School of Medical Engineering of Xinxiang Medical University, Xinxiang, China; Engineering Technology Research Center of Neurosense and Control of Henan Province, Xinxiang, People's Republic of China; Henan Engineering Laboratory of Combinatorial Technique for Clinical and Biomedical Big Data, Xinxiang, China; Henan International Joint Laboratory of Neural Information Analysis and Drug Intelligent Design, Xinxiang, China; The Second Affiliated Hospital of Xinxiang Medical University, Xinxiang, China; Henan Collaborative Innovation Center of Prevention and treatment of mental disorder, Xinxiang, China.
School of Medical Engineering of Xinxiang Medical University, Xinxiang, China.
J Neurosci Methods. 2024 Sep;409:110217. doi: 10.1016/j.jneumeth.2024.110217. Epub 2024 Jul 2.
Parkinson's patients have significant autonomic dysfunction, early detect the disorder is a major challenge. To assess the autonomic function in the rat model of rotenone induced Parkinson's disease (PD), Blood pressure and ECG signal acquisition are very important.
We used telemetry to record the electrocardiogram and blood pressure signals from awake rats, with linear and nonlinear analysis techniques calculate the heart rate variability (HRV) and blood pressure variability (BPV). we applied nonlinear analysis methods like sample entropy and detrended fluctuation analysis to analyze blood pressure signals. Particularly, this is the first attempt to apply nonlinear analysis to the blood pressure evaluate in rotenone induced PD model rat.
HRV in the time and frequency domains indicated sympathetic-parasympathetic imbalance in PD model rats. Linear BPV analysis didn't reflect changes in vascular function and blood pressure regulation in PD model rats. Nonlinear analysis revealed differences in BPV, with lower sample entropy results and increased detrended fluctuation analysis results in the PD group rats.
our experiments demonstrate the ability to evaluate autonomic dysfunction in models of Parkinson's disease by combining the analysis of BPV with HRV, consistent with autonomic impairment in PD patients. Nonlinear analysis by blood pressure signal may help in early detection of the PD. It indicates that the fluctuation of blood pressure in the rats in the rotenone model group tends to be regular and predictable, contributes to understand the PD pathophysiological mechanisms and to find strategies for early diagnosis.
帕金森病患者存在明显的自主神经功能障碍,早期发现该疾病是一项重大挑战。为了评估鱼藤酮诱导的帕金森病(PD)大鼠模型中的自主神经功能,血压和心电图信号的获取非常重要。
我们使用遥测技术从清醒大鼠中记录心电图和血压信号,并用线性和非线性分析技术计算心率变异性(HRV)和血压变异性(BPV)。我们应用非线性分析方法,如样本熵和去趋势波动分析来分析血压信号。特别是,这是首次尝试将非线性分析应用于鱼藤酮诱导的 PD 模型大鼠的血压评估中。
HRV 的时域和频域分析表明 PD 模型大鼠存在交感神经-副交感神经失衡。线性 BPV 分析未能反映 PD 模型大鼠血管功能和血压调节的变化。非线性分析揭示了 BPV 的差异,PD 组大鼠的样本熵结果较低,去趋势波动分析结果较高。
我们的实验表明,通过将 BPV 与 HRV 的分析相结合,能够评估帕金森病模型中的自主神经功能障碍,与 PD 患者的自主神经损伤一致。血压信号的非线性分析可能有助于早期发现 PD。这表明鱼藤酮模型组大鼠的血压波动趋于规则和可预测,有助于理解 PD 的病理生理机制,并寻找早期诊断的策略。