Title :
Oximetry of tissue vasculature with near infrared spectroscopy: application to tumors
Author :
Liu, Hongying ; Gu, Yueqing ; Kim, Jae G. ; Mason, Ralph P.
Author_Institution :
Joint Program of Biomed. Eng., Texas Univ., Arlington, TX, USA
Abstract :
Near infrared (NIR) spectroscopy has been demonstrated as a new means to quantify oxygenation of tissue vasculature, in particular changes in hemoglobin concentrations and oxygen saturation. A novel application such oximetry to monitoring of tumor vascular oxygenation during respiratory interventions will be presented. Our recent results obtained with a one-channel NIR spectrometer observing rat breast and prostate tumors in vivo have demonstrated a biphasic response of tumor vascular oxygenation when the inhaled gas is switched from air to carbogen. We present a mathematical model associating the tumor vascular oxygenation to both well-perfused and poorly perfused regions in the tumor. Furthermore, laboratory phantom experiments and computational simulations using the finite element method have been conducted to verify this tumor hemodynamic model.
Keywords :
bio-optics; biochemistry; biological organs; biomedical measurement; blood vessels; finite element analysis; haemodynamics; infrared spectroscopy; oximetry; oxygen; phantoms; physiological models; proteins; tumours; O; biphasic response; carbogen; computational simulation; finite element method; hemoglobin concentrations; inhaled gas; laboratory phantom; mathematical model; near infrared spectroscopy; one-channel NIR spectrometer; oximetry; oxygen saturation; prostate tumors in vivo; rat breast; respiratory intervention; tissue vasculature; tissue vasculature oxygenation; tumor hemodynamic model; tumors; Breast neoplasms; Computational modeling; Finite element methods; Imaging phantoms; In vivo; Infrared spectra; Laboratories; Mathematical model; Monitoring; Spectroscopy;
Conference_Titel :
Lasers and Electro-Optics, 2003. CLEO '03. Conference on
Conference_Location :
Baltimore, MD, USA
Print_ISBN :
1-55752-748-2