• Journal of Innovative Optical Health Sciences
  • Vol. 8, Issue 5, 1550041 (2015)
Alexey N. Pavlov1、*, Arkady S. Abdurashitov1, Olga N. Pavlova1, Valery V. Tuchin1, Olga S. Sindeeva2, Sergey S. Sindeev2, and Oxana V. Semyachkina-Glushkovskaya2
Author Affiliations
  • 1Department of Physics, Saratov State University 83 Astrakhanskaya Str., Saratov 410012, Russia
  • 2Department of Biology, Saratov State University 83 Astrakhanskaya Str., Saratov 410012, Russia
  • show less
    DOI: 10.1142/s1793545815500418 Cite this Article
    Alexey N. Pavlov, Arkady S. Abdurashitov, Olga N. Pavlova, Valery V. Tuchin, Olga S. Sindeeva, Sergey S. Sindeev, Oxana V. Semyachkina-Glushkovskaya. Hidden stage of intracranial hemorrhage in newborn rats studied with laser speckle contrast imaging and wavelets[J]. Journal of Innovative Optical Health Sciences, 2015, 8(5): 1550041 Copy Citation Text show less
    References

    [1] R. W. Leech, P. Kohnen, "Subependymal and intraventricular hemorrhages in the newborn," Am. J. Pathol. 77, 465–475 (1974).

    [2] J. Baun, "Neonatal intracranial hemorrhage," J. Diagnostic Med. Sonography 7, 121–131 (1991).

    [3] P. Ballabh, A. Braun, M. Nedergaard, "Anatomic analysis of blood vessels in germinal matrix, cerebral cortex, and white matter in developing infants," Pediatr. Res. 56, 117–124 (2004).

    [4] P. Ballabh, "Intraventricular hemorrhage in premature infants: Mechanism of disease," Pediatr. Res. 67, 1–8 (2010).

    [5] J. D. Briers, S. Webster, "Laser speckle contrast analysis (LASCA): A non-scanning, full-field technique for monitoring capillary blood flow," J. Biomed. Opt. 1, 174–179 (1996).

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

    [7] S. Liu, P. Li, Q. Luo, "Fast blood flow visualization of high-resolution laser speckle imaging data using graphics processing unit," Opt. Express 16, 14321 (2008).

    [8] Y. Meyer, Wavelets: Algorithms and Applications, S.I.A.M., Philadelphia (1993).

    [9] Y. Meyer, Wavelets and Operators, Cambridge University Press, Cambridge (1993).

    [10] S. G. Mallat, A Wavelet Tour of Signal Processing, Academic Press, New York (1998).

    [11] P. S. Addison, The Illustrated Wavelet Transform Handbook: Introduction Theory and Applications in Science, Engineering, Medicine and Finance, IOP Publishing, Bristol (2002).

    [12] A. N. Pavlov, V. A. Makarov, E. Mosekilde, O. V. Sosnovtseva, "Application of wavelet-based tools to study the dynamics of biological processes," Briefings Bioinformatics 7(4), 375–389 (2006).

    [13] A. N. Pavlov, V. S. Anishchenko, "Multifractal analysis of complex signals," Phys. Uspekhi 50, 819– 834 (2007).

    [14] A. N. Pavlov, O. N. Pavlova, "Analysis of correlation properties of random processes using short signals," Tech. Phys. Letters 34, 306–308 (2008).

    [15] A. N. Pavlov, A. R. Ziganshin, O. A. Klimova, "Multifractal characterization of blood pressure dynamics: Stress-induced phenomena," Chaos, Solitons Fractals 24, 57–63 (2005).

    [16] A. N. Pavlov, O. V. Sosnovtseva, O. N. Pavlova, E. Mosekilde, N.-H. Holstein-Rathlou, "Rhythmic components in renal autoregulation: Nonlinear modulation phenomena," Chaos Solitons Fractals 41, 930–938 (2009).

