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53. VIC-2D Image Analysis software, Correlated Solutions, incorporated,
West Columbia, SC 29169.
54. Wang Z. On the accuracy and speed enhancement of digital image
correlation technique. Journal of Experimental Mechanics. 2011, Vol. 26,
No. 5, p 632-638.
55. Luu L., Wang Z., Vo M., Hoang T., and Ma J. Accuracy enhancement of
digital image correlation with B-spline interpolation. Optics Letters. 2011,
Vol. 36, No. 16, p 3070-3072.
56. Nazarchuk, Z., Т. Voronyak, and L. Muravsky, Development of the
Optical-Digital Methods of Monitoring of the Surfaces of Structural
Elements for the Purposes of Technical Diagnostics. Materials Science.
2021. 57(3): p. 344-354.
57. Nazarchuk, Z., L. Muravsky, and D. Kuryliak, To the problem of the
subsurface defects detection: theory and experiment. Procedia Structural
Integrity. 2019. 16: p. 11-18.
58. Sakharuk, О. Determination of the field of local displacements by the
digital speckle correlation method with adaptive segmentation of the
images. Materials Science. 2014. 49(5): p. 660-666.
59. Maksymenko, O.P. Multilaser spot tracking technology for bridge
structure displacement measuring. Structural Control and Health
Monitoring. 2021. 28(3): p. e2675.
60. Maksymenko, O.P., L.F. Frankevych, and O.M. Sakharuk. Determination
of the moduli of elasticity of materials by the method of digital image
correlation. Materials Science. 2013. 48(6): p. 825-831.
61. G. B. Olson. Designing a New Material World. Science (Washington, DC,
U.S.). 2000, Vol. 288, 993-998.
62. D. L. McDowell, F. P. E. Dunne. Adv. Very High Cycle Fatig. 2010, 32,
1521.
63. C. C. Tasan, M. Diehl, D. Yan, C. Zambaldi, P. Shanthraj, F. Roters, D.
Raabe. Acta Mater. 2014, 81, 386.