The therapeutic effects of theta burst stimulation on negative symptoms in chronic schizophrenia using functional near-infrared spectroscopy

IF 3.2 2区 医学 Q1 PSYCHIATRY Journal of psychiatric research Pub Date : 2025-01-01 DOI:10.1016/j.jpsychires.2024.12.010
Chunying Gao , Guangjian Li , Zhou Wang , Qingwei Jiang , Rongrong He , Jingjing Sun , Yangyang You , Yingzhi Zhu , Jing Zhao , Xiangrong Zhang , Chao Zhou
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Abstract

Background

To explore the efficacy of theta burst stimulation (TBS) on the negative symptoms in patients with chronic schizophrenia, and to investigate the alterations of local brain activity using functional near-infrared spectroscopy (fNIRS).

Methods

100 patients with chronic schizophrenia were enrolled and divided into the real group (50 subjects) and sham group (50 subjects). The real group was given real stimulation of TBS for 4 weeks, and the sham group was sham-stimulated with the same site. The Positive and Negative Symptom Scale (PANSS) and the Scale for Assessment of Negative Symptoms (SANS) were used to assess the clinical symptoms. fNIRS was used to detect the amplitude of low frequency fluctuation (ALFF) of cortical hemoglobin before and after TBS. Repeated analysis of variance (ANOVA) was used to compare the changes in clinical features between the two groups. Correlation analysis was used to explore the associations between altered ALFF and clinical features.

Results

Repeated ANOVA revealed that the interaction effect of group∗time showed significant influence on the scores of PANSS-total, PANSS-negative, and SANS in the two groups of patients. Test of within-subjects effects showed that significant reductions in scores of PANSS-total, PANSS-negative, and SANS were found between the real group and sham group after TBS, as well as in the real group before and after TBS. fNIRS revealed that the normalized ALFF (zALFF) of deoxyhemoglobin in the left dorsolateral prefrontal cortex was decreased in the real group after TBS. Furthermore, the zALFF of oxyhemoglobin was increased in the right and left frontal pole regions, and decreased in the right superior temporal gyrus in the real group compared to the sham group after TBS. Correlation analysis showed that the alterations of zALFF in frontal regions after treatment were associated with the improvement of negative symptoms in chronic schizophrenia patients.

Conclusions

Short-term TBS is effective in the improvement of negative symptoms of chronic schizophrenia. fNIRS could reveal the changes in brain activity after TBS treatment, providing an effective technique for exploring the efficacy of TBS in schizophrenia.
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利用功能性近红外光谱仪研究θ爆发刺激对慢性精神分裂症阴性症状的治疗效果。
研究背景探讨θ脉冲刺激(TBS)对慢性精神分裂症患者阴性症状的疗效,并利用功能性近红外光谱(fNIRS)研究局部脑活动的改变。真实组接受为期 4 周的 TBS 真实刺激,假象组接受相同部位的假刺激。阳性和阴性症状量表(PANSS)和阴性症状评估量表(SANS)用于评估临床症状,fNIRS用于检测TBS前后大脑皮层血红蛋白的低频波动幅度(ALFF)。重复方差分析(ANOVA)用于比较两组患者临床特征的变化。相关分析用于探讨 ALFF 变化与临床特征之间的关联:重复方差分析显示,组别∗时间的交互效应对两组患者的 PANSS 总分、PANSS 阴性分和 SANS 分数有显著影响。受试者内效应检验表明,在 TBS 后,真实组与假性组之间以及真实组在 TBS 之前和之后的 PANSS 总分、PANSS 阴性分和 SANS 分数均有显著降低。 fNIRS 显示,在 TBS 后,真实组患者左侧背外侧前额叶皮层脱氧血红蛋白的归一化 ALFF(zALFF)有所降低。此外,与假组相比,TBS 后真实组左右额极区氧合血红蛋白的 zALFF 增加,右颞上回减少。相关分析表明,治疗后额叶区zALFF的改变与慢性精神分裂症患者阴性症状的改善有关:fNIRS可揭示TBS治疗后脑活动的变化,为探讨TBS对精神分裂症的疗效提供了有效的技术手段。
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来源期刊
Journal of psychiatric research
Journal of psychiatric research 医学-精神病学
CiteScore
7.30
自引率
2.10%
发文量
622
审稿时长
130 days
期刊介绍: Founded in 1961 to report on the latest work in psychiatry and cognate disciplines, the Journal of Psychiatric Research is dedicated to innovative and timely studies of four important areas of research: (1) clinical studies of all disciplines relating to psychiatric illness, as well as normal human behaviour, including biochemical, physiological, genetic, environmental, social, psychological and epidemiological factors; (2) basic studies pertaining to psychiatry in such fields as neuropsychopharmacology, neuroendocrinology, electrophysiology, genetics, experimental psychology and epidemiology; (3) the growing application of clinical laboratory techniques in psychiatry, including imagery and spectroscopy of the brain, molecular biology and computer sciences;
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