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Updated: May 14, 2026

Targeting Neuronal Fiber Tracts for Deep Brain Stimulation Therapy Using Interactive, Patient-Specific Models
Published on: August 12, 2018
Correlation Between Electrode Location and Clinical Efficacy of Deep Brain Stimulation of the Subthalamic Nucleus in
Jingchao Wu1,2, Guanyu Zhu3, Jianguo Zhang3
1Department of Neurosurgery, Tianjin Huanhu Hospital, Tianjin 300222, China.
Abstract:
Background: Isolated Generalized Dystonia (IGD) severely reduces quality of life. Deep brain stimulation of the subthalamic nucleus (STN-DBS) is effective for refractory IGD, but the factors influencing efficacy remain unclear. Methods: Twelve IGD patients treated with bilateral STN-DBS (2016-2021) were retrospectively analyzed. Clinical outcomes (BFMDRS, HAMA, HAMD, MOCA, MMSE) were evaluated at baseline and the last follow-up (12-60 months). The electrode position and volume of tissue activated (VTA) in STN subregions were analyzed using Lead-DBS V3.0. Results: STN-DBS significantly improved BFMDRS-M and BFMDRS-D scores (p < 0.001) without cognitive or mood deterioration. BFMDRS-M improvement correlated positively with the VTA of the whole STN and motor subregion (p < 0.05) but not with associative/limbic subregions. The preoperative HAMD score was negatively associated with motor improvement (p = 0.002). Conclusions: STN-DBS safely improves motor function in IGD. Efficacy depends on the VTA within the STN sensorimotor subregion. The preoperative HAMD score may predict the long-term outcome, helping guide patient selection and surgical planning.
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