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双相情感障碍心境状态下通过定量 T1ρ 映射检测到的小脑和基底节的改变。

Alterations of the cerebellum and basal ganglia in bipolar disorder mood states detected by quantitative T1ρ mapping.

机构信息

Department of Radiology, University of Iowa, Iowa City, IA, USA.

Department of Electrical and Computer Engineering, University of Iowa, Iowa City, IA, USA.

出版信息

Bipolar Disord. 2018 Jun;20(4):381-390. doi: 10.1111/bdi.12581. Epub 2018 Jan 7.

Abstract

OBJECTIVES

Quantitative mapping of T1 relaxation in the rotating frame (T1ρ) is a magnetic resonance imaging technique sensitive to pH and other cellular and microstructural factors, and is a potentially valuable tool for identifying brain alterations in bipolar disorder. Recently, this technique identified differences in the cerebellum and cerebral white matter of euthymic patients vs healthy controls that were consistent with reduced pH in these regions, suggesting an underlying metabolic abnormality. The current study built upon this prior work to investigate brain T1ρ differences across euthymic, depressed, and manic mood states of bipolar disorder.

METHODS

Forty participants with bipolar I disorder and 29 healthy control participants matched for age and gender were enrolled. Participants with bipolar disorder were imaged in one or more mood states, yielding 27, 12, and 13 imaging sessions in euthymic, depressed, and manic mood states, respectively. Three-dimensional, whole-brain anatomical images and T1ρ maps were acquired for all participants, enabling voxel-wise evaluation of T1ρ differences between bipolar mood state and healthy control groups.

RESULTS

All three mood state groups had increased T1ρ relaxation times in the cerebellum compared to the healthy control group. Additionally, the depressed and manic groups had reduced T1ρ relaxation times in and around the basal ganglia compared to the control and euthymic groups.

CONCLUSIONS

The study implicated the cerebellum and basal ganglia in the pathophysiology of bipolar disorder and its mood states, the roles of which are relatively unexplored. These findings motivate further investigation of the underlying cause of the abnormalities, and the potential role of altered metabolic activity in these regions.

摘要

目的

在旋转框架中定量绘制 T1 弛豫(T1ρ)是一种对 pH 值及其他细胞和微观结构因素敏感的磁共振成像技术,它可能是识别双相情感障碍大脑改变的有用工具。最近,该技术在正常情绪的患者与健康对照组之间的小脑和大脑白质中发现了与这些区域 pH 值降低一致的差异,这表明存在潜在的代谢异常。本研究在之前的工作基础上,进一步调查了双相情感障碍正常情绪、抑郁和躁狂情绪状态下的大脑 T1ρ 差异。

方法

共有 40 名双相 I 型障碍患者和 29 名年龄和性别匹配的健康对照者参与了研究。双相障碍患者在一种或多种情绪状态下进行了成像,分别在正常情绪、抑郁和躁狂情绪状态下获得了 27、12 和 13 次成像。所有参与者均采集了三维全脑解剖图像和 T1ρ 图谱,以便对双相情绪状态组与健康对照组之间的 T1ρ 差异进行体素分析。

结果

与健康对照组相比,所有三种情绪状态组的小脑 T1ρ 弛豫时间均增加。此外,与对照组和正常情绪组相比,抑郁组和躁狂组的基底节及其周围的 T1ρ 弛豫时间减少。

结论

该研究表明小脑和基底节参与了双相情感障碍及其情绪状态的病理生理学,但其作用尚未得到充分探索。这些发现促使人们进一步研究这些异常的潜在原因,以及这些区域代谢活动改变的潜在作用。

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