Eleveld Nick, Esquivel-Franco Diana C, Drost Gea, Absalom Anthony R, Zeebregts Clark J, de Vries Jean-Paul P M, Elting Jan Willem J, Maurits Natasha M
Department of Neurology, University Medical Centre Groningen, University of Groningen, Postbus 30001, 9700 RB Groningen, The Netherlands.
Department of Neurosurgery, University Medical Centre Groningen, University of Groningen, Postbus 30001, 9700 RB Groningen, The Netherlands.
J Clin Med. 2023 Apr 8;12(8):2776. doi: 10.3390/jcm12082776.
Near-infrared spectroscopy (NIRS) is a non-invasive technique for measuring regional tissue haemoglobin (Hb) concentrations and oxygen saturation (rSO). It may be used to monitor cerebral perfusion and oxygenation in patients at risk of cerebral ischemia or hypoxia, for example, during cardiothoracic or carotid surgery. However, extracerebral tissue (mainly scalp and skull tissue) influences NIRS measurements, and the extent of this influence is not clear. Thus, before more widespread use of NIRS as an intraoperative monitoring modality is warranted, this issue needs to be better understood. We therefore conducted a systematic review of published in vivo studies of the influence of extracerebral tissue on NIRS measurements in the adult population. Studies that used reference techniques for the perfusion of the intra- and extracerebral tissues or that selectively altered the intra- or extracerebral perfusion were included. Thirty-four articles met the inclusion criteria and were of sufficient quality. In 14 articles, Hb concentrations were compared directly with measurements from reference techniques, using correlation coefficients. When the intracerebral perfusion was altered, the correlations between Hb concentrations and intracerebral reference technique measurements ranged between |r| = 0.45-0.88. When the extracerebral perfusion was altered, correlations between Hb concentrations and extracerebral reference technique measurements ranged between |r| = 0.22-0.93. In studies without selective perfusion modification, correlations of Hb with intra- and extracerebral reference technique measurements were generally lower (|r| < 0.52). Five articles studied rSO. There were varying correlations of rSO with both intra- and extracerebral reference technique measurements (intracerebral: |r| = 0.18-0.77, extracerebral: |r| = 0.13-0.81). Regarding study quality, details on the domains, participant selection and flow and timing were often unclear. We conclude that extracerebral tissue indeed influences NIRS measurements, although the evidence (i.e., correlation) for this influence varies considerably across the assessed studies. These results are strongly affected by the study protocols and analysis techniques used. Studies employing multiple protocols and reference techniques for both intra- and extracerebral tissues are therefore needed. To quantitatively compare NIRS with intra- and extracerebral reference techniques, we recommend applying a complete regression analysis. The current uncertainty regarding the influence of extracerebral tissue remains a hurdle in the clinical implementation of NIRS for intraoperative monitoring. The protocol was pre-registered in PROSPERO (CRD42020199053).
近红外光谱技术(NIRS)是一种用于测量局部组织血红蛋白(Hb)浓度和氧饱和度(rSO)的非侵入性技术。它可用于监测有脑缺血或缺氧风险的患者的脑灌注和氧合情况,例如在心胸手术或颈动脉手术期间。然而,脑外组织(主要是头皮和颅骨组织)会影响NIRS测量,且这种影响的程度尚不清楚。因此,在NIRS作为一种术中监测方式得到更广泛应用之前,需要更好地理解这个问题。我们因此对已发表的关于脑外组织对成年人群NIRS测量影响的体内研究进行了系统综述。纳入了使用参考技术对脑内和脑外组织灌注进行研究,或选择性改变脑内或脑外灌注的研究。34篇文章符合纳入标准且质量足够。在14篇文章中,使用相关系数将Hb浓度直接与参考技术的测量结果进行了比较。当脑内灌注改变时,Hb浓度与脑内参考技术测量结果之间的相关性在|r| = 0.45 - 0.88之间。当脑外灌注改变时,Hb浓度与脑外参考技术测量结果之间的相关性在|r| = 0.22 - 0.93之间。在没有选择性灌注改变的研究中,Hb与脑内和脑外参考技术测量结果的相关性通常较低(|r| < 0.52)。5篇文章研究了rSO。rSO与脑内和脑外参考技术测量结果均存在不同程度的相关性(脑内:|r| = 0.18 - 0.77,脑外:|r| = 0.13 - 0.81)。关于研究质量,在研究领域、参与者选择、流程和时间安排等方面的细节往往不明确。我们得出结论,脑外组织确实会影响NIRS测量,尽管在评估的研究中这种影响的证据(即相关性)差异很大。这些结果受到所使用的研究方案和分析技术的强烈影响。因此,需要采用多种方案和参考技术对脑内和脑外组织进行研究。为了定量比较NIRS与脑内和脑外参考技术,我们建议应用完整的回归分析。目前关于脑外组织影响的不确定性仍然是NIRS在术中监测临床应用中的一个障碍。该方案已在PROSPERO(CRD42020199053)中预先注册。