Chinese Journal of Lasers, Volume. 50, Issue 9, 0907103(2023)

In Vivo Photoacoustic Endoscopy Imaging of Gastrointestinal Model of Septic Small-Animal

Xiaolong Chen1, Yizhi Liang1、*, Xiaoxuan Zhong1, Xue Bai1, Long Jin1, Wei Huang2, Cheng Huang3, Xiaobing Niu4, Shanshan Guo4, and Baiou Guan1
Author Affiliations
  • 1Guangdong Key Laboratory of Optical Fiber Sensing and Communication Technology, Institute of Photonics Technology, Jinan University, Guangzhou 511443, Guangdong, China
  • 2Department of Gastroenterology, First Affiliated Hospital of Jinan University, Guangzhou 510632, Guangdong, China
  • 3Guangdong Cardiovascular Institute, Guangdong Provincial People s Hospital, Guangzhou 510080, Guangdong, China
  • 4Guangzhou SINCHOO Medical Technology Co., Ltd., Guangzhou 510535, Guangdong, China
  • show less
    References(41)

    [2] Shen Y F, Cai G L. Research progress of microcirculation disorders associated with sepsis[J]. Chinese Journal of Critical Care & Intensive Care Medicine (Electronic Edition), 6, 160-164(2020).

    [3] Zhang X Y, Jia Z H, Yuan G Q. Research progress on application of microcirculation theory[J]. Liaoning Journal of Traditional Chinese Medicine, 40, 1940-1942(2013).

    [4] Ma X C. Sepsis is a disease of the microcirculation[J]. Chinese Critical Care Medicine, 23, 66-67(2011).

    [5] Liu L X, Wang X T, Chao Y G et al. Sepsis-induced acute kidney injury: a disease of the microcirculation[J]. Clinical Focus, 34, 595-598(2019).

    [6] Backer D D, Creteur J, Dubois M J et al. Microvascular alterations in patients with acute severe heart failure and cardiogenic shock[J]. American Heart Journal, 147, 91-99(2004).

    [7] Fang X S, Tang W C, Sun S J et al. Comparison of buccal microcirculation between septic and hemorrhagic shock[J]. Critical Care Medicine, 34, S447-S453(2006).

    [8] Zhao M Y, Li A, Zhuang H Z et al. The clinical significance of determining the severity and prognosis by monitoring the changes in sublingual microcircuiation in patients with severe sepsis[J]. Chinese Critical Care Medicine, 24, 158-161(2012).

    [9] Lü R L, Wu B Y. Detecting methods of skin blood microcirculation and its new progress[J]. Medical Recapitulate, 12, 124-126, 128(2006).

    [10] Tang X, Wang R L. Orthogonal polarization spectral and sidestream dark field imaging technology in microcirculation of sepsis[J]. Chinese General Practice, 14, 2110-2112(2011).

    [11] Lan B X, Liu W, Wang Y C et al. High-speed widefield photoacoustic microscopy of small-animal hemodynamics[J]. Biomedical Optics Express, 9, 4689-4701(2018).

    [12] Liu W, Zhou Y, Wang M R et al. Correcting the limited view in optical-resolution photoacoustic microscopy[J]. Journal of Biophotonics, 11, 201700196(2018).

    [13] Mallidi S, Luke G P, Emelianov S. Photoacoustic imaging in cancer detection, diagnosis, and treatment guidance[J]. Trends in Biotechnology, 29, 213-221(2011).

    [14] Rebling J, Estrada H, Gottschalk S et al. Dual-wavelength hybrid optoacoustic-ultrasound biomicroscopy for functional imaging of large-scale cerebral vascular networks[J]. Journal of Biophotonics, 11, e201800057(2018).

    [15] Bi R Z, Balasundaram G, Jeon S et al. Photoacoustic microscopy for evaluating combretastatin A4 phosphate induced vascular disruption in orthotopic glioma[J]. Journal of Biophotonics, 11, e201700327(2018).

    [16] Chen R M, He Y, Shi J H et al. Transparent high-frequency ultrasonic transducer for photoacoustic microscopy application[J]. IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control, 67, 1848-1853(2020).

    [17] Liang Y Z, Jin L, Guan B O et al. 2 MHz multi-wavelength pulsed laser for functional photoacoustic microscopy[J]. Optics Letters, 42, 1452-1455(2017).

    [18] Xie B K, Liu S J, Wu Y B et al. Dual mode imaging of all-optical non-contact photoacoustic tomography and optical coherence tomography[J]. Acta Optica Sinica, 36, 0111001(2016).

    [19] Liang Y Z, Liu J W, Wang L D et al. Noise-reduced optical ultrasound sensor via signal duplication for photoacoustic microscopy[J]. Optics Letters, 44, 2665-2668(2019).

    [20] Zhou H C, Chen N, Zhao H et al. Optical-resolution photoacoustic microscopy for monitoring vascular normalization during anti-angiogenic therapy[J]. Photoacoustics, 15, 100143(2019).

    [21] Wu T, Ke J Y, Song Z Q et al. Scanless and lensless 3D endoscopic imaging through coherent fiber bundle[J]. Acta Optica Sinica, 41, 1811003(2021).

