Near-infrared oximetry of the brain

被引:273
作者
Madsen, PL [1 ]
Secher, NH [1 ]
机构
[1] Rigshosp 2041, Copenhagen Muscle Res Ctr, Dept Anaesthesia, DK-2100 Copenhagen, Denmark
关键词
D O I
10.1016/S0301-0082(98)00093-8
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Near-infrared (IR) light easily penetrates biological tissue, and the information offered by bz vivo spectroscopy of cerebral oxygenation is detailed and comes with a high temporal resolution. Near-IR light spectroscopy (NIRS) reflects cerebral oxygenation during arterial hypotension, hypoxic hypoxaemia and hypo- and hypercapnia. As determined by dual-wavelength NIRS, the cerebral O-2 saturation integrates the arterial O-2 content and the cerebral perfusion, and as established for skeletal muscle, NIRS obtains information on tissue oxygenation and metabolism beyond that obtained by venous blood sampling. Caveats of cerebral NIRS include insufficient light shielding, optode displacement and a sample volume including muscle or the frontal sinus mucous membrane. The relative influence from the extra-cranial tissue is minimized by optode separation and correction for an extracranial sample volume, or both. The natural pigment melatonin and also water are of little influence to spectroscopic analysis of cerebral oxygenation, whereas bilirubin systematically lowers ScO2 and attenuates the detection of changes in cerebral oxygenation. By NIRS, reduction of cytochrome oxidase is demonstrated during hypoxic hypoxaemia and head-up tilt-induced arterial hypotension, but the changes are small. In the clinical setting, NIRS offers useful information in patients with both systemic and local cerebral circulatory impairment, for example, during cranial trauma, surgery on the cerebral arteries, orthostasis and acute heart failure. Whereas mapping of the brain circulation is needed for jugular venous sampling to reflect either global or local oxygenation, the determination of cerebral oxygenation by NIRS has the advantage of localized monitoring of the cerebral cortex. (C) 1999 Elsevier Science Ltd. All rights reserved.
引用
收藏
页码:541 / 560
页数:20
相关论文
共 179 条
[1]   NON-INVASIVE TRANSCRANIAL DOPPLER ULTRASOUND RECORDING OF FLOW VELOCITY IN BASAL CEREBRAL-ARTERIES [J].
AASLID, R ;
MARKWALDER, TM ;
NORNES, H .
JOURNAL OF NEUROSURGERY, 1982, 57 (06) :769-774
[2]   Measurement of tissue oxygen consumption in patients with mitochondrial myopathy by noninvasive tissue oximetry [J].
Abe, K ;
Matsuo, Y ;
Kadekawa, J ;
Inoue, S ;
Yanagihara, T .
NEUROLOGY, 1997, 49 (03) :837-841
[3]   A FINITE-ELEMENT APPROACH FOR MODELING PHOTON TRANSPORT IN TISSUE [J].
ARRIDGE, SR ;
SCHWEIGER, M ;
HIRAOKA, M ;
DELPY, DT .
MEDICAL PHYSICS, 1993, 20 (02) :299-309
[4]   CEREBRAL OXYGEN-METABOLISM DURING HYPOTHERMIC CIRCULATORY ARREST IN HUMANS [J].
AUSMAN, JI ;
MCCORMICK, PW ;
STEWART, M ;
LEWIS, G ;
DUJOVNY, M ;
BALAKRISHNAN, G ;
MALIK, GM ;
GHALY, RF .
JOURNAL OF NEUROSURGERY, 1993, 79 (06) :810-815
[5]  
Barcroft H, 1944, LANCET, V1, P489
[6]  
BEER A., 1851, ANN PHYS CHEM, V84, P37, DOI DOI 10.1002/ANDP.18511600904
[7]   OPTICAL TIME-OF-FLIGHT AND ABSORBENCY IMAGING OF BIOLOGIC MEDIA [J].
BENARON, DA ;
STEVENSON, DK .
SCIENCE, 1993, 259 (5100) :1463-1466
[8]  
BIE P, 1998, AM J PHYSIOL, V251, pR735
[9]   SEPARATE MEASURES OF ATP UTILIZATION AND RECOVERY IN HUMAN SKELETAL-MUSCLE [J].
BLEI, ML ;
CONLEY, KE ;
KUSHMERICK, MJ .
JOURNAL OF PHYSIOLOGY-LONDON, 1993, 465 :203-222
[10]   METABOLIC CHANGES DURING EXPERIMENTAL CEREBRAL-ISCHEMIA IN HYPERGLYCEMIC RATS, OBSERVED BY P-31 AND H-1 MAGNETIC-RESONANCE SPECTROSCOPY [J].
BOLAS, NM ;
RAJAGOPALAN, B ;
MITSUMORI, F ;
RADDA, GK .
STROKE, 1988, 19 (05) :608-614