首页> 外文期刊>International journal of psychophysiology: official journal of the International Organization of Psychophysiology >Excessive compensatory recruitment as a compulsory neurophysiological mechanism in Very Early Alzheimer's Disease as compared to Mild Vascular Dementia and to age-matched normal controls.
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Excessive compensatory recruitment as a compulsory neurophysiological mechanism in Very Early Alzheimer's Disease as compared to Mild Vascular Dementia and to age-matched normal controls.

机译:与轻度血管性痴呆和与年龄匹配的正常对照相比,在极早的阿尔茨海默氏病中过度代偿性招募是一种强制性的神经生理机制。

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摘要

This paper supports the theoretical position of the existence of neurophysiological mechanisms of excessive compensatory recruitment of neuronal pools in Very Early Alzheimer's Disease (VEAD) as compared to patients with Mild Vascular Dementia (MVD) and age-matched normal controls. In addition, considering that the very early recognition of Alzheimer's disease is of paramount importance for diagnosis, treatment and clinical follow-up, in the present investigation, we have used Topographic Mapping of ERPs to our Memory Workload Paradigm to delineate excessive compensatory recruitment as a sensitive neurophysiological marker for the accurate detection of VEAD as compared to MVD and to age-matched normal controls. The present findings with the Topographic Mapping of ERPs indicate that VEAD patients displayed significantly larger amplitudes with memory loads as compared to MVD patients (p=0.0001) and to age-matched normal controls (p=0.0001). VEAD patients displayed abnormally high P450 amplitudes (p=0.0001) and shorter P450 latencies (p=0.0001) over parietal and occipital sites as opposed to age-matched normal controls. In addition, contrary to normal controls, VEAD patients exhibited longer latencies over pre-frontal and frontal regions (p=0.0001). On the other hand, P450 latencies for VEAD and MVD patients were not significantly different over anterior and posterior regions (p>0.05). These findings suggest that the delayed P450 latencies found over pre-frontal and frontal regions in both patient populations, reflect the partial disconnection of their neuronal pathways from limbic structures. Specifically, in VEAD patients, this aspect, along with the abnormally high amplitudes found over parietal and occipital regions, support the conclusion that VEAD patients allocate much more cerebral physiological resources and effort to accomplish the memory workload tasks as opposed to age-matched normal controls and to MVD patients. As such, in VEAD, the excessive recruitment of compensatory neuronal pools becomes a compulsory neurophysiological mechanism to meet the demanding tasks of our Memory Workload Paradigm.
机译:本文支持与轻度血管性痴呆(MVD)和年龄相匹配的正常对照相比,在极早阿尔茨海默氏病(VEAD)中过度补充募集神经元池的神经生理机制的理论地位。此外,考虑到阿尔茨海默氏病的早期识别对于诊断,治疗和临床随访至关重要,因此在本研究中,我们使用ERP的地形图映射到我们的记忆工作量范式来描述过多的代偿性招募。灵敏的神经生理标记物,与MVD和年龄匹配的正常对照相比,可准确检测VEAD。 ERPs地形图的当前发现表明,与MVD患者(p = 0.0001)和与年龄匹配的正常对照(p = 0.0001)相比,VEAD患者的记忆负荷表现出明显更大的幅度。与年龄匹配的正常对照相比,VEAD患者在顶叶和枕叶部位显示异常高的P450振幅(p = 0.0001)和较短的P450潜伏期(p = 0.0001)。此外,与正常对照相反,VEAD患者在额前和额叶区域的潜伏期更长(p = 0.0001)。另一方面,VEAD和MVD患者的P450潜伏期在前后区域均无显着差异(p> 0.05)。这些发现表明,在两个患者人群中,在额前和额叶区域发现的P450潜伏期延迟反映了其神经元通路与边缘结构的部分断开。具体而言,在VEAD患者中,这一方面以及在顶叶和枕叶区域异常高的振幅,支持以下结论:与年龄匹配的正常对照相比,VEAD患者分配了更多的大脑生理资源和精力来完成记忆工作量任务和MVD患者。因此,在VEAD中,过度补充代偿性神经元池已成为一种强制性的神经生理机制,可以满足我们的记忆工作量范式的艰巨任务。

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