[基于近红外光谱的三波长脑组织氧监测系统的开发]。

Q4 Medicine
Zexi Li, Hanlin Li, Qi Yin, Shijie Cai, Jilun Ye, Xu Zhang, Hui Yu, Dahai Gou
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引用次数: 0

摘要

近 20 年来,近红外光谱技术以其非侵入性和实时性的特点被广泛应用于人体监测领域。氧气作为人体的主要代谢物质,在脑组织中消耗最多。为了防止在治疗过程中因脑组织氧含量降低而引起并发症,需要对患者脑组织血氧饱和度进行实时监测。目前,临床上使用的无创脑血氧检测设备大多使用双波长。检测路径上的其他物质会导致测量结果出现误差。因此,本文根据近红外光谱无创监测脑血氧的基本原理,提出了一种三波长方法。通过搭建的系统初步验证了检测光源的脑组织血氧饱和度监测方法,为后续的系统工程奠定了基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Development of a Three-Wavelength Brain Tissue Oxygen Monitoring System Based on Near Infrared Spectrum].

In the past 20 years, near infrared spectrum technology has been widely used in human body monitoring due to its non-invasive and real-time characteristics. Oxygen, as the main metabolic substance of the human body, is consumed the most in brain tissue. In order to prevent complications caused by a decrease in brain tissue oxygen during treatment, the patient's brain tissue blood oxygen saturation needs to be monitored in real time. Currently, most of the clinically used non-invasive cerebral blood oxygen detection equipments use dual wavelengths. Other substances on the detection path will cause errors in the measurement results. Therefore, this article proposes a three-wavelength method based on the basic principle of non-invasive monitoring of cerebral blood oxygen using near-infrared spectrum. The brain tissue oxygen saturation monitoring method of detecting light sources was initially verified through the built system, laying the foundation for subsequent system engineering.

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来源期刊
中国医疗器械杂志
中国医疗器械杂志 Medicine-Medicine (all)
CiteScore
0.40
自引率
0.00%
发文量
8086
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