4.5 Article

Near-infrared frequency-domain optical spectroscopy and magnetic resonance imaging: a combined approach to studying cerebral maturation in neonatal rabbits

期刊

JOURNAL OF BIOMEDICAL OPTICS
卷 10, 期 1, 页码 -

出版社

SPIE-SOC PHOTO-OPTICAL INSTRUMENTATION ENGINEERS
DOI: 10.1117/1.1852554

关键词

magnetic resonance imaging; diffusion; brain maturation; hemoglobin concentration; hemoglobin saturation; frequency-domain; optical spectroscopy; near infrared

资金

  1. EUNICE KENNEDY SHRIVER NATIONAL INSTITUTE OF CHILD HEALTH & HUMAN DEVELOPMENT [R01HD042908] Funding Source: NIH RePORTER
  2. NICHD NIH HHS [R01 HD042908, R01-HD42908, R01 HD042908-01, R01 HD042908-02] Funding Source: Medline

向作者/读者索取更多资源

The neonatal rabbit brain shows prolonged postnatal development both structurally and physiologically. We use noninvasive near-IR frequency-domain optical spectroscopy (NIRS) and magnetic resonance imaging (MRI) to follow early developmental changes in cerebral oxygenation and anatomy, respectively. Four groups of animals are measured: NIRS in normals, MRI in normals, and both NIRS and MRI with hypoxia-ischemia (HI) (diffusion MRI staging). NIRS and/or MRI are performed from P3 (postnatal day=P) up to P76. NIRS is performed on awake animals with a frequency-domain tissue photometer. Absolute values of oxyhemoglobin concentration ([HbO(2)]), deoxyhemoglobin concentration ([HbR]), total hemoglobin concentration (HbT), and hemoglobin saturation (StO(2)) are calculated. The brains of all animals appeared to be maturing as shown in the diffusion tensor MRL Mean optical coefficients (reduced scattering) remained unchanged in all animals throughout. StO(2) increased in all animals (40% at P9 to 65% at P43) and there are no differences between normal, HI controls, and HI brains. The measured increase in StO(2) is in agreement with the reported increase in blood flow during which reflects blood volume, the first 2 months of life in rabbits. HbT, peaked at postnatal day P17, as expected since the capillary density increases up to P17 when the microvasculature matures. (c) 2005 Society of Photo-Optical Instrumentation Engineers.

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