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Development of intravascular ultrasound transducers to monitor chronic total occlusion treatment by microrobots

机译:血管内超声换能器的研制监测微米慢性总闭塞处理

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Chronic total occlusion (CTO) is a completely blocked coronary artery disease. For treatment, surgical procedure for CTO tunneling is generally conducted. The success rate of this procedure relies mainly upon the proficiency of the surgeon. During the surgery, the surgeon is constantly exposed to radioactivity emitted by X-ray based imaging devices such as angiography to locate a surgical wire. To ensure a high surgical success rate without the risk of radiation exposure, a new technology can be devised to perform CTO tunneling using a microrobot controlled by an externally generated magnetic field. To maximize the effectiveness of this new technology, it is essential to identify the components of CTO and the location of the microrobot. This paper reports a recently developed intravascular ultrasound (IVUS) transducer for ultrasound signal-guided CTO tunneling using microrobot. The IVUS transducer was designed and fabricated to enable easy integration with microrobots for CTO tunneling.
机译:慢性总闭塞(CTO)是完全阻塞的冠状动脉疾病。对于治疗,通常进行CTO隧道的外科手术。该程序的成功率主要依赖外科医生的熟练程度。在手术期间,外科医生不断地暴露于由X射线基于成像装置发射的放射性,例如血管造影以定位外科线。为了确保没有辐射曝光风险的高手术成功率,可以设计一种新技术,用于使用由外部产生的磁场控制的微机器来执行CTO隧道。为了最大限度地提高这项新技术的有效性,必须识别CTO的组分和微毒物的位置。本文报道了最近开发的血管内超声(IVUS)换能器,用于使用微机器的超声波信号引导的CTO隧道隧道。 IVUS传感器设计和制造,以便与CTO隧道的微机器轻松集成。

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