The experience of application of additive technologies in the military medical organizations and the Military innovation technopolis «ERA»

S. A. Peleshok , I. S. Zheleznyak , D. V. Ovchinnikov , O. A. Nagibovich , S. V. Kushnarev , A. V. Shirshin , V. N. Bolekhan , V. N. Adamenko , I. V. Gaivoronsky , I. V. Rudchenko , V. A. Demyanenko , R. S. Sokurenko , Ya. I. Nebylitsa , T. A. Davidenko

Bulletin of the Russian Military Medical Academy ›› 2019, Vol. 21 ›› Issue (3) : 126 -131.

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Bulletin of the Russian Military Medical Academy ›› 2019, Vol. 21 ›› Issue (3) : 126 -131. DOI: 10.17816/brmma20699
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The experience of application of additive technologies in the military medical organizations and the Military innovation technopolis «ERA»

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Abstract

The prospects for the development and objectives of the Military Innovation Technopolis «ERA» for the search, development and implementation of advanced ideas and developments, breakthrough technologies in strengthening the defense capability of the Russian Federation are discussed. According to the scientific direction «Biotechnical Systems and Technologies», a testing laboratory of biomedical and additive technologies was created in the Military Innovation Technopolis «ERA» to study 3D printing technologies of models of organs, tissues and medical devices for use in military medicine. Highlights the issues of testing and implementation of medical products manufactured using 3D printing (models of preoperative (pathological) organs, tires and langets, anatomical models of complex bones and elements of the human skeleton) with the participation of Military innovation technopolis «ERA» and the S.M. Kirov Military Medical Academy to medical institutions of the Ministry of Defense of the Russian Federation, for use in preoperative planning, training, training of doctors, rehabilitation. In November 2018, the country’s supreme leaders visited Military Innovation Technopolis «ERA», to which the first results of the technopolis were presented, including the testing laboratory of biomedical and additive technologies. In the laboratory, more than 150 models of complex bones and skeleton elements were made, which are used to train cadets and students of the S.M. Kirov Military Medical Academy at the Department of Normal Anatomy. More than a dozen organ layouts with various pathologies were created and sent to military hospitals and clinics fractures of the bones of the hand and forearm. Unique medical devices are created, for example, a holder for an ultrasound device sensor. A clinical example of the use of a preoperative model for planning an operation to remove an aortic aneurysm in the Military Innovation Technopolis is given. In the main and central military clinical hospitals of the Ministry of Defense of the Russian Federation, working groups have been created for the introduction of additive technologies, at whose meetings the use of 3D printing technologies in personalized military medicine is discussed. The use of three-dimensional printing in military medicine will significantly improve the traditional methods of visualization and, accordingly, diagnostic and treatment of pathology.

Keywords

three-dimensional printing / 3D-printing in medicine / anatomical models of bones / preoperative models / splints / medical products / preoperative planning / models of bodies / the personalized medicine / interaction of the medical organizations

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S. A. Peleshok, I. S. Zheleznyak, D. V. Ovchinnikov, O. A. Nagibovich, S. V. Kushnarev, A. V. Shirshin, V. N. Bolekhan, V. N. Adamenko, I. V. Gaivoronsky, I. V. Rudchenko, V. A. Demyanenko, R. S. Sokurenko, Ya. I. Nebylitsa, T. A. Davidenko. The experience of application of additive technologies in the military medical organizations and the Military innovation technopolis «ERA». Bulletin of the Russian Military Medical Academy, 2019, 21(3): 126-131 DOI:10.17816/brmma20699

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RIGHTS & PERMISSIONS

Peleshok S.A., Zheleznyak I.S., Ovchinnikov D.V., Nagibovich O.A., Kushnarev S.V., Shirshin A.V., Bolekhan V.N., Adamenko V.N., Gaivoronsky I.V., Rudchenko I.V., Demyanenko V.A., Sokurenko R.S., Nebylitsa Ya.I., Davidenko T.A.

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