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Development of foolproof catheter guide system based on mechatronic design

机译:基于机电设计的万无一失的导管导引系统的开发

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摘要

Minimally invasive surgery (MIS) is a less invasive procedure compared to traditional open surgery. It usually involves laparoscopic devices and remote control manipulation instruments comprising an endoscope for indirect observation of the surgical field. Interventional radiology (IVR) is one of the MIS methodologies. The IVR procedures include diagnosis such as angiograms, and treatment. The IVR procedures use small tubes called catheters, which are inserted through the body cavity or blood vessel to the treatment area. The IVR procedures lead to the risk of X-ray exposure to surgeon since the procedures is using the digital subtraction angiography device to get clear image of the patient blood vessel. Therefore, we have developed a foolproof tele-operated system to guide the catheter. Hence, the reliability in IVR procedure is crucial. The system is based on a mechatronic design methodology characterized by a principle solution specified in CONSENS® (CONceptual design Specification technique for the ENgineering of complex Systems). This principle solution serves as a basis for the first analysis and verification on the system level. Further, the proposed concept of control system can also be re-used in the other foolproof guidance systems.
机译:与传统的开放式手术相比,微创手术(MIS)的侵入性较小。它通常涉及腹腔镜设备和包括用于间接观察手术视野的内窥镜的遥控操纵仪器。介入放射学(IVR)是MIS的一种方法。 IVR程序包括诊断(例如血管造影)和治疗。 IVR程序使用称为导管的小管,将其穿过体腔或血管插入治疗区域。由于IVR程序正在使用数字减影血管造影设备来获取患者血管的清晰图像,因此会导致X射线暴露于外科医生的风险。因此,我们开发了一种万无一失的远程操作系统来引导导管。因此,IVR过程的可靠性至关重要。该系统基于机电设计方法,其特征在于CONSENS®(复杂系统工程的概念设计规范技术)中指定的原理解决方案。该基本解决方案是在系统级别进行第一次分析和验证的基础。此外,所提出的控制系统的概念也可以在其他万无一失的制导系统中重复使用。

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