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Deep Brain Stimulation Electrode Reconstruction: Comparison between Lead-DBS and Surgical Planning System

Background: Electrode reconstruction for postoperative deep brain simulation (DBS) can be achieved manually using a surgical planning system such as Surgiplan, or in a semi-automated manner using software such as the Lead-DBS toolbox. However, the accuracy of Lead-DBS has not been thoroughly address...

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Autores principales: Xu, Yichen, Qin, Guofan, Tan, Bojing, Fan, Shiying, An, Qi, Gao, Yuan, Fan, Houyou, Xie, Hutao, Wu, Delong, Liu, Huanguang, Yang, Guang, Fang, Huaying, Xiao, Zunyu, Zhang, Jianguo, Zhang, Hua, Shi, Lin, Yang, Anchao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10002993/
https://www.ncbi.nlm.nih.gov/pubmed/36902568
http://dx.doi.org/10.3390/jcm12051781
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author Xu, Yichen
Qin, Guofan
Tan, Bojing
Fan, Shiying
An, Qi
Gao, Yuan
Fan, Houyou
Xie, Hutao
Wu, Delong
Liu, Huanguang
Yang, Guang
Fang, Huaying
Xiao, Zunyu
Zhang, Jianguo
Zhang, Hua
Shi, Lin
Yang, Anchao
author_facet Xu, Yichen
Qin, Guofan
Tan, Bojing
Fan, Shiying
An, Qi
Gao, Yuan
Fan, Houyou
Xie, Hutao
Wu, Delong
Liu, Huanguang
Yang, Guang
Fang, Huaying
Xiao, Zunyu
Zhang, Jianguo
Zhang, Hua
Shi, Lin
Yang, Anchao
author_sort Xu, Yichen
collection PubMed
description Background: Electrode reconstruction for postoperative deep brain simulation (DBS) can be achieved manually using a surgical planning system such as Surgiplan, or in a semi-automated manner using software such as the Lead-DBS toolbox. However, the accuracy of Lead-DBS has not been thoroughly addressed. Methods: In our study, we compared the DBS reconstruction results of Lead-DBS and Surgiplan. We included 26 patients (21 with Parkinson’s disease and 5 with dystonia) who underwent subthalamic nucleus (STN)-DBS, and reconstructed the DBS electrodes using the Lead-DBS toolbox and Surgiplan. The electrode contact coordinates were compared between Lead-DBS and Surgiplan with postoperative CT and MRI. The relative positions of the electrode and STN were also compared between the methods. Finally, the optimal contact during follow-up was mapped onto the Lead-DBS reconstruction results to check for overlap between the contacts and the STN. Results: We found significant differences in all axes between Lead-DBS and Surgiplan with postoperative CT, with the mean variance for the X, Y, and Z coordinates being −0.13, −1.16, and 0.59 mm, respectively. Y and Z coordinates showed significant differences between Lead-DBS and Surgiplan with either postoperative CT or MRI. However, no significant difference in the relative distance of the electrode and the STN was found between the methods. All optimal contacts were located in the STN, with 70% of them located within the dorsolateral region of the STN in the Lead-DBS results. Conclusions: Although significant differences in electrode coordinates existed between Lead-DBS and Surgiplan, our results suggest that the coordinate difference was around 1 mm, and Lead-DBS can capture the relative distance between the electrode and the DBS target, suggesting it is reasonably accurate for postoperative DBS reconstruction.
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spelling pubmed-100029932023-03-11 Deep Brain Stimulation Electrode Reconstruction: Comparison between Lead-DBS and Surgical Planning System Xu, Yichen Qin, Guofan Tan, Bojing Fan, Shiying An, Qi Gao, Yuan Fan, Houyou Xie, Hutao Wu, Delong Liu, Huanguang Yang, Guang Fang, Huaying Xiao, Zunyu Zhang, Jianguo Zhang, Hua Shi, Lin Yang, Anchao J Clin Med Article Background: Electrode reconstruction for postoperative deep brain simulation (DBS) can be achieved manually using a surgical planning system such as Surgiplan, or in a semi-automated manner using software such as the Lead-DBS toolbox. However, the accuracy of Lead-DBS has not been thoroughly addressed. Methods: In our study, we compared the DBS reconstruction results of Lead-DBS and Surgiplan. We included 26 patients (21 with Parkinson’s disease and 5 with dystonia) who underwent subthalamic nucleus (STN)-DBS, and reconstructed the DBS electrodes using the Lead-DBS toolbox and Surgiplan. The electrode contact coordinates were compared between Lead-DBS and Surgiplan with postoperative CT and MRI. The relative positions of the electrode and STN were also compared between the methods. Finally, the optimal contact during follow-up was mapped onto the Lead-DBS reconstruction results to check for overlap between the contacts and the STN. Results: We found significant differences in all axes between Lead-DBS and Surgiplan with postoperative CT, with the mean variance for the X, Y, and Z coordinates being −0.13, −1.16, and 0.59 mm, respectively. Y and Z coordinates showed significant differences between Lead-DBS and Surgiplan with either postoperative CT or MRI. However, no significant difference in the relative distance of the electrode and the STN was found between the methods. All optimal contacts were located in the STN, with 70% of them located within the dorsolateral region of the STN in the Lead-DBS results. Conclusions: Although significant differences in electrode coordinates existed between Lead-DBS and Surgiplan, our results suggest that the coordinate difference was around 1 mm, and Lead-DBS can capture the relative distance between the electrode and the DBS target, suggesting it is reasonably accurate for postoperative DBS reconstruction. MDPI 2023-02-23 /pmc/articles/PMC10002993/ /pubmed/36902568 http://dx.doi.org/10.3390/jcm12051781 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Xu, Yichen
Qin, Guofan
Tan, Bojing
Fan, Shiying
An, Qi
Gao, Yuan
Fan, Houyou
Xie, Hutao
Wu, Delong
Liu, Huanguang
Yang, Guang
Fang, Huaying
Xiao, Zunyu
Zhang, Jianguo
Zhang, Hua
Shi, Lin
Yang, Anchao
Deep Brain Stimulation Electrode Reconstruction: Comparison between Lead-DBS and Surgical Planning System
title Deep Brain Stimulation Electrode Reconstruction: Comparison between Lead-DBS and Surgical Planning System
title_full Deep Brain Stimulation Electrode Reconstruction: Comparison between Lead-DBS and Surgical Planning System
title_fullStr Deep Brain Stimulation Electrode Reconstruction: Comparison between Lead-DBS and Surgical Planning System
title_full_unstemmed Deep Brain Stimulation Electrode Reconstruction: Comparison between Lead-DBS and Surgical Planning System
title_short Deep Brain Stimulation Electrode Reconstruction: Comparison between Lead-DBS and Surgical Planning System
title_sort deep brain stimulation electrode reconstruction: comparison between lead-dbs and surgical planning system
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10002993/
https://www.ncbi.nlm.nih.gov/pubmed/36902568
http://dx.doi.org/10.3390/jcm12051781
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