慢性缺血性心脏病患者实时多生命远程监测的安全性和有效性验证

Sowjanya Patibandla, Rajani Adepu, Appireddy Thamma, Madhuri Bheemanapally
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引用次数: 1

摘要

背景:技术在卫生环境中的新兴作用正在为管理慢性病的新方法铺平道路。近年来,使用可穿戴设备对生命体征进行持续远程监测已经引起了人们的极大兴趣,因为它可以从任何地方实时访问患者数据。目的:本研究的目的是相互关联的重要参数;包括心电图、脉搏率、呼吸率、体温、心率、血氧饱和度和血压;来源于实时多生命远程监测(RTMVRM)解决方案和慢性缺血性心脏病患者标准生命监测方法,用药稳定。方法:选取海得拉巴ESIC医学院综合医学部就诊的199例确诊为慢性缺血性心脏病且服药稳定的患者作为研究对象。在医生的直接和持续监督下,使用RTMVRM和标准方法,在预先指定的时间点从受试者获得24小时的生命参数数据。采用Spearman秩相关系数评价RTMVRM溶液数据与标准测量值之间的相关性。该研究还检查了使用Vigo vital溶液的RTMVRM的安全性和有效性。结果:RTMVRM溶液与24小时脉搏率(0.9418)、呼吸率(0.96766)、体温(0.82103)、心率(0.98522)、收缩压(0.97468)、舒张压(0.90832)、SpO2(0.99620)等指标的正相关(spearman)有统计学意义(p< 0.0001)。24小时心电图数据显示,RTMVRM溶液与标准p波0.94749、pr -区间0.93432、qrs复合物0.95305、rr -区间0.66011、qt -区间0.77310、st段0.97749、t波0.95881呈正相关(p < 0.01)。Vigo vital解决方案报告了99%的准确度,99%的灵敏度和100%的捕获率。研究期间未报告与器械相关的严重不良事件。结论:本研究结果验证了基于云技术的生命监测解决方案RTMVRM的远程监测技术。RTMVRM能够实时提供连续的生命体征,可以快速做出临床决策,预防并发症,并使护理提供者能够领先于疾病。解决方案保证了临床医生和患者的满意度,生命监测的准确性和精确性,以及整洁的监测体验。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Validation of Safety and Efficacy of Real Time Multi Vital Remote Monitoring in Patients with Chronic Ischemic Heart Disease
Background: The emerging role of technology in health settings is paving the pathway for novel ways to manage chronic diseases. In recent times, continuous remote monitoring of vital signs using wearable devices has gained immense interest because it enables real-time access to patient data from anywhere. Aim: The objective of this study was to correlate the vital parameters; including ECG, pulse rate, respiratory rate, temperature, heart rate, oxygen saturation, and blood pressure; derived from Real Time Multi vital remote monitoring (RTMVRM) solution and standard vital monitoring methods in chronic ischemic heart disease patients, stable on medication. Methods: A total of 199 patients with confirmed diagnosis of chronic ischemic heart disease, stable on medication, presenting to the Department of General Medicine in ESIC Medical College and Hospital, Hyderabad, were enrolled into the study. The data for Vital parameters was obtained from the subjects at prespecified time points for a 24 hr duration using both RTMVRM and standard methods under direct and continued supervision of the physician. The Spearman's rank coefficient of correlation was used to evaluate the correlation between the data obtained from RTMVRM solution and standard measurements. The study also examined the safety and efficacy of the RTMVRM using the Vigo Vitals solution. Results: The vital parameters showed statistically significant (p<.0001) positive correlations (spearman) between the RTMVRM solution and standard measurements for pulse rate (0.9418), respiratory rate (0.96766), temperature (0.82103), heart rate (0.98522), systolic BP (0.97468), diastolic BP (0.90832) and SpO2 (0.99620) at 24th hour. The ECG data showed statistically significant (p<.0001) positive correlations (spearman) between the RTMVRM solution and standard measurements for P-wave 0.94749, PR-interval 0.93432, QRS-complex 0.95305, RR-interval 0.66011, QT-interval 0.77310, ST-segment 0.97749 and T-wave 0.95881 at 24th hour. Vigo vitals solutions reported 99% accuracy with 99% sensitivity and 100% capture rate. No device related serious adverse events were reported during the study. Conclusion: The results of this study validated the remote monitoring technology of RTMVRM, a cloud technology based vital monitoring solution. With its ability to offer access to continuous vitals in real time, RTMVRM may enable quick clinical decisions, prevent complications, and enable care providers to stay ahead of the disease. Both the clinician and the patient’s satisfaction were guaranteed by the solution, with accuracy and precision in vital monitoring and a decluttered monitoring experience.
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