An open-source platform for the development of microcontroller based multi-wavelength oximetry

Onur Guven, F. Geier, D. Banks, C. Toumazou
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引用次数: 3

Abstract

We present here, an open-source printed circuit board (PCB) platform for the prototyping, testing and trialing of non-invasive oximeter devices. The system is designed around a dspic33fj128gp804 microcontroller with coding in C. It can control over 100 LED and photodiode devices and has two modes, one for calibration and one for signal interrogation. At the top-level, the microcontroller has ports dedicated for LED and photodiode control, with EEPROM and SD card for storage, alphanumeric display for menu control and graphical display showing relevant waveforms. Further the device is battery powered and rechargeable. This device was designed with consideration to robustness, power-efficient operation, expandable hardware and algorithms and cheap off the shelf components, ensuring it can be used and repaired in low-resource settings. We show a working example device calculating total Haemoglobin, which has relevance World-Wide as a non-invasive anaemia detector. Continuous operation the device consumes approx. 222 mW. Under these circumstances four AA batteries (2650 mAh) could operate for over eight hours allowing general use operation of several weeks, without charging.
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一个开发基于单片机的多波长血氧仪的开源平台
我们在这里提出了一个开源的印刷电路板(PCB)平台,用于原型设计,测试和试验非侵入性血氧计设备。该系统以c语言编码的dspic33fj128gp804单片机为核心,可控制100多个LED和光电二极管器件,具有标定和信号询问两种模式。在顶层,微控制器具有专用于LED和光电二极管控制的端口,具有用于存储的EEPROM和SD卡,用于菜单控制的字母数字显示和显示相关波形的图形显示。此外,该设备是电池供电和可充电的。该设备的设计考虑了鲁棒性,节能操作,可扩展的硬件和算法以及廉价的现成组件,确保它可以在低资源环境下使用和维修。我们展示了一个计算总血红蛋白的工作示例装置,它作为一种非侵入性贫血检测器在世界范围内具有相关性。设备的连续运行消耗约为。222兆瓦。在这种情况下,四节AA电池(2650毫安时)可以在不充电的情况下运行超过8小时,允许一般使用运行数周。
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