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首页> 外文期刊>Neuromodulation: journal of the International Neuromodulation Society >Neurologist Consistency in Interpreting Information Provided by an Interactive Visualization Software for Deep Brain Stimulation Postoperative Programming Assistance
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Neurologist Consistency in Interpreting Information Provided by an Interactive Visualization Software for Deep Brain Stimulation Postoperative Programming Assistance

机译:神经学家在解释信息方面的一致性,该信息由用于深部脑刺激的术后可视化协助的交互式可视化软件提供

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Introduction: Postoperative programming in deep brain stimulation (DBS) therapy for movement disorders can be challenging and time consuming. Providing the neurologist with tools to visualize the electrode location relative to the patient's anatomy along with models of tissue activation and statistical data can therefore be very helpful. In this study, we evaluate the consistency between neurologists in interpreting and using such information provided by our DBS programming assistance software. Methods: Five neurologists experienced in DBS programming were each given a dataset of 29 leads implanted in 17 patients. For each patient, probabilistic maps of stimulation response, anatomical images, models of tissue activation volumes, and electrode positions were presented inside a software framework called CRAnialVault Explorer (CRAVE) developed in house. Consistency between neurologists in optimal contact selection using the software was measured. Results: With only the efficacy map, the average consistency among the five neurologists with respectto the mode and mean of their selections was 97% and 95%, respectively, while these numbers were 93% and 89%, respectively, when both efficacy and an adverse effect map were used simultaneously. Fleiss' kappa statistic also showed very strong agreement among the neurologists (0.87 when using one map and 0.72 when using two maps). Conclusion: Our five neurologists demonstrated high consistency in interpreting information provided by the CRAVE interactive visualization software for DBS postoperative programming assistance. Three of our five neurologists had no prior experience with the software, which suggests that the software has a short learning curve and contact selection is not dependent on familiarity with the program tools.
机译:简介:深部脑刺激(DBS)治疗运动障碍的术后程序设计可能既富挑战性又耗时。因此,向神经科医生提供工具以可视化电极相对于患者解剖结构的位置以及组织激活和统计数据的模型将非常有帮助。在这项研究中,我们评估了神经科医生之间在解释和使用DBS编程辅助软件提供的信息时的一致性。方法:5位在DBS编程方面经验丰富的神经科医生分别获得了植入17位患者的29条导联的数据集。对于每位患者,在内部开发的称为CRAnialVault Explorer(CRAVE)的软件框架内,显示了刺激反应,解剖图像,组织激活量模型和电极位置的概率图。测量了神经科医生之间在使用该软件进行最佳接触选择中的一致性。结果:仅凭功效图,五位神经科医师在选择方式和平均值方面的平均一致性分别为97%和95%,而在功效和安全性方面,这两个数字分别为93%和89%。同时使用不良反应图。 Fleiss的kappa统计数据也显示神经科医生之间非常一致(一张地图使用0.87,两张地图使用0.72)。结论:我们的五位神经科医师在解释CRAVE交互式可视化软件为DBS术后程序设计协助提供的信息方面显示出高度一致性。我们的五位神经科医师中有三位以前没有使用该软件的经验,这表明该软件的学习曲线较短,联系人的选择不取决于对编程工具的熟悉程度。

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