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Development of Assisted-Robotic System Designed to Measure the Wave Intensity with an Ultrasonic Diagnostic Device

机译:开发辅助机器人系统,旨在测量带超声波诊断装置的波强度

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In recent years, due to the increasing rate of elderly people in Japan, the needs to detect adults' diseases at the early stage becomes a high priority. In particular, an increased interest in detecting heart and cerebrovascular diseases at an early stage may allow clinicians to begin treatment sooner, when interventions are generally more effective and less expensive. Recently, the Wave Intensity (WI) has been proposed as a new hemodynamic index that provides information about the dynamic behavior of the heart and the vascular system and their interaction. However; the repetitiveness and accuracy of the WI measurement depend on the precision of the positioning of the ultrasound probe. Therefore a positioning device for ultrasound probe is required. Such a device should not only be used to keep the position but also for the fine positioning of the probe. For this purpose, at Waseda University, we have proposed the development of a robot system to assist a carotid blood flow measurement using ultrasound diagnostic equipments. In this paper, the development of Waseda-Tokyo Women's Medical-Aloka Blood Flow Measurement System No. 1 Refined II (WTA-1RII) is detailed. The system consists of an ultrasound diagnostic device, a 6-DOFs parallel link manipulator, a serial link passive arm, ball joint, and a joystick type controller. The WTA-1RII has improved the design of the gravity compensation mechanism. In addition, a genetic algorithm has by implemented to determine the optimal link's position of the 6-DOFs parallel manipulator to increase the workspace. Finally, a set of experiments were carried out to determine the usability of the proposed system.
机译:近年来,由于日本老年人的涨幅增加,需要在早期阶段检测成年人的疾病成为高度优先事项。特别是,在早期检测心脏和脑血管疾病的兴趣增加可能让临床医生早期开始治疗,当干预通常更有效并且更便宜时。最近,已经提出了波强度(Wi)作为一种新的血液动力学指标,提供有关心脏和血管系统的动态行为及其相互作用的信息。然而; WI测量的重复性和准确性取决于超声探头定位的精度。因此,需要一种用于超声探头的定位装置。这种装置不应该用于保持位置,而且应该用于保持探针的精细定位。为此目的,在Waseda大学,我们提出了一种通过超声诊断设备协助颈动脉血流测量的机器人系统的开发。在本文中,详细介绍了Waseda-Tokyo女性医疗 - Aloka血流测量系统的开发。该系统由超声诊断装置组成,一个6-DOF并联连杆机械手,串行链路无源臂,球形接头和操纵杆类型控制器。 WTA-1RII改善了重力补偿机构的设计。另外,通过实现遗传算法来确定6-DOF并行机械手的最佳链路的位置以增加工作空间。最后,进行了一组实验以确定所提出的系统的可用性。

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