McIntyre Cameron C, Butson Christopher R, Maks Christopher B, Noecker Angela M
Department of Biomedical Engineering, Cleveland Clinic Foundation, Cleveland, OH, USA.
Conf Proc IEEE Eng Med Biol Soc. 2006;2006:893-5. doi: 10.1109/IEMBS.2006.260844.
Deep brain stimulation (DBS) is an established clinical therapy for the treatment of Parkinson's disease. However, selecting stimulation parameters for maximal clinical benefit can be a difficult and time consuming process that typically requires a highly trained and experienced individual to achieve acceptable results. To address this limitation we developed a Windows-based software package (StimExplorer) intended to aid the clinical implementation of DBS technology. StimExplorer uses detailed computer models to provide a quantitative description of the 3D volume of tissue activated (VTA) by DBS as a function of the stimulation parameters and electrode location within the brain. The DBS electric field models explicitly incorporate the capacitance of the electrode-tissue interface, tissue encapsulation of the electrode, and diffusion-tensor based 3D tissue anisotropy and inhomogeneity. The VTA is predicted with models of axonal activation resulting from the applied field. The stimulation models are tailored to the individual patient by reading in their magnetic resonance imaging (MRI) data and interactively scaling 3D anatomical nuclei to fit the patient anatomy. The user also inputs the DBS electrode orientation, location, and impedance data. The software then provides theoretically optimal stimulation parameter suggestions, intended to represent the start point for clinical programming of the DBS device. The software system is packaged into a clinician-friendly graphical user interface that allows for interactive 3D visualization. The goals of the StimExplorer system are to educate clinicians on the impact of stimulation parameter manipulation, and improve the customization of DBS to individual patients.
深部脑刺激(DBS)是一种已确立的用于治疗帕金森病的临床疗法。然而,选择能带来最大临床益处的刺激参数可能是一个困难且耗时的过程,通常需要训练有素且经验丰富的人员才能取得可接受的结果。为解决这一局限性,我们开发了一个基于Windows的软件包(StimExplorer),旨在辅助DBS技术的临床应用。StimExplorer使用详细的计算机模型,根据刺激参数和电极在脑内的位置,对DBS激活的组织三维体积(VTA)进行定量描述。DBS电场模型明确纳入了电极 - 组织界面的电容、电极的组织包裹情况以及基于扩散张量的三维组织各向异性和不均匀性。通过施加电场产生的轴突激活模型来预测VTA。通过读取患者的磁共振成像(MRI)数据并交互式缩放三维解剖核以匹配患者解剖结构,刺激模型可针对个体患者进行定制。用户还需输入DBS电极方向、位置和阻抗数据。然后,该软件会提供理论上最优的刺激参数建议,旨在作为DBS设备临床编程的起点。该软件系统被打包成一个对临床医生友好的图形用户界面,支持交互式三维可视化。StimExplorer系统的目标是让临床医生了解刺激参数操作的影响,并改善DBS对个体患者的定制。