首页> 外文期刊>Biology of Mood & Anxiety Disorders >The Behavioural Inhibition System, anxiety and hippocampal volume in a non-clinical population
【24h】

The Behavioural Inhibition System, anxiety and hippocampal volume in a non-clinical population

机译:非临床人群的行为抑制系统,焦虑和海马体积

获取原文
           

摘要

Background Animal studies have suggested that the hippocampus may play an important role in anxiety as part of the Behavioural Inhibition System (BIS), which mediates reactivity to threat and punishment and can predict an individual’s response to anxiety-relevant cues in a given environment. The aim of the present structural magnetic resonance imaging (MRI) study was to examine the relationship between individual differences in BIS and hippocampal structure, since this has not received sufficient attention in non-clinical populations. Thirty healthy right-handed participants with no history of alcohol or drug abuse, neurological or psychiatric disorders, or traumatic brain injury were recruited (16 male, 14 female, age 18 to 32?years). T1-weighted structural MRI scans were used to derive estimates of total intracranial volume, and hippocampal and amygdala gray matter volume using FreeSurfer. To relate brain structure to Gray’s BIS, participants completed the Sensitivity to Punishment questionnaire. They also completed questionnaires assessing other measures potentially associated with hippocampal volume (Beck Depression Inventory, Negative Life Experience Survey), and two other measures of anxiety (Spielberger Trait Anxiety Inventory and the Beck Anxiety Inventory). Results We found that high scores on the Sensitivity to Punishment scale were positively associated with hippocampal volume, and that this phenomenon was lateralized to the right side. In other words, greater levels of behavioural inhibition (BIS) were positively associated with right hippocampal volume. Conclusions Our data suggest that hippocampal volume is related to the cognitive and affective dimensions of anxiety indexed by the Sensitivity to Punishment, and support the idea that morphological differences in the hippocampal formation may be associated with behavioural inhibition contributions to anxiety.
机译:背景动物研究表明,作为行为抑制系统(BIS)的一部分,海马可能在焦虑中起重要作用,该系统介导对威胁和惩罚的反应,并可以预测个体在给定环境中对与焦虑相关线索的反应。本结构磁共振成像(MRI)研究的目的是检查BIS个体差异与海马结构之间的关系,因为这在非临床人群中并未得到足够的重视。招募了30名健康,惯用右手的参与者,他们没有酗酒或吸毒史,神经系统或精神疾病或颅脑外伤史(男性16例,女性14例,年龄18至32岁)。 T1加权结构MRI扫描用于使用FreeSurfer得出总颅内体积以及海马和杏仁核灰质体积的估计值。为了将大脑结构与Gray的BIS相关联,参与者填写了“对惩罚的敏感性”问卷。他们还完成了问卷调查,评估了可能与海马体积相关的其他指标(贝克抑郁量表,负性生活经历调查)以及其他两种焦虑量表(斯皮尔贝格特质焦虑量表和贝克焦虑量表)。结果我们发现,对惩罚敏感度评分的高分与海马体积呈正相关,并且这种现象向右侧扩散。换句话说,较高的行为抑制水平(BIS)与右海马体积正相关。结论我们的数据表明,海马区体积与惩罚敏感性相关的焦虑的认知和情感维度有关,并支持海马区形成的形态学差异可能与焦虑的行为抑制作用有关。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号