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A Novel Sensorized Heart Valve Prosthesis: Preliminary In Vitro Evaluation

机译:新型感测心脏瓣膜假体:初步体外评估

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摘要

Background: Recent studies have shown that subclinical valve thrombosis in heart valve prosthesis (HVP) can be responsible for reduced leaflet motion detectable only by advanced imaging diagnostics. We conceived a novel sensorized HVP able to detect earlier any thrombus formation that may alter the leaflets motion using an electric impedance measurement, IntraValvular Impedance (IVI). Methods: For IVI measurement, dedicated electrodes are embedded in the structure of the HVP to generate a local electric field that is altered by the moving valve leaflets during their cyclic opening/closing. We present preliminary in vitro results using a first prototype of sensorized mechanical heart valve connected to an external impedance measurement system. The prototype was tested on a circulatory mock loop system and the IVI signals were recorded during both normal dynamics and experimentally induced altered working of the leaflets. Results: Recordings showed a very repetitive and stable IVI signal during the normal cyclic opening/closing of the HVP. The induced alterations in leaflet motion were reflected in the IVI signal. Conclusions: The novel sensorized HVP has great potential to give early warning of possible subclinical valve thrombosis altering the valve leaflet motion, and to help in tailoring the anticoagulation therapy.
机译:背景:最近的研究表明,仅通过高级影像学诊断才能检测到心脏瓣膜假体(HVP)中的亚临床瓣膜血栓形成可导致小叶运动减少。我们构想了一种新颖的感测HVP,它可以使用电阻抗测量(瓣膜内阻抗(IVI))来及早检测可能改变小叶运动的任何血栓形成。方法:对于IVI测量,将专用电极嵌入HVP的结构中,以产生局部电场,该局部电场在活动瓣膜小叶的周期性打开/关闭过程中会改变。我们使用连接到外部阻抗测量系统的传感机械心脏瓣膜的第一个原型,提出了初步的体外结果。在循环模拟循环系统上测试了原型,并在正常动力学和实验性诱导的小叶改变工作期间记录了IVI信号。结果:记录显示,在HVP正常循环打开/关闭期间,IVI信号非常重复且稳定。诱导的小叶运动改变反映在IVI信号中。结论:新型的感性HVP具有很大的潜力,可以对亚临床瓣膜血栓形成,从而改变瓣膜小叶运动提供早期预警,并有助于制定抗凝治疗方案。

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