    [22] Brannon-Peppas L, Blanchette J O. Nanoparticle and targeted systems for cancer therapy[J]. Advanced Drug Delivery Reviews, 56, 1649-1659(2004).

    [23] Zeng S L, Liu L J, Chen T et al. Acoustic-resolution photoacoustic microscopy with dual-sided illumination[J]. Chinese Journal of Lasers, 49, 1507201(2022).

    [24] Guo H. Tumor theranostics based on multi-wavelength photoacoustic effect[D], 2-94(2022).

    [25] Liu C, Liang Y Z, Wang L D. Optical-resolution photoacoustic microscopy of oxygen saturation with nonlinear compensation[J]. Biomedical Optics Express, 10, 3061-3069(2019).

    [26] Li M C, Tang Y, Yao J. Photoacoustic tomography of blood oxygenation: a mini review[J]. Photoacoustics, 10, 65-73(2018).

    [27] Eghbal A, Atahar M, Sreyankar N et al. Classification of human ovarian cancer using functional, spectral, and imaging features obtained from in vivo photoacoustic imaging[J]. Biomedical Optics Express, 10, 2303-2317(2019).

    [28] Akons K, Dann E J, Yelin D. Measuring blood oxygen saturation along a capillary vessel in human[J]. Biomedical Optics Express, 8, 5342-5348(2017).

    [29] Fu W B, Liang Y Z, Zhong X X et al. Optical fiber photoacoustic blood oxygen saturation measurement and functional imaging[J]. Acta Optica Sinica, 42, 2017001(2022).

    [30] Li Q. Research on fiber-optic photoacoustic endoscopy[D], 1-34(2020).

    [31] Zhang H F, Maslov K, Sivaramakrishnan M et al. Imaging of hemoglobin oxygen saturation variations in single vessels in vivo using photoacoustic microscopy[J]. Applied Physics Letters, 90, 053901(2007).

    [32] Wang X D, Xie X Y, Ku G et al. Noninvasive imaging of hemoglobin concentration and oxygenation in the rat brain using high-resolution photoacoustic tomography[J]. Journal of Biomedical Optics, 11, 024015(2006).

    [33] Liang Y Z, Jin L, Wang L D et al. Fiber-laser-based ultrasound sensor for photoacoustic imaging[J]. Scientific Reports, 7, 40849(2017).

    [34] Lei H, Johnson L A, Liu S C et al. Characterizing intestinal inflammation and fibrosis in Crohn's disease by photoacoustic imaging: feasibility study[J]. Biomedical Optics Express, 7, 2837-2848(2016).

    [35] Zhu X Y, Huang Q, DiSpirito A et al. Real-time whole-brain imaging of hemodynamics and oxygenation at micro-vessel resolution with ultrafast wide-field photoacoustic microscopy[J]. Light: Science & Applications, 11, 138(2022).

    [36] He Y, Shi J H, Maslov K I et al. Wave of single-impulse-stimulated fast initial dip in single vessels of mouse brains imaged by high-speed functional photoacoustic microscopy[J]. Journal of Biomedical Optics, 25, 066501(2020).

    [37] Gao R, Xu Z, Ren Y et al. Nonlinear mechanisms in photoacoustics: powerful tools in photoacoustic imaging[J]. Photoacoustics, 22, 100243(2021).

    [38] Tian C, Xie Z X, Fabiilli M L et al. Dual-pulse nonlinear photoacoustic technique: a practical investigation[J]. Biomedical Optics Express, 6, 2923-2933(2015).

    [39] Guo Z D, Li Z, Deng Y X et al. Photoacoustic microscopy for evaluating a lipopolysaccharide-induced inflammation model in mice[J]. Journal of Biophotonics, 12, e201800251(2019).

    [40] Guevara E, Berti R, Londono I et al. Imaging of an inflammatory injury in the newborn rat brain with photoacoustic tomography[J]. PLoS One, 8, e83045(2013).

    [41] Shi B, Yin C, Guo H et al. Influence of intensive insulin therapy on the intestinal microcirculatory dysfunction in rats with sepsis[J]. Chinese Critical Care Medicine, 21, 492-494(2009).

    [42] Aljada A, Ghanim H, Mohanty P et al. Glucose intake induces an increase in activator protein 1 and early growth response 1 binding activities, in the expression of tissue factor and matrix metalloproteinase in mononuclear cells, and in plasma tissue factor and matrix metalloproteinase concentrations[J]. The American Journal of Clinical Nutrition, 80, 51-57(2004).

    Tools

    Get Citation

    Copy Citation Text

    Xiaolong Chen, Yizhi Liang, Xiaoxuan Zhong, Xue Bai, Long Jin, Wei Huang, Cheng Huang, Xiaobing Niu, Shanshan Guo, Baiou Guan. In Vivo Photoacoustic Endoscopy Imaging of Gastrointestinal Model of Septic Small-Animal[J]. Chinese Journal of Lasers, 2023, 50(9): 0907103

    Download Citation

    EndNote(RIS)BibTexPlain Text
    Save article for my favorites
    Paper Information

    Category: Biomedical Optical Imaging

    Received: Nov. 24, 2022

    Accepted: Jan. 12, 2023

    Published Online: Apr. 24, 2023

    The Author Email: Liang Yizhi (liangyizhi88528@gmail.com)

    DOI:10.3788/CJL221450

    Topics