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Перегляд за Автор "Shlykov, Vladyslav"

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    Automated design systems. Workshop in FreeCAD
    (Igor Sikorsky Kyiv Polytechnic Institute, 2021-08-30) Shlykov, Vladyslav; Rudnitska, Olena
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    Biomedical devices, apparatus and complexes
    (Igor Sikorsky Kyiv Polytechnic Institute, 2023-06) Bogomolov, Mykola; Shlykov, Vladyslav; Sychyk, Maryna
    The series of lectures discusses the theoretical foundations, principles of operation and basic optical and schematic review of modern non-drug treatments used in medical physiotherapy and rehabilitation, which will design and operate highly effective therapeutic devices, perform their repair and maintenance, conduct research on various external factors on the human body. The practical part is aimed at scientific and analytical examination, design, construction, research, testing, operation and technical expertise, engineering and information support of physiotherapy equipment and technologies, computer simulation of medical information and signals to stimulate pathological organs and tissues.
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    Development and operation of physiotherapeutic medical devices
    (Igor Sikorsky Kyiv Polytechnic Institute, 2023-06) Bogomolov, Mykola; Shlykov, Vladyslav; Sychyk, Maryna
    The series of lectures discusses the theoretical foundations, principles of operation and basic optical and schematic schemes of modern non-drug treatments used in medical physiotherapy and rehabilitation, which will design and operate highly effective therapeutic devices, perform their repair and maintenance, conduct research on various external factors. on the human body. The practical part is aimed at scientific and analytical examination, design, construction, research, testing, operation and technical expertise, engineering and information support of physiotherapy equipment and technologies, computer simulation of medical information and signals to stimulate pathological organs and tissues.
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    Processing of thermographic images of brain vessels
    (Igor Sikorsky Kyiv Polytechnic Institute, 2023) Mahmoud Hassan Sabha; Shlykov, Vladyslav
    The focus of the study is the use of thermographic images of brain vessels obtained through the Flir i7 thermal imager to develop a software product for processing and analysing these images. The aim of the work is to create software that can detect pathologies of brain blood vessels (arteries, veins, lymphatic channels) based on the temperature profile distribution. The first chapter provides an overview of the history, theory, and application of infrared radiation. The second chapter discusses theoretical and practical methods of thermal image analysis, while the third chapter focuses on labour protection. The results of this research can be applied to the analysis of thermal images of the human brain, allowing for the identification of blood vessel pathologies such as stenosis or occlusion.
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    Software and Hardware System for Non-Invasive Temperature Monitoring
    (КПІ ім. Ігоря Сікорського, 2024) Sabha Mahmoud Hassan; Shlykov, Vladyslav
    Relevance: It is necessary to develop affordable and effective solutions for non-invasive temperature monitoring, which enables non-destructive testing and research on the temperature distribution over the surfaces of biological materials. Subject of study: To create a software and hardware system for non-invasive temperature monitoring that facilitates non-destructive testing and research on the surface temperature distribution of biological specimens. The purpose of the work: Development of the software and hardware pyrometric system for non-invasive temperature measurement through the analysis of the operational principles of both industrial and medical pyrometers, the design of a functional diagram for the software and hardware system aimed at non-invasive temperature monitoring of biological objects, and the execution of programmatic control over the temperature measurement process utilizing object-oriented programming techniques. Conclusions: The pyrometric system has been chosen for the software and hardware setup for non-invasive temperature monitoring, a functional schema for the system was designed, and an open-source programming component in C# was developed to allow for real-time data visualization.
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    The temperature control unit in the circuit of cardiopulmonary bypass
    (Igor Sikorsky Kyiv Polytechnic Institute, 2024) Ali Saleh Ahmat Mahamat; Shlykov, Vladyslav
    Actuality: With the help of the proposed method of temperature control, it is possible to more precisely control (with respect to existing analogues) the temperature of cooling and heating of blood in the system of the artificial blood circulation apparatus and in other systems. This model of temperature control provides continuous monitoring of the parameters of heating or cooling of the liquid at the exit of the system, which leads to the avoidance of direct intervention by medical staff in the regulation process. The purpose: to develop a system for managing heat exchange processes in the system of artificial blood circulation on the basis of hardware-computing platform Arduino IDE. Objective: To analyze the literature on the subject of existing analogues, to develop a functional scheme and algorithm of the system, to create a working model.
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    Therapeutic medical equipment
    (Igor Sikorsky Kyiv Polytechnic Institute, 2023-06) Bogomolov, Mykola; Shlykov, Vladyslav; Sychyk, Maryna
    The series of lectures discusses the theoretical foundations, principles of operation and basic optical and schematic review of modern non-drug treatments used in medical physiotherapy and rehabilitation, which will design and operate highly effective therapeutic devices, perform their repair and maintenance, conduct research on various external factors on the human body. The practical part is aimed at scientific and analytical examination, design, construction, research, testing, operation and technical expertise, engineering and information support of physiotherapy equipment and technologies, computer simulation of medical information and signals to stimulate pathological organs and tissues.
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    Using the peltier effect for intravascular cooling of donor organs
    (КПІ ім. Ігоря Сікорського, 2023) Zabilo, Yaroslav; Shlykov, Vladyslav; Vovianko, Svitlana
    This work is devoted to the problem of perfusion preservation of donor organs under conditions of controlled cooling. For the purpose of cooling is promising to use the Peltier effect. In particular, the Peltier effect is one method of cooling that can be used to preserve and transport organs from donors to recipients. One of the advantages of using the Peltier effect is that this method does not require the use of additional liquid coolers, which allows you to avoid potential problems related to contamination of organs or disruption of their structure. In addition, cooling by means of the Peltier effect is quite efficient and can be controlled by changing the electric current. A separate problem is the development of the design of the intravascular cooling system to preserve the viability of the organ intended for transplantation, taking into account its characteristics. The developed insulated container with cooling system has good thermal insulation. To evaluate the efficiency of the cooling system, the calculation of cooling losses was carried out. According to the performed calculations, for cooling the solution with which the donor organ is perfused, it is advisable to use Peltier elements, that possible to develop a compact and inexpensive system for viability of donor organs. The use of such a system increases the viability of transplants, reduces the probability of ischemic and ischemic-reperfusion injuries accompanying the process of donor organs preservation.

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