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系统评价应用 fMRI 技术评估实验性牙齿正畸移动对脑激活的影响。

Systematic review on effects of experimental orthodontic tooth displacement on brain activation assessed by fMRI.

机构信息

Department of Orthodontics, RWTH Aachen University Hospital, Germany.

RWTH Aachen University, Germany.

出版信息

Clin Exp Dent Res. 2024 Apr;10(2):e879. doi: 10.1002/cre2.879.

Abstract

BACKGROUND

Orthodontic treatment is often accompanied by discomfort and pain in patients, which are believed to be a result of orthodontic tooth displacement caused by the mechanical forces exerted by the orthodontic appliances on the periodontal tissues. These lead to change blood oxygen level dependent response in related brain regions.

OBJECTIVE

This systematic review aims to assess the impact of experimental orthodontic tooth displacement on alterations in central nervous system activation assessed by tasked based and resting state fMRI.

MATERIALS AND METHODS

A literature search was conducted using online databases, following PRISMA guidelines and the PICO framework. Selected studies utilized magnetic resonance imaging to examine the brain activity changes in healthy participants after the insertion of orthodontic appliances.

RESULTS

The initial database screening resulted in 791 studies. Of these, 234 were duplicates and 547 were deemed irrelevant considering the inclusion and exclusion criteria. Of the ten remaining potential relevant studies, two were excluded during full-text screening. Eight prospective articles were eligible for further analysis. The included studies provided evidence of the intricate interplay between orthodontic treatment, pain perception, and brain function. All of the participants in the included studies employed orthodontic separators in short-term experiments to induce tooth displacement during the early stage of orthodontic treatment. Alterations in brain activation were observed in brain regions, functional connectivity and brain networks, predominantly affecting regions implicated in nociception (thalamus, insula), emotion (insula, frontal areas), and cognition (frontal areas, cerebellum, default mode network).

CONCLUSIONS

The results suggest that orthodontic treatment influences beyond the pain matrix and affects other brain regions including the limbic system. Furthermore, understanding the orthodontically induced brain activation can aid in development of targeted pain management strategies that do not adversely affect orthodontic tooth movement. Due to the moderate to serious risk of bias and the heterogeneity among the included studies, further clinical trials on this subject are recommended.

摘要

背景

正畸治疗常伴有患者的不适和疼痛,这被认为是正畸矫治器对牙周组织施加机械力导致正畸牙移动的结果。这些机械力导致相关脑区血氧水平依赖反应的改变。

目的

本系统评价旨在评估实验性正畸牙移动对任务态和静息态 fMRI 评估的中枢神经系统激活变化的影响。

材料和方法

按照 PRISMA 指南和 PICO 框架,使用在线数据库进行文献检索。选择的研究使用磁共振成像来检查健康参与者在佩戴正畸矫治器后大脑活动的变化。

结果

初步数据库筛选得到 791 项研究。其中 234 项是重复的,547 项根据纳入和排除标准认为不相关。在剩下的 10 项可能相关的研究中,有 2 项在全文筛选时被排除。其余 8 项前瞻性文章符合进一步分析的条件。纳入的研究提供了正畸治疗、疼痛感知和大脑功能之间复杂相互作用的证据。纳入研究的所有参与者都在短期实验中使用正畸分牙器在正畸治疗的早期阶段诱导牙齿移动。在与疼痛感知相关的脑区(丘脑、脑岛)、与情绪相关的脑区(脑岛、额区)和与认知相关的脑区(额区、小脑、默认模式网络)观察到脑激活的改变。

结论

结果表明,正畸治疗的影响超出了疼痛矩阵,影响了包括边缘系统在内的其他脑区。此外,了解正畸引起的大脑激活有助于开发靶向疼痛管理策略,而不会对正畸牙移动产生不利影响。由于纳入研究存在中度至严重的偏倚风险和异质性,建议对此主题进行进一步的临床试验。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a622/10982672/279ccea50cf5/CRE2-10-e879-g001.jpg

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