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一种具有压缩功能的灵活 12 导联/动态心电图设备,适用于低带宽移动心电图远程医疗应用。

A Flexible 12-Lead/Holter Device with Compression Capabilities for Low-Bandwidth Mobile-ECG Telemedicine Applications.

机构信息

Department of Signal Theory and Communications, Telematics and Computing Systems, Rey Juan Carlos University, 28943 Madrid, Spain.

Departamento de Eléctrica y Electrónica, Universidad de las Fuerzas Armadas ESPE, Av. General Rumiñahui s/n, Sangolquí 171-5-231B, Ecuador.

出版信息

Sensors (Basel). 2018 Nov 5;18(11):3773. doi: 10.3390/s18113773.

Abstract

In recent years, a number of proposals for electrocardiogram (ECG) monitoring based on mobile systems have been delivered. We propose here an STM32F-microcontroller-based ECG mobile system providing both long-term (several weeks) Holter monitoring and 12-lead ECG recording, according to the clinical standard requirements for these kinds of recordings, which in addition can yield further digital compression at stages close to the acquisition. The system can be especially useful in rural areas of developing countries, where the lack of specialized medical personnel justifies the introduction of telecardiology services, and the limitations of coverage and bandwidth of cellular networks require the use of efficient signal compression systems. The prototype was implemented using a small architecture, with a 16-bits-per-sample resolution. We also used a low-noise instrumentation amplifier TI ADS1198, which has a multiplexer and an analog-to-digital converter (16 bits and 8 channels) connected to the STM32F processor, the architecture of which incorporates a digital signal processing unit and a floating-point unit. On the one hand, the system portability allows the user to take the prototype in her/his pocket and to perform an ECG examination, either in 12-lead controlled conditions or in Holter monitoring, according to the required clinical scenario. An app in the smartphone is responsible for giving the users a friendly interface to set up the system. On the other hand, electronic health recording of the patients are registered in a web application, which in turn allows them to connect to the Internet from their cellphones, and the ECG signals are then sent though a web server for subsequent and ubiquitous analysis by doctors at any convenient terminal device. In order to determine the quality of the received signals, system testing was performed in the three following scenarios: (1) The prototype was connected to the patient and the signals were subsequently stored; (2) the prototype was connected to the patient and the data were subsequently transferred to the cellphone; (3) the prototype was connected to the patient, and the data were transferred to the cellphone and to the web via the Internet. An additional benchmarking test with expert clinicians showed the clinical quality provided by the system. The proposed ECG system is the first step and paves the way toward mobile cardiac monitors in terms of compatibility with the electrocardiographic practice, including the long-term monitoring, the usability with 12 leads, and the possibility of incorporating signal compression at the early stages of the ECG acquisition.

摘要

近年来,已经提出了许多基于移动系统的心电图(ECG)监测提案。我们在这里提出了一种基于 STM32F 微控制器的 ECG 移动系统,根据这些记录的临床标准要求,该系统既提供长期(数周)Holter 监测,又提供 12 导联 ECG 记录,此外还可以在接近采集阶段进行进一步的数字压缩。该系统在发展中国家的农村地区特别有用,在这些地区,缺乏专业医疗人员证明引入远程心脏病学服务是合理的,而蜂窝网络的覆盖范围和带宽限制需要使用高效的信号压缩系统。该原型采用了小尺寸架构,具有 16 位/样本分辨率。我们还使用了具有低噪声仪表放大器 TI ADS1198,它具有一个多路复用器和一个与 STM32F 处理器相连的模数转换器(16 位和 8 个通道),该处理器的架构包含一个数字信号处理单元和一个浮点单元。一方面,系统的便携性允许用户将原型放在口袋中,并根据所需的临床情况进行 12 导联控制条件下的心电图检查或 Holter 监测。智能手机上的应用程序负责为用户提供友好的界面来设置系统。另一方面,患者的电子健康记录被注册在一个网络应用程序中,该应用程序反过来允许患者从他们的手机连接到互联网,然后通过网络服务器发送 ECG 信号,以便随后由医生在任何方便的终端设备上进行无处不在的分析。为了确定接收到的信号的质量,在以下三个场景中对系统进行了测试:(1)将原型连接到患者,随后存储信号;(2)将原型连接到患者,随后将数据传输到手机;(3)将原型连接到患者,然后通过互联网将数据传输到手机和网络。与专家临床医生进行的额外基准测试显示了该系统提供的临床质量。所提出的 ECG 系统是迈向移动心脏监测器的第一步,在与心电图实践的兼容性方面具有里程碑意义,包括长期监测、12 导联可用性以及在 ECG 采集的早期阶段纳入信号压缩的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/265a/6264074/f7ce812f5cde/sensors-18-03773-g001.jpg

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