Dual-wavelength photothermal optical coherence tomography for blood oxygen saturation measurement

被引:1
|
作者
Yin, Biwei [1 ]
Kuranov, Roman V. [1 ]
McElroy, Austin B. [1 ]
Milner, Thomas E. [1 ]
机构
[1] Univ Texas Austin, Dept Elect & Comp Engn, Austin, TX 78712 USA
关键词
DWP-OCT; phase-sensitive; microvasculature; hemoglobin oxygen saturation; phantom microvessel; OCT;
D O I
10.1117/12.2006945
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
We report design and demonstration of a dual wavelength photothermal (DWP) optical coherence tomography (OCT) system for imaging of a phantom microvessel and measurement of hemoglobin oxygen saturation (SO2) level. The DWP-OCT system contains a swept-source (SS) two-beam phase-sensitive (PhS) OCT system (1060 nm) and two intensity modulated photothermal excitation lasers (770 nm and 800 nm). The PhS-OCT probe beam (1060 nm) and photothermal excitation beams are combined into one single-mode optical fiber. A galvanometer based two-dimensional achromatic scanning system is designed to provide 14 mu m lateral resolution for the PhS-OCT probe beam (1060 nm) and 13 mu m lateral resolution for photothermal excitation beams. DWP-OCT system's sensitivity is 102 dB, axial resolution is 13 mu m in tissue and uses a real-time digital dispersion compensation algorithm. Noise floor for optical pathlength measurements is 300 pm in the signal frequency range (380-400 Hz) of photothermal modulation frequencies. Blood SO2 level is calculated from measured optical pathlength (op) signal in a 300 mu m diameter microvessel phantom introduced by the two photothermal excitation beams. En-face and B-scan images of a phantom microvessel are recorded, and six blood samples' SO2 levels are measured using DWP-OCT and compared with values provided by a commercial blood oximeter. A mathematical model indicates thermal diffusion introduces a systematic artifact that over-estimates SO2 values and is consistent with measured data
引用
收藏
页数:7
相关论文
共 50 条
  • [31] Absolute retinal blood flow measurement with a dual-beam Doppler optical coherence tomography
    Jiao, Shuliang
    Zhang, Hao F.
    Puliafito, Carmen A.
    INVESTIGATIVE OPHTHALMOLOGY & VISUAL SCIENCE, 2014, 55 (13)
  • [32] Dual-wavelength optical sensor for fire detection and measurement of aerosol mass concentration
    Xia, Jingjing
    Zhou, Yi
    Zeng, Jin
    FIRE SAFETY JOURNAL, 2024, 146
  • [33] Measurement of rainfall by dual-wavelength microwave attenuation
    Holt, AR
    Goddard, JWF
    Upton, GJG
    Willis, MJ
    Rahimi, AR
    Baxter, PD
    Collier, CG
    ELECTRONICS LETTERS, 2000, 36 (25) : 2099 - 2101
  • [34] Characterization and oxygen saturation study of human retinal blood vessels evaluated by spectroscopic Optical Coherence Tomography Angiography
    Poddar, Raju
    Basu, Mainak
    OPTICS AND LASER TECHNOLOGY, 2020, 122
  • [35] WAVELENGTH PROBING OPTICAL COHERENCE TOMOGRAPHY
    Chang, Shoude
    Mao, Youxin
    JOURNAL OF INNOVATIVE OPTICAL HEALTH SCIENCES, 2011, 4 (01) : 79 - 88
  • [36] WAVELENGTH PROBING OPTICAL COHERENCE TOMOGRAPHY
    Chang, Shoude
    Mao, Youxin
    Flueraru, Costel
    OPTICS IN HEALTH CARE AND BIOMEDICAL OPTICS IV, 2010, 7845
  • [37] Three-wavelength technique for the measurement of oxygen saturation in arterial blood and in venous blood
    Nitzan, Meir
    Engelberg, Shlomo
    JOURNAL OF BIOMEDICAL OPTICS, 2009, 14 (02)
  • [38] DUAL-WAVELENGTH ADAPTIVE OPTICAL-SYSTEMS
    WINOCUR, J
    APPLIED OPTICS, 1983, 22 (23): : 3711 - 3715
  • [39] Dual wavelength analysis and classification of brain tumor tissue with optical coherence tomography
    Strenge, Paul
    Lange, Birgit
    Draxinger, Wolfgang
    Hagel, Christian
    Grill, Christin
    Danicke, Veit
    Theisen-Kunde, Dirk
    Spahr-Hess, Sonja
    Bonsanto, Matteo M.
    Huber, Robert
    Handels, Heinz
    Brinkmann, Ralf
    ADVANCED BIOMEDICAL AND CLINICAL DIAGNOSTIC AND SURGICAL GUIDANCE SYSTEMS XXI, 2023, 12368
  • [40] Dual wavelength analysis and classification of brain tumor tissue with optical coherence tomography
    Strenge, Paul
    Lange, Birgit
    Draxinger, Wolfgang
    Hagel, Christian
    Grill, Christin
    Danicke, Veit
    Theisen-Kunde, Dirk
    Spahr-Hess, Sonja
    Bonsanto, Matteo M.
    Huber, Robert
    Handels, Heinz
    Brinkmann, Ralf
    QUANTUM TECHNOLOGY: DRIVING COMMERCIALISATION OF AN ENABLING SCIENCE III, 2022, 12335