设计用于远程医疗和基于物联网的健康监测的低成本智能椅子:一种促进更好医疗保健的开源技术

G. Ganesh, K. Jaidurgamohan, V. Srinu, Chandrakanth R. Kancharla, S. Suresh
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引用次数: 15

摘要

在本文中,我们提出了一种基于物联网(IoT)和远程医疗的健康监测系统的新设计-智能椅子。椅子上安装了监测人体重要生理参数所需的传感器和相关硬件,由此产生了智能椅子的概念。它使受试者在从附着在他/她身体上的各种传感器获取生理信号的过程中以放松的姿势坐着。来自传感器的原始信号由机载微控制器进行数字处理,并分析受试者健康参数中的任何常见异常。然后使用系统中的Wi-Fi模块将结果传输到安全的web服务器。这些数据可以在任何时候由医生从任何远程位置通过连接到互联网的手机/电脑查看。受试者还可以使用定制的Android应用程序将结果传输到他/她自己的手机上,该应用程序使用蓝牙接收来自智能椅子的数据。结果的快照以及相应的文本文件可以作为电子邮件/彩信发送给远程医生,以便快速反馈。在紧急情况下,智能椅子还会向远程医生的手机发送包含所有健康细节的短信,从而促进农村地区的远程医疗。在整个系统的设计阶段,成本被保持在最低限度。所提出的工作的重点是提出一种产品的设计方案,这种产品既有用,又容易为发展中国家的人民所负担,因为发展中国家的人民获得适当保健设施的机会有限。结果表明,与现有系统相比,所提出的系统绝对是基于物联网的远程医疗系统的低成本经济实惠的解决方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of a low cost smart chair for telemedicine and IoT based health monitoring: An open source technology to facilitate better healthcare
In this paper, we present a novel design of an Internet of Things (IoT) and telemedicine based health monitoring system-The Smart Chair. Sensors and associated hardware needed to monitor the vital physiological parameters of the human body are available on the chair, thereby leading to the idea of a Smart Chair. It enables the subject to be seated in a relaxed posture during the acquisition of physiological signals from various sensors attached to his/her body. The raw signals from the sensors are processed digitally by an onboard microcontroller and analyzed for any common abnormalities in the health parameters of the subject. The results are then transmitted to a secured web server using a Wi-Fi module present in the system. The data can be viewed at any later time by a doctor from any remote location on his phone/ computer that is connected to Internet. The subject can also have the results transmitted to his/her own phone using a custom Android application which receives the data from the Smart Chair using Bluetooth. The snapshot of results along with the corresponding text file can be sent as an Email/ MMS to a remote doctor for a quick feedback. The Smart Chair also sends an SMS with all the health details to a remote doctor's phone in case of an emergency, thus facilitating telemedicine in rural areas. Throughout the design phase of the system, the cost was kept minimal. The key focus of the presented work is to propose the design of a product that will be useful and easily affordable by the people of developing nations who have limited access to proper healthcare facilities. The results presented show that the proposed system is definitely a low cost affordable solution for IoT based telemedicine system, as compared to existing systems.
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