[Detecting cerebral hypoxia-ischemia of newborn piglets using spatially-resolved near-infrared spectroscopy]. 2008

Xin-lin Hou, and Yi-chao Teng, and Hai-shu Ding, and Hai-yan Ding, and Cong-le Zhou
Department of Biomedical Engineering, School of Medicine, Tsinghua University, Beijing 100084, China. houxinlin@gmail.com

As a non-invasive technique for measuring tissue oxygenation, near-infrared spectroscopy (NIRS) has increasing applications in detecting cerebral hypoxia-ischemia. The authors, introduced the basic principle of the NIRS oximeter developed independently by our group (TSAH-100). The authors achieved the optimal coupling between the probe and the detected cerebral tissue. The present study investigated different regional oxygen saturations of brain (rSO2) measured non-invasively by NIRS, arterial blood oxygen saturation (SaO2) measured invasively by blood gas analysis and physiological parameters in newborn pigs with different hypoxia, in order to prove if the non-invasively cerebral rSO2 can indicate cerebral oxygenation status in clinical practice. Using this oximeter, cerebral rSO2 of 28 newborn piglets under different oxygenation status was detected. After mechanical ventilation and inhalation of 8%-17% oxygen for 30 min in the newborn pigs, the pigs were grouped according to the inhalation of oxygen. With the inhalation of 13%-17% oxygen was mild hypoxia group, with 10%-13% was moderate hypoxia group, and with 8%-10% was severe hypoxia group. There were 4 animals in mild hypoxia group, 8 animals in moderate hypoxia group, 12 animals in severe hypoxia group and 4 animals were in the normal control group. The physiological parameters were monitored during the experiment. The SaO2 were invasively measured by blood gas analysis after the experiment. The results indicate that both rSO2 and SaO2 decreased after different degree of hypoxia and there was a good correlation between cerebral rSO2 non-invasively measured by NIRS and SaO2 invasively measured by blood gas analysis (p<0.001). Cerebral rSO2 was also consistent with the degree of hypoxia and the changes in physiological parameters after hypoxia. The arterial pH and the mean arterial pressure (MAP) in the severe hypoxia group was lower than that in the control group (p<0.05). The blood lactic acid in the severe hypoxia group was higher than that in the control group (p<0.05). Thus, the rSO2 can accurately and directly indicate cerebral oxygenation status and can also replace the SaO2 invasively measured by blood gas analysis. Cerebral hypoxia-ischemia can be non-invasively and conveniently diagnosed using NIRS.

UI MeSH Term Description Entries
D010100 Oxygen An element with atomic symbol O, atomic number 8, and atomic weight [15.99903; 15.99977]. It is the most abundant element on earth and essential for respiration. Dioxygen,Oxygen-16,Oxygen 16
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D000831 Animals, Newborn Refers to animals in the period of time just after birth. Animals, Neonatal,Animal, Neonatal,Animal, Newborn,Neonatal Animal,Neonatal Animals,Newborn Animal,Newborn Animals
D013552 Swine Any of various animals that constitute the family Suidae and comprise stout-bodied, short-legged omnivorous mammals with thick skin, usually covered with coarse bristles, a rather long mobile snout, and small tail. Included are the genera Babyrousa, Phacochoerus (wart hogs), and Sus, the latter containing the domestic pig (see SUS SCROFA). Phacochoerus,Pigs,Suidae,Warthogs,Wart Hogs,Hog, Wart,Hogs, Wart,Wart Hog
D019265 Spectroscopy, Near-Infrared A noninvasive technique that uses the differential absorption properties of hemoglobin and myoglobin to evaluate tissue oxygenation and indirectly can measure regional hemodynamics and blood flow. Near-infrared light (NIR) can propagate through tissues and at particular wavelengths is differentially absorbed by oxygenated vs. deoxygenated forms of hemoglobin and myoglobin. Illumination of intact tissue with NIR allows qualitative assessment of changes in the tissue concentration of these molecules. The analysis is also used to determine body composition. NIR Spectroscopy,Spectrometry, Near-Infrared,NIR Spectroscopies,Near-Infrared Spectrometries,Near-Infrared Spectrometry,Near-Infrared Spectroscopies,Near-Infrared Spectroscopy,Spectrometries, Near-Infrared,Spectrometry, Near Infrared,Spectroscopies, NIR,Spectroscopies, Near-Infrared,Spectroscopy, NIR,Spectroscopy, Near Infrared
D020925 Hypoxia-Ischemia, Brain A disorder characterized by a reduction of oxygen in the blood combined with reduced blood flow (ISCHEMIA) to the brain from a localized obstruction of a cerebral artery or from systemic hypoperfusion. Prolonged hypoxia-ischemia is associated with ISCHEMIC ATTACK, TRANSIENT; BRAIN INFARCTION; BRAIN EDEMA; COMA; and other conditions. Anoxia-Ischemia, Brain,Anoxia-Ischemia, Cerebral,Anoxic-Ischemic Encephalopathy,Brain Anoxia-Ischemia,Brain Hypoxia-Ischemia,Brain Ischemia-Anoxia,Brain Ischemia-Hypoxia,Cerebral Anoxia-Ischemia,Cerebral Hypoxia-Ischemia,Cerebral Ischemia-Anoxia,Cerebral Ischemia-Hypoxia,Hypoxia-Ischemia, Cerebral,Hypoxic-Ischemic Encephalopathy,Ischemia-Anoxia, Brain,Ischemia-Anoxia, Cerebral,Ischemia-Hypoxia, Brain,Ischemia-Hypoxia, Cerebral,Ischemic-Hypoxic Encephalopathy,Encephalopathy, Anoxic-Ischemic,Encephalopathy, Hypoxic-Ischemic,Anoxia Ischemia, Brain,Anoxia Ischemia, Cerebral,Anoxia-Ischemias, Brain,Anoxia-Ischemias, Cerebral,Anoxic Ischemic Encephalopathy,Anoxic-Ischemic Encephalopathies,Brain Anoxia Ischemia,Brain Anoxia-Ischemias,Brain Hypoxia Ischemia,Brain Hypoxia-Ischemias,Brain Ischemia Anoxia,Brain Ischemia Hypoxia,Brain Ischemia-Anoxias,Brain Ischemia-Hypoxias,Cerebral Anoxia Ischemia,Cerebral Anoxia-Ischemias,Cerebral Hypoxia Ischemia,Cerebral Hypoxia-Ischemias,Cerebral Ischemia Anoxia,Cerebral Ischemia Hypoxia,Cerebral Ischemia-Anoxias,Cerebral Ischemia-Hypoxias,Encephalopathies, Anoxic-Ischemic,Encephalopathies, Hypoxic-Ischemic,Encephalopathies, Ischemic-Hypoxic,Encephalopathy, Anoxic Ischemic,Encephalopathy, Hypoxic Ischemic,Encephalopathy, Ischemic-Hypoxic,Hypoxia Ischemia, Brain,Hypoxia Ischemia, Cerebral,Hypoxia-Ischemias, Brain,Hypoxia-Ischemias, Cerebral,Hypoxic Ischemic Encephalopathy,Hypoxic-Ischemic Encephalopathies,Ischemia Anoxia, Brain,Ischemia Anoxia, Cerebral,Ischemia Hypoxia, Brain,Ischemia Hypoxia, Cerebral,Ischemia-Anoxias, Brain,Ischemia-Anoxias, Cerebral,Ischemia-Hypoxias, Brain,Ischemia-Hypoxias, Cerebral,Ischemic Hypoxic Encephalopathy,Ischemic-Hypoxic Encephalopathies

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