    [17] A. N. Pavlov, O. N. Pavlova, E. Mosekilde, O. V. Sosnovtseva, "Characterization of renal blood flow regulation based on wavelet coefficients," Fluct. Noise Lett. 9, 259–270 (2010).

    [18] O. V. Semyachkina-Glushkovskaya, V. V. Lychagov, O. A. Bibikova, I. A. Semyachkin-Glushkovskiy, S. S. Sindeev, E. M. Zinchenko, M. M. Kassim, H. A. Braun, F. Al-Fatle, L. A. Hassani, V. V. Tuchin, "The experimental study of stress-related pathological changes in cerebral venous blood flow in newborn rats assessed by DOCT," J. Innov. Opt. Health Sci. 6(3) 1350023 (2013).

    [19] A. N. Pavlov, A. I. Nazimov, O. N. Pavlova, V. V. Lychagov, V. V. Tuchin, O. A. Bibikova, S. S. Sindeev, O. V. Semyachkina-Glushkovskaya, "Wavelet-based analysis of cerebrovascular dynamics in newborn rats with intracranial hemorrhages," J. Innov. Opt. Health Sci. 7(1), 1350055 (2014).

    [20] A. N. Pavlov, O. V. Semyachkina-Glushkovskaya, Y. Zhang, O. A. Bibikova, O. N. Pavlova, Q. Huang, D. Zhu, P. Li, V. V. Tuchin and Q. Luo, "Multiresolution analysis of pathological changes in cerebral venous dynamics in newborn mice with intracranial hemorrhage: Adrenorelated vasorelaxation," Physiol. Meas. 35, 1983–1999 (2014).

    [21] S. J. Kirkpatrick, D. D. Duncan and E. M. Wells- Gray, "Detrimental effects of speckle-pixel size matching in laser speckle contrast imaging," Opt. Lett. 33, 2886–2888 (2008).

    [22] A. Stefanovska, M. Bra i , H. D. Kvernmo, "Wavelet analysis of oscillations in the peripheral blood circulation measured by laser Doppler technique," IEEE Trans. Biomed. Eng. 46, 1230–1239 (1999).

    [23] R. Zhang, J. H. Zuckerman, K. Iwasaki, T. E. Wilson, C. G. Grandall, B. D. Levine, "Autonomic neural control od dynamic cerebral autoregulation in humans," Circulation 106, 1814–1820 (2002).

    [24] R. I. Kitney, T. Fulton, A. H. McDonald, D. A. Linkens, "Transient interactions between blood pressure, respiration and heart rate in man," J. Biomed. Eng. 7, 217–224 (1985).

    [25] J. F. Muzy, E. Bacry, A. Arneodo, "Wavelets and multifractal formalism for singular signals: Application to turbulence data," Phys. Rev. Lett. 67, 3515–3518 (1991).

    [26] J. F. Muzy, E. Bacry, A. Arneodo, "The multifractal formalism revisited with wavelets," Int. J. Bifurcation Chaos 4(2), 245–302 (1994).

    [27] P. Ch. Ivanov, L. A. Nunes Amaral, A. L. Goldberger, S. Havlin, M. G. Rosenblum, Z. R. Struzik, H. E. Stanley, "Multifractality in human heartbeat dynamics," Nature 399, 461–465 (1999).

    [28] H. E. Stanley, L. A. Nunes Amaral, A. L. Goldberger, S. Havlin, P. Ch. Ivanov, C.-K. Peng, "Statistical physics and physiology: Monofractal and multifractal approaches," Physica A 270, 309– 324 (1999).

    Alexey N. Pavlov, Arkady S. Abdurashitov, Olga N. Pavlova, Valery V. Tuchin, Olga S. Sindeeva, Sergey S. Sindeev, Oxana V. Semyachkina-Glushkovskaya. Hidden stage of intracranial hemorrhage in newborn rats studied with laser speckle contrast imaging and wavelets[J]. Journal of Innovative Optical Health Sciences, 2015, 8(5): 1550041
    Download Citation