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Enabling Angioplasty‐Ready Smart Stents to Detect In‐Stent Restenosis and Occlusion

机译:启用血管成形术就绪的智能支架以检测支架内再狭窄和闭塞

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摘要

Despite the multitude of stents implanted annually worldwide, the most common complication called in‐stent restenosis still poses a significant risk to patients. Here, a “smart” stent equipped with microscale sensors and wireless interface is developed to enable continuous monitoring of restenosis through the implanted stent. This electrically active stent functions as a radiofrequency wireless pressure transducer to track local hemodynamic changes upon a renarrowing condition. The smart stent is devised and constructed to fulfill both engineering and clinical requirements while proving its compatibility with the standard angioplasty procedure. Prototypes pass testing through assembly on balloon catheters withstanding crimping forces of >100 N and balloon expansion pressure up to 16 atm, and show wireless sensing with a resolution of 12.4 mmHg. In a swine model, this device demonstrates wireless detection of blood clot formation, as well as real‐time tracking of local blood pressure change over a range of 108 mmHg that well covers the range involved in human. The demonstrated results are expected to greatly advance smart stent technology toward its clinical practice.
机译:尽管全世界每年都植入大量的支架,但最普遍的并发症称为支架内再狭窄仍对患者构成重大风险。在这里,开发了一种配备了微型传感器和无线接口的“智能”支架,可以通过植入的支架连续监测再狭窄。该电活性支架用作射频无线压力传感器,可在缩小范围时跟踪局部血液动力学变化。智能支架的设计和制造可满足工程和临床要求,同时证明其与标准血管成形术程序兼容。原型通过气球导管上的组件通过的测试通过,该导管具有> 100 N的压接力和最高16 atm的气球膨胀压力,并显示了分辨率为12.4 mmHg的无线传感。在猪模型中,该设备演示了对血凝块形成的无线检测,以及在108 mmHg的范围内实时跟踪局部血压变化的实时跟踪,该范围完全涵盖了人类所涉及的范围。预期的结果有望大大推动智能支架技术走向其临床实践。

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