抛物线的功能连接模式

IF 4.7 2区 心理学 Q1 BEHAVIORAL SCIENCES Behavioral and Brain Functions Pub Date : 2023-12-19 DOI:10.1186/s12993-023-00225-8
Divesh Thaploo, Akshita Joshi, Eren Yilmaz, Duzgun Yildirim, Aytug Altundag, Thomas Hummel
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引用次数: 0

摘要

嗅觉障碍是一种定性嗅觉功能障碍,表现为在有气味源的情况下 "对气味的感知失真"。本研究的目的是利用静息状态功能连接来获得更多有关中枢神经系统水平上嗅觉处理改变的信息。该研究对 145 名副嗅觉症患者(年龄在 20-76 岁之间;90 名女性)进行了横断面研究。根据标准化问卷对患者是否患有嗜嗅症以及嗜嗅症的程度进行了诊断。参与者还接受了使用 "嗅觉棒 "进行的嗅觉测试。然后,他们使用 3 T 磁共振成像扫描仪进行静息状态扫描,同时固定在一个十字架上。全脑分析显示,显著性和执行控制网络的功能连接性降低。基于兴趣区的分析也证实了初级和次级嗅觉灵敏区(颞极、边上回和右侧眶额叶皮层;背外侧前额叶皮层和右侧梨状皮层)之间的功能连接性降低。患有副嗅觉症的参与者表现出记忆、决策中心以及主嗅区和次嗅区之间的信息流减少。
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Functional connectivity patterns in parosmia
Parosmia is a qualitative olfactory dysfunction presenting as “distorted odor perception” in presence of an odor source. Aim of this study was to use resting state functional connectivity to gain more information on the alteration of olfactory processing at the level of the central nervous system level. A cross sectional study was performed in 145 patients with parosmia (age range 20–76 years; 90 women). Presence and degree of parosmia was diagnosed on the basis of standardized questionnaires. Participants also received olfactory testing using the “Sniffin’ Sticks”. Then they underwent resting state scans using a 3 T magnetic resonance imaging scanner while fixating on a cross. Whole brain analyses revealed reduced functional connectivity in salience as well as executive control networks. Region of interest-based analyses also supported reduced functional connectivity measures between primary and secondary olfactory eloquent areas (temporal pole, supramarginal gyrus and right orbitofrontal cortex; dorso-lateral pre-frontal cortex and the right piriform cortex). Participants with parosmia exhibited a reduced information flow between memory, decision making centers, and primary and secondary olfactory areas.
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来源期刊
Behavioral and Brain Functions
Behavioral and Brain Functions 医学-行为科学
CiteScore
5.90
自引率
0.00%
发文量
11
审稿时长
6-12 weeks
期刊介绍: A well-established journal in the field of behavioral and cognitive neuroscience, Behavioral and Brain Functions welcomes manuscripts which provide insight into the neurobiological mechanisms underlying behavior and brain function, or dysfunction. The journal gives priority to manuscripts that combine both neurobiology and behavior in a non-clinical manner.
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