7 research outputs found

    The Study of Dielectric Properties of Biological Tissue under Thermal Modification in vitro

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    The aim of this paper is to study the dynamics of the dielectric properties of the tissue in the experimental controlled thermal modification. Material and methods: the experiment was performed on equal in volume and mass samples of intraoperatively removed tissue of Palmar aponeurosis (n=8). The thermal effect was simulated by placing tissue fragments in a thermostat (processing time – 5 min., temperature – 60 C). Duration of exposure after thermal modification was 5 min. Dielectric properties of tissues was determined using an original hardware-software complex for near-field resonant microwave sensing. Results: the study made it possible to verify the shifts in dielectric properties of the tissue that occur under short-term exposure to high temperature in vitro. It is shown that the dielectric permeability and conductivity of the biological object are significantly reduced under the influence of this factor, which is primarily due to a decrease of its hydration degree

    Assessment of the Action of ĐĄold Helium Plasma on Metabolic and Physico-chemical Parameters of Rats Blood

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    The aim of this paper was to study the effect of cold helium plasma on the parameters of oxidative metabolism and crystallogenic activity of rat blood plasma. Material and methods: The experiment was performed on 20 male Wistar rats divided into control (n=10, without manipulation) and main (n=10) groups. Animals of the main group underwent a course, which included 10 daily procedures for processing a pre-epilated area of the back skin (area – 10% of the body surface) with a stream of helium cold plasma (duration – 1 min.). Upon completion of the course, the intensity of lipid peroxidation, total antioxidant activity, malon dialdehyde level and superoxide dismutase activity were determined in the blood of all rats, and crystallogenic properties were evaluated. The conjugation of potential shifts was carried out by correlation analysis. Results: It was found that cold helium plasma transforms oxidative metabolism of blood plasma and its crystallogenic properties, acting as an agent with moderate antioxidant properties and a stimulant of dehydration structuring. In this case, the antioxidant effect is realized, among other things, due to the activation of superoxide dismutase

    The LHCb upgrade I

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    The LHCb upgrade represents a major change of the experiment. The detectors have been almost completely renewed to allow running at an instantaneous luminosity five times larger than that of the previous running periods. Readout of all detectors into an all-software trigger is central to the new design, facilitating the reconstruction of events at the maximum LHC interaction rate, and their selection in real time. The experiment's tracking system has been completely upgraded with a new pixel vertex detector, a silicon tracker upstream of the dipole magnet and three scintillating fibre tracking stations downstream of the magnet. The whole photon detection system of the RICH detectors has been renewed and the readout electronics of the calorimeter and muon systems have been fully overhauled. The first stage of the all-software trigger is implemented on a GPU farm. The output of the trigger provides a combination of totally reconstructed physics objects, such as tracks and vertices, ready for final analysis, and of entire events which need further offline reprocessing. This scheme required a complete revision of the computing model and rewriting of the experiment's software

    The LHCb Upgrade I

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    Abstract The LHCb upgrade represents a major change of the experiment. The detectors have been almost completely renewed to allow running at an instantaneous luminosity five times larger than that of the previous running periods. Readout of all detectors into an all-software trigger is central to the new design, facilitating the reconstruction of events at the maximum LHC interaction rate, and their selection in real time. The experiment's tracking system has been completely upgraded with a new pixel vertex detector, a silicon tracker upstream of the dipole magnet and three scintillating fibre tracking stations downstream of the magnet. The whole photon detection system of the RICH detectors has been renewed and the readout electronics of the calorimeter and muon systems have been fully overhauled. The first stage of the all-software trigger is implemented on a GPU farm. The output of the trigger provides a combination of totally reconstructed physics objects, such as tracks and vertices, ready for final analysis, and of entire events which need further offline reprocessing. This scheme required a complete revision of the computing model and rewriting of the experiment's software.</jats:p
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