Department of Electrical Engineering, Faculty of Engineering, Universidad de Concepcion, 219 Edmundo Larenas, Concepción 4070409, Chile.
Sensors (Basel). 2024 Oct 15;24(20):6642. doi: 10.3390/s24206642.
This work contributes to the improvement of novel medical technologies for the prevention and treatment of diseases. Electrical impedance tomography (EIT) has gained attention as a valuable tool for non-invasive monitoring providing real-time insights. The purpose of this work is to develop and validate a novel portable EIT system with a small form factor for respiratory monitoring. The device uses a 16-electrode architecture with adjacent stimulation and measurement patterns, an integrated circuit current source and a single high-speed ADC operating with multiplexers to stimulate and measure across all electrodes. Tests were conducted on 25 healthy subjects who performed a pulmonary function test with a flowmeter while using the EIT device. The results showed a good performance of the device, which was able to recognize all respirations correctly, and from the EIT signals and images, correlations of 96.7% were obtained for instantaneous respiratory rate and 96.1% for tidal volume prediction. These results validate the preliminary technical feasibility of the EIT system and demonstrates its potential as a reliable tool for non-invasive respiratory assessment. The significance of this work lies in its potential to democratize advanced respiratory monitoring technologies, making them accessible to a wider population, including those in remote or underserved areas.
这项工作有助于改进新型医学技术,以预防和治疗疾病。电阻抗断层成像(EIT)作为一种有价值的非侵入性监测工具,因其能够实时提供洞察而受到关注。本工作旨在开发和验证一种新型便携式 EIT 系统,其具有用于呼吸监测的小外形尺寸。该设备采用 16 电极架构,具有相邻的刺激和测量模式、集成电路电流源和单个高速 ADC 与多路复用器一起运行,以跨所有电极进行刺激和测量。对 25 名健康受试者进行了测试,他们在使用 EIT 设备的同时使用流量计进行了肺功能测试。结果表明该设备性能良好,能够正确识别所有呼吸,并且从 EIT 信号和图像中,瞬时呼吸率的相关性为 96.7%,潮气量预测的相关性为 96.1%。这些结果验证了 EIT 系统的初步技术可行性,并展示了其作为一种可靠的非侵入性呼吸评估工具的潜力。这项工作的意义在于它有可能使先进的呼吸监测技术民主化,使更广泛的人群,包括那些在偏远或服务不足地区的人群,都能够获得这些技术。