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Microwave Blood Sensing for Monitoring Treatment Efficiency in Hypertensive Patients with Chronic Neurological Disorders

机译:微波血感测,用于监测慢性神经障碍患者高血压患者的治疗效率

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The present work is a continuation of our multidisciplinary study on optimizing therapy in patients with chronic neurological conditions. Here we aim to monitor the efficiency of antihypertensive treatment via microwave blood sensing technique. The concept of microwave sensing is based on in vitro detecting drug-induced dielectric response (Δε*) of erythrocytes. This response is closely tied to a membrane adrenergic activity exhibiting individual peculiarities of the stress system, which varies significantly depending on a patient's health status and stage of the disease. That is why its evaluation during the course of treatment is of great importance for appropriate medication therapy (in particular, with prescribing antihypertensive drugs) as well as for the monitoring treatment efficiency. The study of these drug-induced effects in blood samples has been carried out using a complex of physical and biochemical methods. Microwave dielectric observations were performed as the repeated permittivity measurements of blood samples with a single-frequency waveguide-based reflectometry (39.5 GHz). To validate the results of the dielectric study we opted for a biochemical technique which allows evaluating the adrenergic effect of a pharmaceutical agent to erythrocytes. Both techniques have revealed well-correlated data which indicate the successful applicability of such an approach when considering the adrenergic status of a patient in antihypertensive treatment. Previously reported data supplemented by new findings are presented. The results would be helpful for the specialists dealing with microwave measurements of blood and the developers of clinically-oriented microwave systems.
机译:目前的作品是我们对慢性神经病症患者优化治疗的多学科研究的延续。在这里,我们的目的是通过微波血感测技术监测抗高血压处理的效率。微波传感的概念是基于体外检测药物诱导的介电响应(Δε * )红细胞。这种反应与表现出应力系统的个体特性的膜肾上腺素能活性密切相关,这取决于患者的健康状况和疾病阶段显着变化。这就是为什么它在治疗过程中的评价对于适当的药物治疗(特别是具有规定抗高血压药物)以及监测治疗效率的评估是重视。使用物理和生化方法的复合物进行了对血液样品中这些药物诱导的效果的研究。以单频波导的反射测量法(39.5GHz)为微波介电观测作为反复介电常数测量。为了验证我们选择生化技术的介电研究的结果,这允许评估药剂对红细胞的肾上腺素能作用。两种技术都揭示了良好相关的数据,这表明在考虑患者在抗高血压治疗中的肾上腺素能状态时,这种方法的成功适用性。提出了先前报告了新发现补充的数据。结果对于处理血液和临床导向微波系统的显影剂的专家将有助于涉及微波测量。

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