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Virtual reality, augmented reality, and robotics applied to digestive operative procedures: from in vivo animal preclinical studies to clinical use

机译:虚拟现实,增强现实和机器人应用于消化手术程序:从体内动物临床前研究到临床用途

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Technological innovations of the 20th century provided medicine and surgery with new tools, among which virtual reality and robotics belong to the most revolutionary ones. Our work aims at setting up new techniques for detection, 3D delineation and 4D time follow-up of small abdominal lesions from standard mecial images (CT scsan, MRI). It also aims at developing innovative systems making tumor resection or treatment easier with the use of augmented reality and robotized systems, increasing gesture precision. It also permits a realtime great distance connection between practitioners so they can share a same 3D reconstructed patient and interact on a same patient, virtually before the intervention and for real during the surgical procedure thanks to a telesurgical robot. In preclinical studies, our first results obtained from a micro-CT scanner show that these technologies provide an efficient and precise 3D modeling of anatomical and pathological structures of rats and mice. In clinical studies, our first results show the possibility to improve the therapeutic choice thanks to a better detection and and representation of the patient before performing the surgical gesture. They also show the efficiency of augmented reality that provides virtual transparency of the patient in real time during the operative procedure. In the near future, through the exploitation of these systems, surgeons will program and check on the virtual patient clone an optimal procedure without errors, which will be replayed on the real patient by the robot under surgeon control. This medical dream is today about to become reality.
机译:20世纪的技术创新提供了新工具的医学和手术,其中虚拟现实和机器人属于最革命性的工具。我们的工作旨在建立一种从标准杂种图像(CT SCSAN,MRI)的小腹部病变的检测,3D描绘和4D时间随访的新技术。它还旨在开发创新系统,使肿瘤切除或治疗更容易使用增强现实和机器化系统,增加手势精度。它还允许从业者之间的实时距离连接,因此它们可以共享相同的3D重建的患者并在同一患者上进行交互,几乎在手术过程中的干预和真实的过程中,这归功于传递的机器人。在临床前研究中,我们从微型CT扫描仪获得的第一个结果表明,这些技术提供了大鼠和小鼠的解剖学和病理结构的有效和精确的3D模型。在临床研究中,我们的第一个结果表明,由于在进行外科手术前更好地检测和和表示,因此由于患者的更好的检测和和表示,可以提高治疗选择的可能性。它们还展现了在操作程序期间实时提供虚拟透明度的增强现实的效率。在不久的将来,通过利用这些系统,外科医生将编程和检查虚拟患者克隆的最佳过程,没有错误,这将在外科医生控制下的机器人在真实患者上重放。这个医疗梦想今天即将成为现实。

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