Alteration in EEG Delta and Beta Power During Working Memory Performance Differentiates Patients with Parkinson's Disease with and without Dementia.

IF 1.8 4区 医学 Q3 CLINICAL NEUROLOGY Annals of Indian Academy of Neurology Pub Date : 2024-11-01 Epub Date: 2024-12-10 DOI:10.4103/aian.aian_198_24
Anita Pal, Madhuri Behari, Ratna Sharma
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Abstract

Background and objectives: Working memory (WM) impairment is a common and progressive abnormality in Parkinson's disease (PD), which ultimately leads to dementia. Individuals with PD exhibit altered electroencephalogram (EEG) patterns while engaging in tasks that require WM. The study examined the EEG patterns associated with WM maintenance in PD patients.

Methods: The study consisted of two groups of PD patients with a sign of dementia (PDD) who had a Mini Mental State Examination (MMSE) score ≤24, PD patients with no sign of dementia (PDND) with an MMSE score >24, and a group of healthy individuals serving as controls (CON). We obtained EEG during a word memorization task using a 128-channel system. The spectral power of the EEG was computed using the fast Fourier transformation algorithm.

Results: Compared to both PDND and CON groups, PDD group exhibited higher power in the delta and beta frequency bands. Conversely, there was a notable decrease in power in the gamma band in both the PDD and PDND groups compared to the CON group. In addition, the PDD group exhibited higher power in the gamma band compared to the PDND group. Power in the alpha (LA1, LA2, and UA) and theta bands was greater in PDND and PDD compared to CON, but was similar between PDND and PDD groups.

Conclusion: While performing WM tasks, PDD exhibits increased delta and beta power. These findings can be used as a quantitative biomarker to evaluate the severity of initial WM impairments, which could potentially develop into dementia in the future.

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工作记忆表现中EEG δ和β功率的改变可区分帕金森病患者伴和不伴痴呆
背景与目的:工作记忆(WM)损伤是帕金森病(PD)中一种常见的进行性异常,最终导致痴呆。PD患者在从事需要WM的任务时表现出脑电图(EEG)模式的改变。该研究检查了PD患者与WM维持相关的脑电图模式。方法:研究分为两组,一组是有痴呆症状的PD患者(PDD), MMSE评分≤24分;另一组是无痴呆症状的PD患者(PDD), MMSE评分为bbb24分;另一组是健康个体作为对照组(CON)。我们使用128通道系统在单词记忆任务中获得脑电图。利用快速傅立叶变换算法计算脑电信号的谱功率。结果:与PDD组和CON组相比,PDD组在δ和β频段表现出更高的功率。相反,与CON组相比,PDD组和pnd组的伽马波段功率明显下降。此外,与PDD组相比,PDD组在伽马波段表现出更高的功率。与CON相比,pnd和PDD的α (LA1, LA2和UA)和θ波段功率更大,但pnd组和PDD组之间相似。结论:在执行WM任务时,PDD表现出增加的δ和β功率。这些发现可以作为一种定量的生物标志物来评估初始WM损伤的严重程度,这些损伤在未来可能会发展为痴呆。
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来源期刊
Annals of Indian Academy of Neurology
Annals of Indian Academy of Neurology Nervous System Diseases-
CiteScore
2.20
自引率
11.80%
发文量
293
审稿时长
29 weeks
期刊介绍: The journal has a clinical foundation and has been utilized most by clinical neurologists for improving the practice of neurology. While the focus is on neurology in India, the journal publishes manuscripts of high value from all parts of the world. Journal publishes reviews of various types, original articles, short communications, interesting images and case reports. The journal respects the scientific submission of its authors and believes in following an expeditious double-blind peer review process and endeavors to complete the review process within scheduled time frame. A significant effort from the author and the journal perhaps enables to strike an equilibrium to meet the professional expectations of the peers in the world of scientific publication. AIAN believes in safeguarding the privacy rights of human subjects. In order to comply with it, the journal instructs all authors when uploading the manuscript to also add the ethical clearance (human/animals)/ informed consent of subject in the manuscript. This applies to the study/case report that involves animal/human subjects/human specimens e.g. extracted tooth part/soft tissue for biopsy/in vitro analysis.
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