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利用功能磁共振成像实时捕捉精神分裂症患者幻觉症状:不存在持续时间依赖性活动。

Real-Time Symptom Capture of Hallucinations in Schizophrenia with fMRI: Absence of Duration-Dependent Activity.

作者信息

Gill Karanvir, Percival Chantal, Roes Meighen, Arreaza Leo, Chinchani Abhijit, Sanford Nicole, Sena Walter, Mohammadsadeghi Homa, Menon Mahesh, Hughes Matthew, Carruthers Sean, Sumner Philip, Woods Will, Jardri Renaud, Sommer Iris E, Rossell Susan L, Woodward Todd S

机构信息

BC Mental Health and Addictions Research Institute, Vancouver, BC, Canada.

Department of Psychiatry, University of British Columbia, Vancouver, BC, Canada.

出版信息

Schizophr Bull Open. 2022 Jul 28;3(1):sgac050. doi: 10.1093/schizbullopen/sgac050. eCollection 2022 Jan.

Abstract

BACKGROUND

While advances in the field of functional magnetic resonance imaging (fMRI) provide new opportunities to study brain networks underlying the experience of hallucinations in psychosis, there are methodological challenges unique to symptom-capture studies.

STUDY DESIGN

We extracted brain networks activated during hallucination-capture for schizophrenia patients when fMRI data collected from two sites was merged (combined = 27). A multidimensional analysis technique was applied, which would allow separation of brain networks involved in the hallucinatory experience itself from those involved in the motor response of indicating the beginning and end of the perceived hallucinatory experience. To avoid reverse inference when attributing a function (e.g., a hallucination) to anatomical regions, it was required that longer hallucinatory experiences produce extended brain responses relative to shorter.

STUDY RESULTS

For radio-speech sound files, an auditory perception brain network emerged, and displayed speech-duration-dependent hemodynamic responses (HDRs). However, in the hallucination-capture blocks, no network showed hallucination-duration-dependent HDRs, but a retrieved network that was anatomically classified as motor response emerged.

CONCLUSIONS

During symptom capture of hallucinations during fMRI, no HDR showed duration dependence, but a brain network anatomically matching the motor response network was retrieved. Previous reports on brain networks detected by fMRI during hallucination capture are reviewed in this context; namely, that the brain networks interpreted as involved in hallucinations may in fact be involved only in the motor response indicating the onset of the hallucination.

摘要

背景

虽然功能磁共振成像(fMRI)领域的进展为研究精神病幻觉体验背后的脑网络提供了新机会,但症状捕捉研究存在独特的方法学挑战。

研究设计

我们合并了从两个地点收集的fMRI数据(共27例),提取了精神分裂症患者在幻觉捕捉期间激活的脑网络。应用了一种多维分析技术,该技术可以将参与幻觉体验本身的脑网络与参与指示感知到的幻觉体验开始和结束的运动反应的脑网络分开。为了避免在将功能(例如幻觉)归因于解剖区域时进行反向推断,要求较长的幻觉体验相对于较短的幻觉体验产生更长时间的脑反应。

研究结果

对于无线电语音声音文件,出现了一个听觉感知脑网络,并显示出与语音持续时间相关的血液动力学反应(HDR)。然而,在幻觉捕捉块中,没有网络显示出与幻觉持续时间相关的HDR,但出现了一个在解剖学上归类为运动反应的检索网络。

结论

在fMRI期间对幻觉进行症状捕捉时,没有HDR显示出持续时间依赖性,但检索到了一个在解剖学上与运动反应网络匹配的脑网络。在此背景下,回顾了先前关于fMRI在幻觉捕捉期间检测到的脑网络的报告;也就是说,被解释为参与幻觉的脑网络实际上可能仅参与指示幻觉发作的运动反应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2e2b/11206057/f0e3845db809/sgac050_fig1.jpg

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