Tagliabue Susanna, Kacprzak Michał, Rey-Perez Anna, Baena Jacinto, Riveiro Marilyn, Maruccia Federica, Fischer Jonas B, Poca Maria A, Durduran Turgut
ICFO-Institut de Ciències Fotòniques, The Barcelona Institute of Science and Technology, Biomedical Optics, Barcelona, Spain.
Nalecz Institute of Biocybernetics and Biomedical Engineering, Warsaw, Poland.
Neurophotonics. 2024 Oct;11(4):045005. doi: 10.1117/1.NPh.11.4.045005. Epub 2024 Oct 18.
A shortcoming of the routine clinical use of diffuse optics (DO) in the injured head has been that the results from commercial near-infrared spectroscopy-based devices are not reproducible, often give physiologically invalid values, and differ among systems. Besides the limitations due to the physics of continuous-wave light sources, one culprit is the head heterogeneity and the underlying morphological and functional abnormalities of the probed tissue.
The aim is to investigate the effect that different tissue alterations in the damaged head have on DO signals and provide guidelines to avoid data misinterpretation.
DO measurements and computed tomography scans were acquired on brain-injured patients. The relationship between the signals and the underlying tissue types was classified on a case-by-case basis.
Examples and suggestions to establish quality control routines were provided. The findings suggested guidelines for carrying out DO measurements and speculations toward improved devices.
We advocate for the standardization of the DO measurements to secure a role for DO in neurocritical care. We suggest that blind measurements are unacceptably problematic due to confounding effects and care using and quality control routines that go beyond an assessment of the signal-to-noise ratio that is typically utilized.
在受伤头部常规临床应用漫射光学(DO)的一个缺点是,基于商业近红外光谱设备的结果不可重复,常常给出生理上无效的值,并且不同系统之间存在差异。除了连续波光源物理特性带来的局限性外,一个原因是头部的异质性以及被探测组织潜在的形态和功能异常。
目的是研究受损头部不同组织改变对DO信号的影响,并提供避免数据误解的指导方针。
对脑损伤患者进行DO测量和计算机断层扫描。信号与潜在组织类型之间的关系逐例进行分类。
提供了建立质量控制程序的实例和建议。研究结果为进行DO测量提供了指导方针,并对改进设备提出了推测。
我们主张对DO测量进行标准化,以确保DO在神经重症监护中的作用。我们认为,由于混杂效应,盲目测量存在不可接受的问题,并且应谨慎使用超越通常使用的信噪比评估的质量控制程序。