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Assessment of spontaneous cardiovascular oscillations in Parkinson's disease

机译:帕金森氏病自发性心血管振荡的评估

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Parkinson's disease (PD) has been reported to involve postganglionic sympathetic failure and a wide spectrum of autonomic dysfunctions including cardiovascular, sexual, bladder, gastrointestinal and sudomotor abnormalities. While these symptoms may have a significant impact on daily activities, as well as quality of life, the evaluation of autonomic nervous system (ANS) dysfunctions relies on a large and expensive battery of autonomic tests only accessible in highly specialized laboratories. In this paper we aim to devise a comprehensive computational assessment of disease-related heartbeat dynamics based on instantaneous, time-varying estimates of spontaneous (resting state) cardiovascular oscillations in PD. To this end, we combine standard ANS-related heart rate variability (HRV) metrics with measures of instantaneous complexity (dominant Lyapunov exponent and entropy) and higher-order statistics (bispectra). Such measures are computed over 600-s recordings acquired at rest in 29 healthy subjects and 30 PD patients. The only significant group-wise differences were found in the variability of the dominant Lyapunov exponent. Also, the best PD vs. healthy controls classification performance (balanced accuracy: 73.47%) was achieved only when retaining the time-varying, non-stationary structure of the dynamical features, whereas classification performance dropped significantly (balanced accuracy: 61.91%) when excluding variability-related features. Additionally, both linear and nonlinear model features correlated with both clinical and neuropsychological assessments of the considered patient population. Our results demonstrate the added value and potential of instantaneous measures of heartbeat dynamics and its variability in characterizing PD-related disabilities in motor and cognitive domains. (C) 2015 Elsevier Ltd. All rights reserved.
机译:据报道,帕金森氏病(PD)涉及神经节后交感衰竭和多种自主神经功能障碍,包括心血管,性,膀胱,胃肠道和sudomotor异常。尽管这些症状可能对日常活动以及生活质量产生重大影响,但对自主神经系统(ANS)功能障碍的评估依赖于一大批昂贵的自主测试,而这些测试只能在高度专业的实验室中进行。在本文中,我们旨在基于PD的自发(静止状态)心血管振荡的瞬时,时变估计,设计一种与疾病相关的心跳动力学的综合计算评估。为此,我们将标准的ANS相关心率变异性(HRV)指标与瞬时复杂度(主要Lyapunov指数和熵)和高阶统计量(双谱)相结合。在29位健康受试者和30位PD患者静息时采集的600多个记录中计算了此类测量值。在显着的李雅普诺夫指数的变异性中发现了唯一的显着的群体差异。此外,只有在保留动态特征的时变,非平稳结构时,才能实现最佳的PD与健康对照分类性能(平衡精度:73.47%),而当保留动态特征的非平稳结构时,分类性能显着下降(平衡精度:61.91%)。排除与可变性相关的功能。另外,线性和非线性模型特征均与所考虑的患者群体的临床和神经心理学评估相关。我们的结果表明,在表征运动和认知领域中与PD相关的残疾时,心跳动力学的瞬时测量及其可变性的附加值和潜力。 (C)2015 Elsevier Ltd.保留所有权利。

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