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Minimally invasive electroceutical catheter for endoluminal defect sealing

机译:用于内渗缺陷密封的微创电气导管

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Surgical repair of lumen defects is associated with periprocedural morbidity and mortality. Endovascular repair with tissue adhesives may reduce host tissue damage, but current bioadhesive designs do not support minimally invasive deployment. Voltage-activated tissue adhesives offer a new strategy for endoluminal repair. To facilitate the clinical translation of voltage-activated adhesives, an electroceutical patch (ePATCH) paired with a minimally invasive catheter with retractable electrodes (CATRE) is challenged against the repair of in vivo and ex vivo lumen defects. The ePATCH/CATRE platform demonstrates the sealing of lumen defects up to 2 millimeters in diameter on wet tissue substrates. Water-tight seals are flexible and resilient, withstanding over 20,000 physiological relevant stress/strain cycles. No disruption to electrical signals was observed when the ePATCH was electrically activated on the beating heart. The ePATCH/CATRE platform has diverse potential applications ranging from endovascular treatment of pseudo-aneurysms/fistulas to bioelectrodes toward electrophysiological mapping.
机译:内腔缺陷的手术修复与霸主经济发病率和死亡率有关。血管内修复组织粘合剂可能降低宿主组织损伤,但目前的生物粘性设计不支持微创部署。电压激活的组织粘合剂提供了新橄榄树治疗的新策略。为了促进电压激活粘合剂的临床翻译,将与可伸缩电极(Catre)的微创导管配对的电气贴剂(切片)攻击体内和离体内腔缺陷的修复。 Epatch / Catre平台演示了在湿组织基材上的直径直径高达2毫米的腔缺陷的密封。防水密封件是柔性且有弹性的,具有超过20,000个生理相关应力/应变循环。当Epatch在跳动心脏上电激活时,没有观察到电信号的破坏。 Epatch / Catre平台具有不同的潜在应用,从近端动脉瘤/瘘管到生物电解朝向电生理测绘的潜在应用。

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