Електронні засоби дослідження механічних властивостей біологічних тканин

Ключові слова: апаратно-програмний комплекс, біологічна тканина, біосумісний матеріал, вимірювання, механічні властивості

Анотація

Описано розроблений експериментальний апаратно-програмний комплекс для дослідження деформації біологічних тканин і біосумісних матеріалів при стисненні та представлено результати її практичного застосування. Проаналізовано отримані залежності механічного напруження зразків біологічних тканин від їхньої деформації під дією тиску. Наведено приклади використання практичних даних, вимірюваних розробленою установкою, та визначено подальші кроки для розвитку досліджень в даному напрямку.

Посилання

Kuz’min A.V. 3D modeling and visualization in medicine. Penza State University Bulletin, 2015, no. 4 (12), pp. 122–126. (Rus)

Kuz’min A.V., Milyutkin M.G., Cherepanov A.S. et al. Algorithms for estimation of scene objects visibility in simulation training of basic laparoscopy skills. University proceedings. Volga region. Technical sciences, 2013, no. 3, pp. 40–51. (Rus)

Gavryushin S.S., Utenkov V.M., Khrykov S.S. Biomechanical modeling of personalised implants for reconstructive surgery. Engineering Journal: Science and Innovations, 2017, no. 2 (62), pp. 1–13. https://doi.org/10.18698/2308-6033-2017-2-1582

Nikolaev S.N. [Software module for 3D modeling of breast augmentation surgery]. Computer Tools in Education, 2012, no. 3, с. 38–46. (Rus)

Paton B.E. Welding and related technologies for medical application. The Paton Welding Journal, 2008, no. 11, pр. 11–19.

Paton B.E., Bulavyn L.A., Aktan O.Yu. et al. [Structural transformations of collagen during electric welding of soft living tissues]. Reports of the National Academy of Sciences of Ukraine, 2010, no. 2, pp. 94–101. (Ukr)

Lebedev A.V., Dubko A.G., Lopatkina K.G. Features of application of the theory of contact welding of metals to welding of living tissues. Technical Electrodynamics. Special Issue "Power Electronics and Energy Efficiency", 2012, vol. 2, p. 187–192. (Ukr)

Grigorkina E.S., Kuzmin A.V., Sergeev S.V. Computer 3D-modeling of traumatic impact on the upper jaw. Practical Medicine, 2015, no. 2 (87), т. 2, с. 76–78. (Rus)

Lam C.K., Sundaraj K., Sulaiman, M.N. Computer-based virtual reality simulator for phacoemulsification cataract surgery training. Virtual Reality 18, 2014, pp. 281–293. https://doi.org/10.1007/s10055-014-0251-3.

Chanthasopeephan T., Desai J. P. and Lau A. C. W. Modeling soft-tissue deformation prior to cutting for surgical simulation: finite element analysis and study of cutting parameters. IEEE Transactions on Biomedical Engineering, 2007, vol. 54, no. 3, pp. 349–359, https://doi.org/10.1109/TBME.2006.886937.

Guo Z., You S., Wan X., Bićanić N. A FEM-based direct method for material reconstruction inverse problem in soft tissue elastography. Computers and Structures, 2010, vol. 88, iss. 23–24, pp. 1459–1468. https://doi.org/10.1016/j.compstruc.2008.06.004

Lekishvili M.V. Tekhnologii izgotovleniya kostnogo plasticheskogo materiala dlya primeneniya v vosstanovitel'noy khirurgii: avtoref. dis. … d-ra med. nauk [Technologies for the manufacture of bone plastic material for use in reconstructive surgery: abstract of dis. ... Dr. med. sciences], Moscow, 2005, 47 p. (Rus)

Nigmatullin R.T. Ocherki transplantatsii tkaney [Essays on tissue transplantation], Ufa, 2003, 160 с. (Rus)

Savel’yev V.I., Kornilov N.V. Kalinin A.V. Aktual’nyye problemy transplantatsii tkaney [Actual problems of tissue transplantation]. SPb., Morsar AV, 2001, 157 p.(Rus)

Gasser T.C., Ogden R.W., and Holzapfel G.A. Hyperelastic modelling of arterial layers with distributed collagen fibre orientations. Journal of the royal society interface, 2006, vol. 3, iss. 6, pp. 15–35. http://doi.org/10.1098/rsif.2005.0073

Holzapfel G.A., Gasser T.C., and Ogden R.W. A new constitutive framework for arterial wall mechanics and a comparative study of material models. Journal of elasticity and the physical science of solids, 2000, vol. 61, pp. 1–48. https://doi.org/10.1023/A:1010835316564

Antonyuk V.S., Bondarenko M.O., Vashchenko V.A. et al. Biophysica i biomekhanicsа [Biophysics and biomechanics]. Kyiv, NTUU "KPI", 2012, 344 p. (Ukr)

Lur’ye A.I. Nelineynaya teoriya uprugosti [Nonlinear theory of elasticity]. Moscow, Nauka, 1980, 260 p. (Rus)

Vladimirov Yu.A., Roshchupkin D.I., Potapenko A.Ya., Deyev A.I. Biophysica, [Biophysics]. Moscow, Meditsina, 1983, 272 p. (Rus)

Franzke C.W., Bruckner P., Bruckner-Tuderman L. Collagenous transmembrane proteins: recent insights into biology and pathology. Journal of Biological Chemistry, 2005, vol. 280, no. 6, pp. 4005–4008. https://doi.org/10.1074/jbc.r400034200

Purinya B.A., Kas’yanov V.A. Biomekhanika krupnykh krovenosnykh sosudov cheloveka [Biomechanics of human large blood vessels]. Riga, Zinatne, 1980, 260 p.

Yuskov V.N. Khirurgiya v voprosakh i otvetakh [Surgery in questions and answers]. Rostov-on-Don, Feniks, 2000, 573 p.

Instron — Low-Force Testing of Tissues and Biomaterials In Vitro. https://www.instron.us/testing-solutions/by-material/biomedical/tension/tissues--biomaterials (accessed date: 10.10.2020)

Yuen Q. W.-H., Zheng Y.-P., Huang Y.-P. et al. In-vitro strain and modulus measurements in porcine cervical lymph nodes. The Open Biomedical Engineering Journal, 2011, vol. 5, pp. 39–46. https://doi.org/10.2174/1874120701105010039

Advantech USB-4716 200 kS/s, 16-Bit, 16-Ch Multifunction DAQ USB Module, https://www.advantech.com/products/1-2mlkno/usb-4716/mod_a3ab933c-c6d3-49eb-9d25-58cacecdef7a (accessed date: 10.10.2020)

Arduino, https://www.arduino.cc (accessed date: 10.10.2020)

HX711 — 24-Bit Analog-to-Digital Converter (ADC) for Weigh Scales. Datasheet, http://image.dfrobot.com/image/data/SEN0160/hx711_english.pdf (accessed date: 10.10.2020)

Begun P.I., Afonin P.N. Modelirovaniye v biomekhanike [Modeling in biomechanics]. Moscow, Vysshaya shkola 2004, 390 р.

Nealen A., Müller M., Keiser R. et al. Physically based deformable models in computer graphics. Computer Graphics Forum, 2006, vol. 25, iss. 4, pp. 809–836. https://doi.org/10.1111/j.1467-8659.2006.01000.x

Опубліковано
2020-12-27