Li Zhe, Zhang Jian-Guo, Ye Yan, Li Xiaoping
Department of Biomedical Engineering, National University of Singapore, Singapore, Singapore.
Stereotact Funct Neurosurg. 2016;94(6):351-362. doi: 10.1159/000449206. Epub 2016 Oct 27.
Accurate implantation of a depth electrode into the brain is of the greatest importance in deep brain stimulation (DBS), and various stereotactic systems have been developed for electrode implantation. However, an updated analysis of depth electrode implantation in the modern era of DBS is lacking.
This study aims at providing an updated review on targeting accuracy of DBS electrode implantation by analyzing contemporary DBS electrode implantation operations from the perspective of precision engineering.
Eligible articles with information on targeting accuracy of DBS electrode implantation were searched in the PubMed database.
An average targeting error of DBS electrode implantation is reported to decrease toward 1 mm; the standard deviation of targeting error is decreasing toward 0.5 mm. Targeting accuracy is not only found to be affected by individual surgical steps, but also systematically affected by the architecture of the implantation operation.
A systematic strategy should be adopted to further improve the targeting accuracy of depth electrode implantation. Attention should be paid to optimizing the whole electrode implantation operation, which can help minimize error accumulation or amplification throughout the serially connected procedures for DBS electrode implantation.
在脑深部电刺激(DBS)中,将深度电极准确植入大脑至关重要,并且已经开发了各种立体定向系统用于电极植入。然而,在现代DBS时代,缺乏对深度电极植入的最新分析。
本研究旨在通过从精密工程的角度分析当代DBS电极植入手术,对DBS电极植入的靶向准确性提供最新综述。
在PubMed数据库中搜索有关DBS电极植入靶向准确性信息的符合条件的文章。
据报道,DBS电极植入的平均靶向误差朝着1毫米降低;靶向误差的标准差朝着0.5毫米降低。发现靶向准确性不仅受个体手术步骤影响,还受植入手术结构的系统性影响。
应采用系统策略进一步提高深度电极植入的靶向准确性。应注意优化整个电极植入手术,这有助于在DBS电极植入的一系列连续程序中最小化误差积累或放大。