scholarly journals Influence of the metallized coils on human leg blood circulation

2021 ◽  
Author(s):  
Jurijs Dehtjars ◽  
Ksenija Jasina ◽  
Viesturs Larins ◽  
Aleksandrs Okss ◽  
Konstantins Pudovskis ◽  
...  

The aim of the study was to find out if magnetic field generated by the human body affects a human blood flow. The idea is based on Lenz's law where the blood flow induces an opposing alternating magnetic field (OAMF). In the experiment the OAMF will be modulated by repeating heart contractions (pulses). In an experiment with metallized coils it was found that wearing metal coils affects blood flow and it differs from when coils were not worn.

Author(s):  
Володимир Петрович Олійник ◽  
Дар’я Вікторівна Теличко

The issues of long-term implants using in the human body are considered. Particular attention is paid to the problem of contactless supply of power to artificial organs with significant energy consumption. Using non-contact energy supply to a fully implanted technical device reduces the risk of infections getting into the patient's body as compared to the use of a power line that is output through internal tissues to the skin surface. The well-known developments of artificial heart apparatus were used as the object of analysis. Their main technical characteristics are considered. The maximum power consumption of these devices is about 20 watts, including models AbioCor. The design of the AbioCor was produced as a fully implanted contactless power unit, but the project was not completed. Although the principle of contactless power supply is undoubtedly an innovative step in the development of implant designs. As a result of the technical implementation of this principle, the following was obtained: it is advisable to use an alternating magnetic field with an inductive coupling between an external and an internal inductor for non-contact energy supply of implants; the use of frequencies of an alternating magnetic field of ~ 100 kHz makes it possible to obtain a compromise solution between the required depth of penetration into biotissues, insignificant heat formation in them and the size and mass of inductors. Under such conditions, the location in the body of the receiving inductor can be determined by medical recommendations. Evaluation experiments were carried out to determine the effective scheme of inclusion of the transmitting and receiving circuits, and the effect on the transmission coefficient of the electrophysical properties of the environment between them. It is shown that for working out of technical solutions of hardware realization of contactless power supply, implantation elements can be placed in saline solution as a model of bioenvironment. It is recommended to use serial element base and circuit solutions used for contactless power supply of radio electronic devices. Also, a quantitative assessment of the additional heat load of the implant on the human body was carried out, since part of the energy of the apparatus and its work, in accordance with the efficiency, inevitably goes into the heat eventually. A simplified calculation of the impact of implant energy losses on the thermal state of the body showed that overheating by 1 °C would be achieved provided the complete insulation of the area, on average, 8.6 hours. This proves the non-critical overheating of the body with implants, and allows the maintenance of a stable body temperature by physiological mechanisms.


An Improved-Human Blood Circulatory System (I-LBCS) is critical to educate.Be that as it may, it is hard to get it. Thisi-LBCS method to comprehend through LA. This application will give the i-LBCS progressively intuitive and intriguing, in which game -player engaged with the game. The plan and build up a game method on Android Studio (AS) that can assist a student with understanding configurations and standards of significant cells in the Human (HUM) Circulatory and Immune System (CIS) in Human Body (HB). These games generally focused on science subjects for grade HSC Students (STDNT).


1990 ◽  
Vol 29 (01) ◽  
pp. 7-12 ◽  
Author(s):  
J. Bialy ◽  
F.-J. Hans ◽  
E. Oberhausen ◽  
W.J. Peters ◽  
M. Schmitt ◽  
...  

A method is being developed which not only measures cerebral blood flow as a static quantity but also its changes with time. For that purpose a semiconductor device ascertains the proportion of intracerebral81 Rb and 81mKr activities. By opening the haemato-encephalic barrier in animal experiments a sufficient concentration of intracerebral81 Rb could be attained and the modified blood circulation after step-wise ligature of all brain arteries brought into relation to the corresponding Rb/Kr quotient. Over the range from undisturbed to completely interrupted cerebral blood flow this quotient varied up to 25% of its initial value.


2020 ◽  
Vol 2 (1) ◽  
pp. 70-78
Author(s):  
Elvira Yanova ◽  
◽  
Gulshod Mardiyeva

As is well known,bone,and arterial, abnormalityora combination of both, may cause adecrease in cerebral blood flow, which in turn leads to early morbidity and loss of efficiency. Many scientists are wondering if the Kimmer leanomalya rises with age, is it ananomalya tall, or is it a kind of defense mechanism


1984 ◽  
Vol 3 (1) ◽  
pp. 293-298
Author(s):  
Isaac Chen ◽  
Subrata Saha
Keyword(s):  

2016 ◽  
Vol 11 (2) ◽  
pp. 210-217 ◽  
Author(s):  
A.T. Akhmetov ◽  
A.A. Valiev ◽  
A.A. Rakhimov ◽  
S.P. Sametov ◽  
R.R. Habibullina

It is mentioned in the paper that hydrodynamic conditions of a flow in blood vessels with the stenosis are abnormal in relation to the total hemodynamic conditions of blood flow in a vascular system of a human body. A microfluidic device developed with a stepped narrowing for studying of the blood flow at abnormal conditions allowed to reveal blood structure in microchannels simulating the stenosis. Microstructure change is observed during the flow of both native and diluted blood through the narrowing. The study of hemorheological properties allowed us to determine an increasing contribution of the hydraulic resistance of the healthy part of the vessel during the stenosis formation.


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