Literature DB >> 11476426

Monitoring tissue oxygen availability with near infrared spectroscopy (NIRS) in health and disease.

R Boushel1, H Langberg, J Olesen, J Gonzales-Alonzo, J Bülow, M Kjaer.   

Abstract

Near infrared spectroscopy (NIRS) is becoming a widely used research instrument to measure tissue oxygen (O2) status non-invasively. Continuous-wave spectrometers are the most commonly used devices, which provide semi-quantitative changes in oxygenated and deoxygenated hemoglobin in small blood vessels (arterioles, capillaries and venules). Refinement of NIRS hardware and the algorithms used to deconvolute the light absorption signal have improved the resolution and validity of cytochrome oxidase measurements. NIRS has been applied to measure oxygenation in a variety of tissues including muscle, brain and connective tissue, and more recently it has been used in the clinical setting to assess circulatory and metabolic abnormalities. Quantitative measures of blood flow are also possible using NIRS and a light-absorbing tracer, which can be applied to evaluate circulatory responses to exercise along with the assessment of tissue O2 saturation. The venular O2 saturation can be estimated with NIRS by applying venous occlusion and measuring changes in oxygenated vs. total hemoglobin. These various measurements provide the opportunity to evaluate several important metabolic and circulatory patterns in very localized regions of tissue and may be fruitful in the study of occupational syndromes and a variety of diseases.

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Year:  2001        PMID: 11476426     DOI: 10.1034/j.1600-0838.2001.110404.x

Source DB:  PubMed          Journal:  Scand J Med Sci Sports        ISSN: 0905-7188            Impact factor:   4.221


  99 in total

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2.  Reliability of near infrared spectroscopy (NIRS) for measuring forearm oxygenation during incremental handgrip exercise.

Authors:  Bert Celie; Jan Boone; Rudy Van Coster; Jan Bourgois
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4.  Modeling oxygenation in venous blood and skeletal muscle in response to exercise using near-infrared spectroscopy.

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5.  Changes in oxygen consumption of human muscle and tendon following repeat muscle contractions.

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6.  Frontal and motor cortex oxygenation during maximal exercise in normoxia and hypoxia.

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Journal:  J Appl Physiol (1985)       Date:  2009-01-15

7.  Intestinal perfusion monitoring using photoplethysmography.

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8.  Localised muscle tissue oxygenation during dynamic exercise with whole body vibration.

Authors:  Daniel Robbins; Clare Elwell; Alfonso Jimenez; Mark Goss-Sampson
Journal:  J Sports Sci Med       Date:  2012-06-01       Impact factor: 2.988

9.  The prognostic value of muscle StO2 in septic patients.

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Review 10.  Oxygen Regulation in Development: Lessons from Embryogenesis towards Tissue Engineering.

Authors:  Shahrzad Fathollahipour; Pritam S Patil; Nic D Leipzig
Journal:  Cells Tissues Organs       Date:  2018-10-01       Impact factor: 2.481

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