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新型固定式氧气浓缩器流量远程控制系统的设计与开发

Design and Development of a Novel System for Remote Control of Stationary Oxygen Concentrator Flow Rate.

作者信息

Gadiraju Nikhil, Peterson Nikhil, Shah Jessica, Chu Annabelle, Larbie Michael A, Bu Amy, Saterbak Ann

机构信息

Pratt School of Engineering, Duke University, Durham, NC, USA.

出版信息

Med Devices (Auckl). 2023 Apr 18;16:91-100. doi: 10.2147/MDER.S407233. eCollection 2023.

Abstract

PURPOSE

Long-term oxygen therapy involves utilizing stationary oxygen concentrators to allow patients with respiratory illnesses to attain sufficient blood oxygenation via supplemental oxygen. Disadvantages of these devices include their lack of remote adjustability and domiciliary accessibility. To adjust oxygen flow, patients typically walk across their homes - a physically taxing activity - to manually rotate the knob of the concentrator flowmeter. The purpose of this investigation was to develop a control system device that allows patients to remotely adjust the oxygen flow rates on their stationary oxygen concentrator.

METHODS

The engineering design process was used to develop the novel FLO2 device. The two-part system is composed of 1) a smartphone application and 2) an adjustable concentrator attachment unit that mechanically interfaces with the stationary oxygen concentrator flowmeter.

RESULTS

Product testing indicates that users successfully communicated to the concentrator attachment from a maximum distance of 41m in an open field, suggesting usability from anywhere inside a standard home. The calibration algorithm adjusted oxygen flow rates with an accuracy of ±0.019 LPM and a precision of ±0.042 LPM.

CONCLUSION

Initial design testing suggests the device as a reliable and accurate method of wirelessly adjusting oxygen flow on a stationary oxygen concentrator, but further testing should be performed on different stationary oxygen concentrator models.

摘要

目的

长期氧疗涉及使用固定式制氧机,以使呼吸系统疾病患者通过补充氧气获得足够的血液氧合。这些设备的缺点包括缺乏远程可调节性和家庭适用性。为了调节氧气流量,患者通常要穿过房间——这是一项体力消耗较大的活动——手动旋转制氧机流量计的旋钮。本研究的目的是开发一种控制系统设备,使患者能够远程调节其固定式制氧机的氧气流量。

方法

采用工程设计流程开发新型FLO2设备。该两部分系统由1)智能手机应用程序和2)一个可调节的制氧机附件单元组成,该附件单元与固定式制氧机流量计进行机械连接。

结果

产品测试表明,在开阔场地中,用户在最大41米的距离内成功与制氧机附件进行了通信,这表明在标准家庭内的任何地方都可使用。校准算法调节氧气流量的精度为±0.019升/分钟,精密度为±0.042升/分钟。

结论

初步设计测试表明,该设备是一种可靠且准确的无线调节固定式制氧机氧气流量的方法,但应在不同型号的固定式制氧机上进行进一步测试。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5900/10122499/843ee96af3b9/MDER-16-91-g0001.jpg

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