Capturing Brain Response Patterns to Subcallosal Cingulate Deep Brain Stimulation Using Cycling fMRI: A Proof-of-Concept Study: Acquisition de schémas cérébraux de réponse à la stimulation cérébrale profonde ciblant le cortex cingulaire subgénual à l'aide de l'IRMf en cycles : étude de validation.

IF 3.8 3区 医学 Q2 PSYCHIATRY
Sarah A Iskin, Gavin J B Elias, Asma Naheed, Jessica Pinto, Uyiosa Omere, Sidney H Kennedy, Aaron Loh, Afis Ajala, Brendan Santyr, Alexandre Boutet, Andres M Lozano, Jürgen Germann
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引用次数: 0

Abstract

BackgroundDeep brain stimulation targeting the subcallosal cingulate (SCC-DBS) is a promising therapy for treatment-resistant depression. However, the lack of a consistent, rapid behavioural response to SCC-DBS complicates the selection of optimal stimulation settings following implantation, requiring a prolonged and burdensome trial-and-error process. Immediate biomarkers of effective stimulation could overcome this problem.MethodsIn this proof-of-concept study, three patients with SCC-DBS implants were scanned at 3 T using a block-design paradigm in which stimulation alternated between "ON" and "OFF" states in 30-s cycles during a single 6.5-min acquisition. Scans were performed using participants' clinically optimized parameters. Blood-oxygen-level-dependent (BOLD) response maps were generated by contrasting DBS-ON and DBS-OFF conditions, and exploratory correlations with clinical outcome-indexed by percentage reduction in Hamilton Depression Rating Scale scores at 12 months-were also assessed.ResultsContrasting stimulation settings enabled the identification of regional BOLD signal changes associated with DBS, revealing consistent hemodynamic changes in several brain regions during active stimulation. Specifically, the precuneus, posterior cingulate cortex, middle frontal gyrus, and frontal pole exhibited decreased BOLD responses during active DBS, while the occipital cortex, middle temporal gyrus, inferior parietal lobule, and superior frontal gyrus showed increased BOLD responses. Exploratory analysis further suggested a potential correlation between precuneus BOLD signal change and clinical improvement (R = -0.98, ppermute = 0.09).ConclusionThese findings speak to the utility of block-design fMRI with cycling DBS stimulation as a tool to identify objective, brain-based biomarkers of effective SCC-DBS, potentially expediting stimulation parameter selection and therapeutic optimization.

使用循环fMRI捕捉胼胝体下扣带深度大脑刺激的大脑反应模式:概念证明研究:在循环中使用MRI获取针对胼胝体下扣带皮层的脑深部刺激的大脑反应模式:验证研究。
针对胼胝体下扣带(SCC-DBS)的深部脑刺激是治疗难治性抑郁症的一种很有前景的治疗方法。然而,由于对SCC-DBS缺乏一致的、快速的行为反应,使得植入后最佳刺激设置的选择变得复杂,需要一个漫长而繁琐的试错过程。有效刺激的即时生物标志物可以克服这个问题。在这项概念验证研究中,使用块设计范式对3名SCC-DBS植入物患者进行3t扫描,在单次6.5分钟的采集过程中,刺激在30秒周期内在“开”和“关”状态之间交替。使用参与者的临床优化参数进行扫描。通过对比DBS-ON和DBS-OFF条件生成血氧水平依赖性(BOLD)反应图,并评估与临床结果的探索性相关性(以12个月时汉密尔顿抑郁评定量表评分降低百分比为指标)。结果对比刺激设置能够识别与DBS相关的区域BOLD信号变化,揭示了在主动刺激期间几个脑区域一致的血流动力学变化。具体而言,在DBS活动期间,楔前叶、后扣带皮层、额中回和额极的BOLD反应下降,而枕叶皮层、颞中回、顶叶下小叶和额上回的BOLD反应增加。探索性分析进一步提示楔前叶BOLD信号变化与临床改善之间存在潜在的相关性(R = -0.98, permute = 0.09)。这些发现说明了循环DBS刺激的块组设计fMRI作为识别有效SCC-DBS的客观、基于大脑的生物标志物的工具的实用性,可能加快刺激参数的选择和治疗优化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
7.00
自引率
2.50%
发文量
69
审稿时长
6-12 weeks
期刊介绍: Established in 1956, The Canadian Journal of Psychiatry (The CJP) has been keeping psychiatrists up-to-date on the latest research for nearly 60 years. The CJP provides a forum for psychiatry and mental health professionals to share their findings with researchers and clinicians. The CJP includes peer-reviewed scientific articles analyzing ongoing developments in Canadian and international psychiatry.
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