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Ultrasound standoff optimization for maximum image quality of a robot-assisted flat-panel ultrasound device

机译:用于机器人辅助平板超声装置的最大图像质量的超声波待机优化

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Ultrasonography is a widespread intraoperative imaging modality. However, it suffers from several shortcomings e.g. its dependance on the skills of the operator for the image quality. To overcome this shortcoming, Gumprecht et al. [1] recently proposed a new robot-assisted flat-panel ultrasound device for continuous intraoperative imaging during laparoscopic tumor resection in urology. This device is integrated in the OR-table and performs its imaging through the back of a supine patient. The ultrasound probe resides in a tank, filled with a fluid that is traversable by the ultrasound waves. A flexible membrane is stretched over the tank and is in contact with the fluid and the patient. Through is flexibility, the membrane can adapt to the shape of the patient. Therefore, the membrane assures for sufficient coupling of ultrasound waves into the patient. We based the selection of the membrane and the fluid upon the quality of the ultrasound images that can be recorded with this combination. In this paper, we present the results of the experiment that lead to the standoff used in the robotic device of Gumprecht et al. [1].
机译:超声检查是一种广泛的术中成像模态。然而,它遭受了几个缺点,例如,它依赖了操作员的图像质量的技能。克服这种缺点,Gumprecht等人。最近提出了一种新的机器人辅助平板超声装置,用于在泌尿外科腹腔镜肿瘤切除期间连续术中成像。该设备集成在OR-TABLE中,并通过仰卧患者的背面执行其成像。超声探头驻留在罐中,填充有超声波遍历的流体。在罐中拉伸柔性膜并与流体和患者接触。通过灵活性,膜可以适应患者的形状。因此,膜确保超声波的充分耦合到患者。我们基于膜和流体的选择,以通过这种组合记录的超声图像的质量。在本文中,我们介绍了实验结果,导致Gumprecht等人的机器人装置中使用的梯级。 [1]。

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