Chinese Optics Letters, Volume. 20, Issue 1, 011702(2022)

Sample entropy analysis of laser speckle fluctuations to suppress motion artifact on blood flow monitoring Editors' Pick

Sungchul Kim1, Evgenii Kim2, Eloise Anguluan1, and Jae Gwan Kim1、*
Author Affiliations
  • 1Department of Biomedical Science & Engineering, Institute of Integrated Technology, Gwangju Institute of Science and Technology (GIST), Gwangju 61005, Republic of Korea
  • 2Center for Bionics, Biomedical Research Institute, Korea Institute of Science and Technology (KIST), Seoul 02792, Republic of Korea
  • show less
    References(21)

    [1] P. G. Vaz, A. Humeau-Heurtier, E. Figueiras, C. Correia, J. Cardoso. Laser speckle imaging to monitor microvascular blood flow: a review. IEEE Rev. Biomed. Eng., 9, 106(2016).

    [2] D. A. Boas, A. K. Dunn. Laser speckle contrast imaging in biomedical optics. J. Biomed. Opt., 15, 011109(2010).

    [3] J. D. Briers. Laser speckle contrast imaging for measuring blood flow. Opt. Applicata, 37, 139(2007).

    [4] K. Basak, M. Manjunatha, P. K. Dutta. Review of laser speckle-based analysis in medical imaging. Med. Biol. Eng. Comput., 50, 547(2012).

    [5] A. Khalil, A. Humeau-Heurtier, G. Mahé, P. Abraham. Laser speckle contrast imaging: age-related changes in microvascular blood flow and correlation with pulse-wave velocity in healthy subjects. J. Biomed. Opt., 20, 051010(2014).

    [6] P. Miao, Z. Chao, Y. Zhang, N. Li, N. V. Thakor. Entropy analysis reveals a simple linear relation between laser speckle and blood flow. Opt. Lett., 39, 3907(2014).

    [7] J. A. Bonachela, H. Hinrichsen, M. A. Munoz. Entropy estimates of small data sets. J. Phys. A, 41, 202001(2008).

    [8] M. Costa, A. L. Goldberger, C.-K. Peng. Multiscale entropy analysis of biological signals. Phys. Rev. E, 71, 021906(2005).

    [9] J. S. Richman, J. R. Moorman. Physiological time-series analysis using approximate entropy and sample entropy. Am. J. Physiol. Heart Circ. Physiol., 278, H2039(2000).

    [10] M. Costa, A. L. Goldberger, C.-K. Peng. Multiscale entropy analysis of complex physiologic time series. Phys. Rev. Lett., 89, 068102(2002).

    [11] G. Mahé, S. Durand, A. Humeau, G. Leftheriotis, P. Rousseau, P. Abraham. Air movements interfere with laser speckle contrast imaging recordings. Lasers Med. Sci., 27, 1073(2012).

    [12] R. Bi, J. Dong, K. Lee. Deep tissue flowmetry based on diffuse speckle contrast analysis. Opt. Lett., 38, 1401(2013).

    [13] M. Seong, Z. Phillips, P. M. Mai, C. Yeo, C. Song, K. Lee, J. G. Kim. Simultaneous blood flow and blood oxygenation measurements using a combination of diffuse speckle contrast analysis and near-infrared spectroscopy. J. Biomed. Opt., 21, 027001(2016).

    [14] S. M. White, M. Valdebran, K. M. Kelly, B. Choi. Simultaneous blood flow measurement and dermoscopy of skin lesions using dual-mode dermascope. Sci. Rep., 8, 16941(2018).

    [15] R. Selvan, P. Parthasarathi, S. S. Iyengar, S. Ananthamurthy, S. Bhattacharya. Estimation of membrane bending modulus of stiffness tuned human red blood cells from micropore filtration studies. PLoS ONE, 14, e0226640(2019).

    [16] A. S. Abdurashitov, V. V. Lychagov, O. A. Sindeeva, O. V. Semyachkina-Glushkovskaya, V. V. Tuchin. Histogram analysis of laser speckle contrast image for cerebral blood flow monitoring. Front. Optoelectron., 8, 187(2015).

    [17] B. Lertsakdadet, C. Dunn, A. Bahani, C. Crouzet, B. Choi. Handheld motion stabilized laser speckle imaging. Biomed. Opt. Express, 10, 5149(2019).

    [18] B. Lertsakdadet, B. Y. Yang, C. E. Dunn, A. Ponticorvo, C. Crouzet, N. Bernal, A. J. Durkin, B. Choi. Correcting for motion artifact in handheld laser speckle images. J. Biomed. Opt., 23, 036006(2018).

    [19] G. Mahé, P. Rousseau, S. Durand, S. Bricq, G. Leftheriotis, P. Abraham. Laser speckle contrast imaging accurately measures blood flow over moving skin surfaces. Microvasc. Res., 81, 183(2011).

    [20] L. M. Richards, E. L. Towle, D. J. Fox, A. K. Dunn. Intraoperative laser speckle contrast imaging with retrospective motion correction for quantitative assessment of cerebral blood flow. Neurophotonics, 1, 015006(2014).

    [21] X. Liu, J. Wei, L. Meng, W. Cheng, X. Zhu, J. Lu, P. Li. Motion correction of laser speckle imaging of blood flow by simultaneous imaging of tissue structure and non-rigid registration. Opt. Lasers Eng., 140, 106526(2021).

    Cited By
    Tools

    Get Citation

    Copy Citation Text

    Sungchul Kim, Evgenii Kim, Eloise Anguluan, Jae Gwan Kim. Sample entropy analysis of laser speckle fluctuations to suppress motion artifact on blood flow monitoring[J]. Chinese Optics Letters, 2022, 20(1): 011702

    Download Citation

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

    Category: Biophotonics

    Received: Aug. 16, 2021

    Accepted: Oct. 21, 2021

    Posted: Oct. 22, 2021

    Published Online: Nov. 18, 2021

    The Author Email: Jae Gwan Kim (jaekim@gist.ac.kr)

    DOI:10.3788/COL202220.011702

    Topics