Interplay of temperature, thermal-stresses and strains in laser-assisted modification of collagenous tissues: Speckle-contrast and OCT-based studies

被引:28
作者
Baum, Olga, I [1 ]
Zaitsev, Vladimir Y. [2 ]
Yuzhakov, Alexey, V [1 ,2 ]
Sviridov, Alexander P. [1 ]
Novikova, Maria L. [1 ]
Matveyev, Alexander L. [2 ]
Matveev, Lev A. [2 ]
Sovetsky, Alexander A. [2 ]
Sobol, Emil N. [3 ]
机构
[1] Russian Acad Sci, Fed Sci Res Ctr Crystallog & Photon, Inst Photon Technol, Moscow, Russia
[2] Russian Acad Sci, Inst Appl Phys, Nizhnii Novgorod, Russia
[3] IPG Med Corp, Marlborough, MA USA
基金
俄罗斯科学基金会; 俄罗斯基础研究基金会;
关键词
laser-tissue interaction; optical coherence elastography; speckle-contrast imaging; strain mapping; thermomechanical tissue reshaping; OPTICAL COHERENCE ELASTOGRAPHY; PORCINE SEPTAL CARTILAGE; ARTICULAR-CARTILAGE; COSTAL CARTILAGE; ELASTIC-MODULUS; REAL-TIME; DYNAMICS; RADIATION; VISUALIZATION; IRRADIATION;
D O I
10.1002/jbio.201900199
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Moderate heating of collagenous tissues such as cartilage and cornea by infrared laser irradiation can produce biologically nondestructive structural rearrangements and relaxation of internal stresses resulting in the tissue reshaping. The reshaping results and eventual changes in optical and biological properties of the tissue strongly depend on the laser-irradiation regime. Here, a speckle-contrast technique based on monochromatic illumination of the tissue in combination with strain mapping by means of optical coherence elastography (OCE) is applied to reveal the interplay between the temperature and thermal stress fields producing tissue modifications. The speckle-based technique ensured en face visualization of cross correlation and contrast of speckle images, with evolving proportions between contributions of temperature increase and thermal-stresses determined by temperature gradients. The speckle-technique findings are corroborated by quantitative OCE-based depth-resolved imaging of irradiation-induced strain-evolution. The revealed relationships can be used for real-time control of the reshaping procedures (e.g., for laser shaping of cartilaginous implants in otolaryngology and maxillofacial surgery) and optimization of the laser-irradiation regimes to ensure the desired reshaping using lower and biologically safer temperatures. The figure of waterfall OCE-image demonstrates how the strain-rate maximum arising in the heating-beam center gradually splits and drifts towards the zones of maximal thermal stresses located at the temperature-profile slopes.
引用
收藏
页数:16
相关论文
共 73 条
  • [1] Off-axis holographic laser speckle contrast imaging of blood vessels in tissues
    Abdurashitov, Arkady
    Bragina, Olga
    Sindeeva, Olga
    Sergey, Sindeev
    Semyachkina-Glushkovskaya, Oxana V.
    Tuchin, Valery V.
    [J]. JOURNAL OF BIOMEDICAL OPTICS, 2017, 22 (09)
  • [2] Histogram analysis of laser speckle contrast image for cerebral blood flow monitoring
    Abdurashitov A.S.
    Lychagov V.V.
    Sindeeva O.A.
    Semyachkina-Glushkovskaya O.V.
    Tuchin V.V.
    [J]. Frontiers of Optoelectronics, 2015, 8 (2) : 187 - 194
  • [3] Ball ST, 2004, CLIN ORTHOP RELAT R, P246
  • [4] Photothermal coagulation of blood vessels: a comparison of high-speed optical coherence tomography and numerical modelling
    Barton, JK
    Rollins, A
    Yazdanfar, S
    Pfefer, TJ
    Westphal, V
    Izatt, JA
    [J]. PHYSICS IN MEDICINE AND BIOLOGY, 2001, 46 (06) : 1665 - 1678
  • [5] Baum O., 2017, J BIOMEDICAL PHOTONI, V3
  • [6] New clinical application of laser correction of cartilage shape for implantation in otolaryngology
    Baum, O., I
    Alexandrovskaya, Yu M.
    Svistushkin, V. M.
    Starostina, S., V
    Sobol, E. N.
    [J]. LASER PHYSICS LETTERS, 2019, 16 (03)
  • [7] New laser technologies in ophthalmology for normalisation of intraocular pressure and correction of refraction
    Baum, O. I.
    Yuzhakov, A. V.
    Bolshunov, A. V.
    Siplivyi, V. I.
    Khomchik, O. V.
    Zheltov, G. I.
    Sobol, E. N.
    [J]. QUANTUM ELECTRONICS, 2017, 47 (09) : 860 - 866
  • [8] Thermomechanical effect of pulse-periodic laser radiation on cartilaginous and eye tissues
    Baum, O. I.
    Zheltov, G. I.
    Omelchenko, A. I.
    Romanov, G. S.
    Romanov, O. G.
    Sobol, E. N.
    [J]. LASER PHYSICS, 2013, 23 (08)
  • [9] Laser-assisted formation of micropores and nanobubbles in sclera promote stable normalization of intraocular pressure
    Baum, Olga
    Wachsmann-Hogiu, Sebastian
    Milner, Thomas
    Sobol, Emil
    [J]. LASER PHYSICS LETTERS, 2017, 14 (06)
  • [10] Microstructural Changes in Sclera Under Thermo-mechanical Effect of 1.56μm Laser Radiation Increasing Transscleral Humor Outflow
    Baum, Olga I.
    Sobol, Emil N.
    Bolshunov, Andrey V.
    Fedorov, Anatoly A.
    Khomchik, Olga V.
    Omelchenko, Alexander I.
    Shcherbakov, Evgenii M.
    [J]. LASERS IN SURGERY AND MEDICINE, 2014, 46 (01) : 46 - 53