首页> 外文会议>International Workshop on Biomedical Image Registration(WBIR 2006); 20060709-11; Utrecht(NL) >Deformable Physiological Atlas-Based Programming of Deep Brain Stimulators: A Feasibility Study
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Deformable Physiological Atlas-Based Programming of Deep Brain Stimulators: A Feasibility Study

机译:基于可变形生理图谱的深部脑刺激器编程:可行性研究

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The postoperative neurological management of patients with deep brain stimulation (DBS) of the subthalamic nucleus (STN) for Parkinson's disease is a complex and dynamic process that involves optimizing the stimulation parameters and decreasing the anti-parkinsonian medication while assessing the interactions of both treatment modalities. Neurologists who manage patients undergoing DBS therapy must have expert knowledge of the electro-anatomy of the subthalamic area and be familiar with the medical treatment of motor and non-motor symptoms. In clinical practice, finding the optimal programming parameters can be a challenging and time-consuming process. We have developed a computerized system to facilitate one of the bottlenecks of DBS therapy: the IPG (Internal Pulse Generator) programming. This system consists of a deformable physiological atlas built on more than 300 intra-operative macro-stimulations acquired from 30 Parkinson's patients and of a non-rigid registration algorithm used to map these data into an atlas. By correlating the position of the quadripolar electrode implanted in the patient with the information contained in our atlas, we can determine which of four contacts has the highest probability to be the most clinically effective. Preliminary results presented in this study suggest that this approach facilitates the programming process by guiding the neurologist to the optimal contact. The system we propose was tested retrospectively on a total of 30 electrodes. In 19 of these cases, this system predicted the contact that was selected as the optimal one by the neurologist.
机译:帕金森氏病的丘脑下核(STN)的深部脑刺激(DBS)患者的术后神经管理是一个复杂而动态的过程,涉及优化刺激参数和减少抗帕金森病药物,同时评估两种治疗方式的相互作用。管理接受DBS治疗的患者的神经科医生必须具有丘脑下区域的电解剖学专业知识,并熟悉运动和非运动症状的医学治疗。在临床实践中,找到最佳的编程参数可能是一个艰巨而耗时的过程。我们已经开发出一种计算机化系统来缓解DBS治疗的瓶颈之一:IPG(内部脉冲发生器)编程。该系统包括一个可变形的生理图谱,该图谱建立在从30名帕金森氏病患者获得的300多个术中宏观刺激基础上,以及用于将这些数据映射到图谱中的非刚性配准算法。通过将植入患者的四极电极的位置与我们的地图集中所包含的信息相关联,我们可以确定四个接触中的哪个接触在临床上最有效的可能性最高。在这项研究中提出的初步结果表明,这种方法通过指导神经科医生达到最佳接触来促进编程过程。我们建议的系统在总共30个电极上进行了回顾性测试。在其中的19种情况下,该系统预测了神经科医生选择的最佳联系人。

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