Neurosurgical Treatment of Obsessive-Compulsive Disorder

2017 ◽  
pp. 481-506
1998 ◽  
Vol 173 (S35) ◽  
pp. 79-90 ◽  
Author(s):  
M. A. Jenike

Background Case reports suggest that neurosurgical operations can improve symptoms in patients with severe treatment-refractory obsessive-compulsive disorder (OCD). However, it is unclear which procedure is best and which may produce the most side-effects.Method I review the literature on the efficacy and complications of four frequently used neurosurgical procedures (cingulotomy, capsulotomy, limbic leucotomy and subcaudate tractotomy) that are used to treat refractory OCD.Results Since the vast majority of patients who underwent surgery were severely and chronically disabled, it is likely that these procedures were of assistance in alleviating some of their symptoms. It is currently impossible to determine which surgical procedure is the best for a particular patient.Conclusions Despite a lack of controlled data and inconsistencies in the literature, it appears that when nonsurgical treatments have failed to improve OCD symptoms significantly in severely ill patients, at least partial relief can be obtained by some people with OCD by neurosurgery Results of cumulative studies strongly support the need for continued research in this area.


2019 ◽  
Vol 12 (11) ◽  
pp. e232462
Author(s):  
Calvin Howard

Schizophrenia likely represents a cluster of diseases presenting with delusions, hallucinations, disorganised behaviour and disorganised thought. Currently, medical therapy struggles to treat a substantial portion of patients, but with improved stratification of component diseases, it may be possible to better understand and treat schizophrenia. The overlap between schizophrenia, schizo-obsessive disorder and obsessive-compulsive disorder is discussed within the context of a clinical case and neuroimaging data. Furthermore, the use of obsessive-compulsive disorder deep brain stimulation protocols for schizo-obsessive disorder is discussed and may yield an advance in neurosurgical treatment of psychiatric conditions.


2021 ◽  
pp. 1-10
Author(s):  
Clara Kwon Starkweather ◽  
Sarah K. Bick ◽  
Jeffrey M. McHugh ◽  
Darin D. Dougherty ◽  
Ziv M. Williams

OBJECTIVE Obsessive-compulsive disorder (OCD) is among the most debilitating and medically refractory psychiatric disorders. While cingulotomy is an anatomically targeted neurosurgical treatment that has shown significant promise in treating OCD-related symptoms, the precise underlying neuroanatomical basis for its beneficial effects has remained poorly understood. Therefore, the authors sought to determine whether lesion location is related to responder status following cingulotomy. METHODS The authors reviewed the records of 18 patients who had undergone cingulotomy. Responders were defined as patients who had at least a 35% improvement in the Yale-Brown Obsessive Compulsive Scale (YBOCS) score. The authors traced the lesion sites on T1-weighted MRI scans and used an anatomical registration matrix generated by the imaging software FreeSurfer to superimpose these lesions onto a template brain. Lesion placement was compared between responders and nonresponders. The placement of lesions relative to various anatomical regions was also compared. RESULTS A decrease in postoperative YBOCS score was significantly correlated with more superiorly placed lesions (decrease −0.52, p = 0.0012). While all lesions were centered within 6 mm of the cingulate sulcus, responder lesions were placed more superiorly and posteriorly along the cingulate sulcus (1-way ANOVA, p = 0.003). The proportions of the cingulum bundle, cingulate gyrus, and paracingulate cortex affected by the lesions were the same between responders and nonresponders. However, all responders had lesions covering a larger subregion of Brodmann area (BA) 32. In particular, responder lesions covered a significantly greater proportion of the posterior BA32 (1-way ANOVA, p = 0.0064). CONCLUSIONS Lesions in patients responsive to cingulotomy tended to be located more superiorly and posteriorly and share greater coverage of a posterior subregion of BA32 than lesions in patients not responsive to this treatment.


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