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The Role of the Autonomic Nervous System on Cardiac Rhythm during the Evolution of Diabetes Mellitus Using Heart Rate Variability as a Biomarker

机译:使用心率变异性作为生物标志物在糖尿病演变过程中自主神经系统对心律的作用

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摘要

Heart rate variability (HRV) is highly influenced by the Autonomic Nervous System (ANS). Several illnesses have been associated with changes in the ANS, thus altering the pattern of HRV. However, the variability of the heart rhythm is originated within the Sinus Atrial Node (SAN) which has its own variability. Still, although both oscillators produce HRV, the influence of the SAN on HRV has not yet been exhaustively studied. On the other hand, the complications of diabetes mellitus (DM), for instance, nephropathy, retinopathy, and neuropathy, increase cardiovascular morbidity and mortality. Traditionally, these complications are diagnosed only when the patient is already suffering from the negative symptoms these complications implicate. Consequently, it is of paramount importance to develop new techniques for early diagnosis prior to any deterioration on healthy patients. HRV has been proved to be a valuable, noninvasive clinical evidence for evaluating diseases and even for describing aging and behavior. In this study, several ECGs were recorded and their RR and PP intervals were analyzed to detect the interpotential interval (ii) of the SAN. Additionally, HRV reduction was quantified to identify alterations in the nervous system within the nodal tissue via measuring the SD1/SD2 ratio in a Poincaré plot. With 15 years of DM development, the data showed an age-dependent increase in HRV due to the axon retraction of ANS neurons from its effectors. In addition, these alterations modify the heart rhythm-producing fatal arrhythmias. Therefore, it is possible to avoid the consequences of DM identifying alterations in SAN previous to its symptomatic appearance. This could be used as an early diagnosis indicator.
机译:心律变异性(HRV)受到自主神经系统(ANS)的高度影响。几种疾病与ANS的变化有关,从而改变了HRV的模式。但是,心律的变异性起源于窦房结(SAN),后者具有自身的变异性。尽管如此,尽管两个振荡器都产生HRV,但SAN对HRV的影响尚未得到详尽研究。另一方面,糖尿病(DM)的并发症,例如肾病,视网膜病和神经病,增加了心血管疾病的发病率和死亡率。传统上,仅当患者已经患有这些并发症所带来的负面症状时才诊断这些并发症。因此,在健康患者的病情恶化之前,开发用于早期诊断的新技术至关重要。事实证明,HRV是评估疾病甚至描述衰老和行为的宝贵无创临床证据。在这项研究中,记录了多个ECG,并分析了其RR和PP间隔以检测SAN的电位间隔(ii)。此外,通过测量庞加莱图中的SD1 / SD2比,对HRV的降低进行了量化,以识别淋巴结组织内神经系统的变化。随着DM发展15年,数据显示,由于ANS神经元从其效应子轴突回缩,HRV随年龄的增长而增加。此外,这些改变会改变产生心律的致命性心律失常。因此,有可能避免DM在出现症状之前识别SAN中的更改的后果。这可以用作早期诊断指标。

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