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The ACUSITT Ultrasonic Ablator: The First Steerable Needle with an Integrated Interventional Tool

机译:ACUSITT超声波烧纳器:具有集成介入工具的第一针头

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Steerability in percutaneous medical devices is highly desirable, enabling a needle or needle-like instrument to avoid sensitive structures (e.g. nerves or blood vessels), access obstructed anatomical targets, and compensate for the inevitable errors induced by registration accuracy thresholds and tissue deformation during insertion. Thus, mechanisms for needle steering have been of great interest in the engineering community in the past few years, and several have been proposed. While many interventional applications have been hypothesized for steerable needles (essentially anything deliverable via a regular needle), none have yet been demonstrated as far as the authors are aware. Instead, prior studies have focused on model validation, control, and accuracy assessment. In this paper, we present the first integrated steerable needle-interventional device. The ACUSITT integrates a multi-tube steerable Active Cannula (AC) with an Ultrasonic Interstitial Thermal Therapy ablator (USITT) to create a steerable percutaneous device that can deliver a spatially and temporally controllable (both mechanically and electronically) thermal dose profile. We present our initial experiments toward applying the ACUSITT to treat large liver tumors through a single entry point. This involves repositioning the ablator tip to several different locations, without withdrawing it from the liver capsule, under 3D Ultrasound image guidance. In our experiments, the ACUSITT was deployed to three positions, each 2cm apart in a conical pattern to demonstrate the feasibility of ablating large liver tumors 7cm in diameter without multiple parenchyma punctures.
机译:可操纵性在经皮医疗装置是非常理想的,从而使针或针状器械避开敏感结构(例如神经或血管),接入受阻解剖学目标,并且补偿在插入过程中诱导的配准精度的阈值和组织变形不可避免的错误。因此,对于针操作机制已经在过去的几年中在工程界极大的兴趣,并已经提出了一些。虽然许多介入应用已经假设了可操纵针(通过常规针基本上任何交付),还没有尚未尽可能的作者都知道证明。相反,以前的研究都集中在模型验证,控制和准确度评估。在本文中,我们提出的第一个集成的可控针介入设备。所述ACUSITT集成多管可操纵活动套管(AC)与超声波间质性热疗消融器(USITT)来创建可以提供一个空间和时间可控制的(机械地和电子地)热剂量分布的可操纵的经皮装置。我们提出我们的最初的实验向应用ACUSITT通过单一入口点来治疗大的肝肿瘤。这涉及消融仪尖端重新定位到几个不同的位置,而不从肝包膜抽回,3D超声图像指导下进行。在我们的实验中,ACUSITT被部署到三个位置,每个相隔2厘米在锥形模式来演示消融大肝肿瘤的可行性直径7CM无需多次实质穿刺。

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