needles are also presented and the tracking capability is demonstrated ex vivo. Maximum SNRs of >50dB were found with all sensors in the water tank at an imaging depth of 8cm and insonification MI of 1.1. Complex directivity patterns were observed varying with sensor size and shape, likely owing to mode conversion inside the sensor and excitation of the materials' transverse piezoelectric modes. Small disks (≤1mm diameter) were found to be most appropriate with flattest directivity. Ex vivo experiments demonstrated reliable tracking of an ultrasound-equipped needle at depths >10cm. In conclusion, it is feasible to manufacture PZT-equipped instruments exhibiting good tracking accuracy and robustness.
机译:为了在超声波和能够使刀具跟踪下提高针和导管可视性,已经提出了将超声接收器嵌入介入工具尖端附近。使用这些传感器接收和分析来自成像探头的信号,因为它的光束扫描视场,即使在脉冲回波图像中不可见,也可以用<; 0.5mm精度估计传感器的位置。这些超声标记仪器的一个关键设计参数是传感器的灵敏度和方向性模式:理想的传感器必须根据临床干预在广泛的深度和疯狂的角度下保持足够的SNR。本文介绍了小(〜1mm)高频(> 10MHz)PZT传感器的声学表征,用于针对针和导管的声学标记的不同形式因子。还提出了包括导丝,可操纵护套和活检针的PZT的工具,并且跟踪能力被证明是如exvivo。最大SNR> 50dB的储水箱中的所有传感器都在成像深度为8cm和1.1的Insonificy Mi。观察到复杂的方向性图案随着传感器尺寸和形状而变化,可能是由于在传感器内的模式转换和材料的横向压电模式的激发。发现小盘(≤1mm)被发现最适合最大的方向性。前体内实验证明,在深度> 10cm处,可靠地跟踪超声波的针头。总之,制造配备PZT的仪器是可行的,该仪器具有良好的跟踪精度和鲁棒性。

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