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Invasive and non-invasive measurement in medicine and biology: calibration issues

机译:医学和生物学中的有创和无创测量:校准问题

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Invasive and non-invasive measurement sensors and systems perform vital roles in medical care. Devices are based on various principles, including optics, photonics, and plasmonics, electro-analysis, magnetics, acoustics, bio-recognition, etc. Sensors are used for the direct insertion into the human body, for example to be in contact with blood, which constitutes Invasive Measurement. This approach is very challenging technically, as sensor performance (sensitivity, response time, linearity) can deteriorate due to interactions between the sensor materials and the biological environment, such as blood or interstitial fluid. Invasive techniques may also be potentially hazardous. Alternatively, sensors or devices may be positioned external to the body surface, for example to analyse respired breath, thereby allowing safer Non-Invasive Measurement. However, such methods, which are inherently less direct, often requiring more complex calibration algorithms, perhaps using chemometric principles. This paper considers and reviews the issue of calibration in both invasive and non-invasive biomedical measurement systems. Systems in current use usually rely upon periodic calibration checks being performed by clinical staff against a variety of laboratory instruments and QC samples. These procedures require careful planning and overall management if reliable data are to be assured.
机译:侵入式和非侵入式测量传感器和系统在医疗保健中起着至关重要的作用。设备基于各种原理,包括光学,光子学和等离激元,电分析,磁学,声学,生物识别等。传感器用于直接插入人体,例如与血液接触,构成有创测量。这种方法在技术上非常具有挑战性,因为传感器性能(灵敏度,响应时间,线性度)会由于传感器材料与生物环境(例如血液或组织液)之间的相互作用而变差。侵入性技术也可能具有潜在危险。可替代地,传感器或设备可以定位在身体表面的外部,例如以分析呼吸的呼吸,从而允许更安全的无创测量。但是,这类方法本质上不太直接,通常可能需要使用化学计量学原理,因此需要更复杂的校准算法。本文考虑并回顾了有创和无创生物医学测量系统中的校准问题。当前使用的系统通常依赖于临床人员针对各种实验室仪器和QC样品进行的定期校准检查。如果要确保可靠的数据,则需要仔细计划和全面管理这些程序。

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