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口腔种植修复体:新牙带来更聪慧的头脑。

Oral Implant-Prostheses: New Teeth for a Brighter Brain.

作者信息

De Cicco Vincenzo, Barresi Massimo, Tramonti Fantozzi Maria Paola, Cataldo Enrico, Parisi Vincenzo, Manzoni Diego

机构信息

Department of Translational Research, University of Pisa, Pisa, Italy.

Department of Drug Sciences, University of Catania, Catania, Italy.

出版信息

PLoS One. 2016 Feb 26;11(2):e0148715. doi: 10.1371/journal.pone.0148715. eCollection 2016.

Abstract

Several studies have demonstrated that chewing can be regarded as a preventive measure for cognitive impairment, whereas masticatory deficiency, associated with soft-diet feeding, is a risk factor for the development of dementia. At present the link between orofacial sensorimotor activity and cognitive functions is unknown. In subjects with unilateral molar loss we have shown asymmetries in both pupil size and masticatory muscles electromyographic (EMG) activity during clenching: the molar less side was characterized by a lower EMG activity and a smaller pupil. Since implant-prostheses, greatly reduced both the asymmetry in EMG activity and in pupil's size, trigeminal unbalance, leading to unbalance in the activity of the Locus Coeruleus (LC), may be responsible for the pupil's asymmetry. According to the findings obtained in animal models, we propose that the different activity of the right and left LC may induce an asymmetry in brain activity, thus leading to cognitive impairment. According to this hypothesis, prostheses improved the performance in a complex sensorimotor task and increased the mydriasis associated with haptic tasks. In conclusion, the present study indicates that the implant-prosthesis therapy, which reduces the unbalance of trigeminal proprioceptive afferents and the asymmetry in pupil's size, may improve arousal, boosting performance in a complex sensorimotor task.

摘要

多项研究表明,咀嚼可被视为预防认知障碍的一种措施,而与软食喂养相关的咀嚼功能不足是痴呆症发展的一个风险因素。目前,口面部感觉运动活动与认知功能之间的联系尚不清楚。在单侧磨牙缺失的受试者中,我们发现在紧咬时瞳孔大小和咀嚼肌肌电图(EMG)活动均存在不对称性:磨牙较少的一侧其EMG活动较低且瞳孔较小。由于种植修复体极大地减少了EMG活动和瞳孔大小的不对称性,三叉神经失衡,导致蓝斑(LC)活动失衡,可能是瞳孔不对称的原因。根据在动物模型中获得的研究结果,我们提出左右LC的不同活动可能会导致大脑活动的不对称性,从而导致认知障碍。根据这一假设,修复体改善了复杂感觉运动任务中的表现,并增加了与触觉任务相关的瞳孔散大。总之,本研究表明,种植修复体治疗可减少三叉神经本体感觉传入的失衡和瞳孔大小的不对称性,可能会改善觉醒状态,提高复杂感觉运动任务中的表现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/24b1/4771091/1b3af7868cc6/pone.0148715.g001.jpg

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