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World's Firsti 1/2 ?Aopeng Medical Completes Clinical Trial of Robotic-Assisted Peripheral artery Intervention of iliac artery in human

SHANGHAI, Nov. 23, 2021 /PRNewswire/ -- On November , 2021, Aopeng Medical's ALLVASa?? Endovascular Intervention Surgical Robot, successfully completed the first-in-human clinical evaluation of robot-assisted peripheral artery intervention of iliac artery in the Department of Vascular Surgery at Shanghai Changhai Hospital. The procedure was operated by Prof. Qing-Sheng Lu and his colleagues. The endovascular intervention surgical robot, combined with Digital Subtraction Angiography (DSA), precisely evaluated the target lesion and its location, and completed a refined operation process to better ensure the safety of the procedure, reduce iatrogenic injury, and reduce the incidence of complications and post-operative reintervention rate. The success of this first clinical trial marks a historic leap forward and the beginning of a new era of robotic-assisted peripheral artery intervention.Effectively Filling the Gap in the Intervention Robot's Market Aopeng Medical's ALLVASa?? Endovascular Intervention Surgical Robot is the first platform-robot in peripheral artery intervention with independent intellectual property rights in China. Its core technology covers robot architecture design, robotic arm and actuator process design, force feedback mechanism, software algorithm and automated surgery, system integration, etc. It is the world's first universal peripheral artery interventional robot built by Aopeng Medical through nearly a decade of forward-looking technology reserve. Early this year, Aopeng Medical has completed the world's first-in-human clinical trial of robot-assisted endovascular aortic repair of thoracic aortic aneurysm and abdominal aortic aneurysm.The traditional surgical treatment has numerous side effects, such as high trauma, high risk, difficulty and multiple complications. In comparison, Aopeng's endovascular intervention robot ALLVASa??, can achieve precise positioning through digital technology, which meets specific needs from the individual patient. It is also expected to reduce the radiation dose received by the operator by more than 90% and improve the precision of surgical manipulation, thus helping physicians to achieve higher efficiency and more satisfactory effects in clinical practice.VastA opportunities of endovascular intervention robotsA inA theA long term
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