Case Report: Modulation of Effective Connectivity in Brain Networks after Prosthodontic Tooth Loss Repair

Signals Pub Date : 2022-08-05 DOI:10.3390/signals3030033
A. Muroni, Daniel Barbar, M. Fraschini, M. Monticone, G. Defazio, F. Marrosu
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引用次数: 1

Abstract

INTRODUCTION. Recent neuroimaging studies suggest that dental loss replacements induce changes in neuroplasticity as well as in correlated connectivity between brain networks. However, as the typical temporal delay in detecting brain activity by neuroimaging cannot account for the influence one neural system exerts over another in a context of real activation (“effective” connectivity), it seems of interest to approach this dynamic aspect of brain networking in the time frame of milliseconds by exploiting electroencephalographic (EEG) data. MATERIAL AND METHODS. The present study describes one subject who received a new prosthodontic provisional implant in substitution for previous dental repairs. Two EEG sessions led with a portable device were recorded before and after positioning the new dental implant. By following MATLAB-EEGLAB processing supported by the plugins FIELDTRIP and SIFT, the independent component analysis (ICA) derived from EEG raw signals was rendered as current density fields and interpolated with the dipoles generated by each electrode for a dynamic study of the effective connectivity. One more recording session was undertaken six months after the placement of the final implant. RESULTS. Compared to the baseline, the new prosthodontic implant induced a novel modulation of the neuroplasticity in sensory-motor areas which was maintained following the definitive implant after six months, as revealed by changes in the effective connectivity from the basal strong enslavement of a single brain area over the others, to an equilibrate inter-related connectivity evenly distributed along the frontotemporal regions of both hemispheres. CONCLUSIONS. The rapid shift of the effective connectivity after positioning the new prosthodontic implant and its substantial stability after six months suggest the possibility that synaptic modifications, induced by novel sensory motor conditions, modulate the neuroplasticity and reshape the final dynamic frame of the interarea connectivity. Moreover, given the viability of the EEG practice, this approach could be of some interest in assessing the association between oral pathophysiology and neuronal networking.
病例报告:修复牙缺失修复后大脑网络有效连接的调节
引言。最近的神经影像学研究表明,牙齿缺失的替代物会引起神经可塑性以及大脑网络之间相关连接的变化。然而,由于通过神经成像检测大脑活动的典型时间延迟无法解释在真实激活(“有效”连接)的情况下一个神经系统对另一个系统施加的影响,因此通过利用脑电图(EEG)数据在毫秒的时间范围内处理大脑网络的这一动态方面似乎很有兴趣。材料和方法。本研究描述了一名受试者,他接受了一种新的口腔修复临时植入物来代替以前的牙齿修复。在放置新的牙科植入物前后,用便携式设备记录了两次脑电图。通过遵循插件FIELDRIP和SIFT支持的MATLAB-EEGLAB处理,从EEG原始信号导出的独立分量分析(ICA)被呈现为电流密度场,并用每个电极产生的偶极子进行插值,以动态研究有效连接性。在植入最后一个植入物六个月后,又进行了一次记录。结果。与基线相比,新的修复植入物诱导了感觉运动区域的神经可塑性的新调节,这种调节在最终植入后六个月后得以维持,正如从单个大脑区域相对于其他区域的基础强奴役的有效连接的变化所揭示的那样,以平衡沿两个半球的额颞叶区域均匀分布的相互关联的连接性。结论。定位新的口腔修复植入物后,有效连接的快速转变及其六个月后的实质稳定性表明,由新的感觉运动条件诱导的突触修饰可能会调节神经可塑性,并重塑区域间连接的最终动态框架。此外,考虑到脑电图实践的可行性,这种方法可能对评估口腔病理生理学和神经元网络之间的关系有一定的兴趣。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
3.20
自引率
0.00%
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审稿时长
11 weeks
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