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首页> 外文期刊>Emergency Medicine International >Wearable, Multimodal, Biosignal Acquisition System for Potential Critical and Emergency Applications
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Wearable, Multimodal, Biosignal Acquisition System for Potential Critical and Emergency Applications

机译:潜在关键和应急应用的可穿戴式,多模式,生物可爱采集系统

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摘要

For emergency or intensive-care units (ICUs), patients with unclear consciousness or unstable hemodynamics often require aggressive monitoring by multiple monitors. Complicated pipelines or lines increase the burden on patients and inconvenience for medical personnel. Currently, many commercial devices provide related functionalities. However, most devices measure only one biological signal, which can increase the budget for users and cause difficulty in remote integration. In this study, we develop a wearable device that integrates electrocardiography (ECG), electroencephalography (EEG), and blood oxygen machines for medical applications with the hope that it can be applied in the future. We develop an integrated multiple-biosignal recording system based on a modular design. The developed system monitors and records EEG, ECG, and peripheral oxygen saturation (SpO 2 ) signals for health purposes simultaneously in a single setting. We use a logic level converter to connect the developed EEG module (BR8), ECG module, and SpO 2 module to a microcontroller (Arduino). The modular data are then smoothly encoded and decoded through consistent overhead byte stuffing (COBS). This developed system has passed simulation tests and exhibited proper functioning of all modules and subsystems. In the future, the functionalities of the proposed system can be expanded with additional modules to support various emergency or ICU applications.
机译:对于应急或密集护理单位(ICU),有意识或不稳定的血液动力学尚不清楚的患者通常需要多个监视器的积极监测。复杂的管道或线条增加了患者的负担和医务人员带来的不便。目前,许多商业设备提供相关功能。然而,大多数设备只测量一个生物信号,这可以增加用户的预算并导致远程集成难度。在这项研究中,我们开发了一种可穿戴设备,可穿戴设备,用于医疗应用的心电图(ECG),脑电图(EEG)和血氧机器,希望其未来可以应用。我们基于模块化设计开发了一个集成的多生物功能记录系统。开发系统在单个设置中同时监视和记录EEG,ECG和外围氧饱和度(SPO 2)信号。我们使用逻辑电平转换器将开发的EEG模块(BR8),ECG模块和SPO 2模块连接到微控制器(Arduino)。然后,通过一致的开销字节填充(COB)平稳地编码和解码模块化数据。该开发系统通过了仿真测试,并表现出所有模块和子系统的正常运行。将来,建议系统的功能可以用其他模块扩展,以支持各种紧急或ICU应用。

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