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Minimally Invasive Robotic HIFU Neurosurgical Applications

机译:微创机器人HIFU神经外科应用

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Due to complex anatomy and functionality of brain, volumetric excision of abnormal tissue targets such as tumors/cancers poses a great risk as it is difficult without causing harm to the overlying normal structures. Minimally invasive and non-invasive robotic approaches are being widely investigated as alternatives to traditional open surgery due to their advantages in accurate planning, registration, navigation and manipulation. In this paper, we present robot assisted minimally invasive means for volumetric ablation of brain tumors using High Intensity Focused Ultrasound (HIFU) modality through a precise craniotomy. The end-effector is capable of integrating and registering the prevalent single, multiple or phased array applicators coupled to dura-mater using a flexible degassed water chamber. Our customized modular robot named, Neurobot, comprising of various modules that work in active and passive modes and its treatment planning are described. The robot is equipped with alternating end-effectors respectively for drilling and energy delivery and the measured accuracy of this system is within 0.1mm.
机译:由于脑的复杂解剖和功能,诸如肿瘤/癌症的异常组织靶标的体积切除造成了很大的风险,因为它难以对覆盖的正常结构造成伤害。由于其优势在准确的规划,登记,导航和操作方面,这些侵入性和无侵入性机器人方法被广泛调查为传统开放手术的替代品。在本文中,我们通过精确的Craniotomy使用高强度聚焦超声(HIFU)模态,提供了机器人的辅助微创手段,用于使用高强度聚焦超声(HIFU)模态进行脑肿瘤的体积消融。最终效应器能够使用柔性脱气水室与耦合到Dura-Mater的普遍存流和登记普遍的单个,多个或相位阵列涂敷器。我们的定制模块化机器人命名为Neurobot,包括在主动和无源模式下工作的各种模块及其治疗计划。机器人分别配备了交替的最终效应器,用于钻孔和能量输送,并且该系统的测量精度在0.1mm之内。

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