21 research outputs found

    Π­ΠΊΡΠΏΠ΅Ρ€ΠΈΠΌΠ΅Π½Ρ‚Π°Π»ΡŒΠ½Π°Ρ модСль сахарного Π΄ΠΈΠ°Π±Π΅Ρ‚Π° 2-Π³ΠΎ Ρ‚ΠΈΠΏΠ° Ρƒ крыс, вызванная Π΄ΠΈΠ΅Ρ‚ΠΎΠΉ с высоким содСрТаниСм ΠΆΠΈΡ€ΠΎΠ² ΠΈ стрСптозотоцином Π² Π½ΠΈΠ·ΠΊΠΎΠΉ Π΄ΠΎΠ·Π΅

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    Aim. To develop a pathogenetically reasonable model of type 2 diabetes with marked peripheral insulin resistanceΒ and relative insulin deficiency in rats using a high-fat diet and a single injection of streptozotocin in the low dose.Materials and methods. Experiments were conducted on 16 outbred male rats. Type 2 diabetes model inΒ experimental animals was achieved by feeding them with high-fat diet (55% of energy from fat) for 28 daysΒ followed by a single injection of streptozotocin (35 mg/kg). The serum glucose and insulin concentrations inΒ rats were measured before streptozotocin administration and at the end of the experiment. To estimate insulinΒ resistance, insulin tolerance test and glucose tolerance test were performed. Total protein, albumin, total and directΒ bilirubin, urea, uric acid, total cholesterol, high-density lipoproteins and low-density lipoproteins, and activity ofΒ alanine aminotransferase and aspartate aminotransferase were measured in the blood serum.Results. A high-fat diet with a single injection of streptozotocin resulted in lipid and protein metabolism disordersΒ and peripheral tissues insulin resistance in experimental animals. Basal insulin levels did not change against theΒ backdrop of high glucose level.Conclusions. These results indicate that feeding rats with a high-fat diet (55% of calories from fats) and a singleΒ administration of streptozotocin at a low dose (35 mg/kg) reproduce general pathological processes of type 2Β diabetes. This model can be used to study the pathogenesis of type 2 diabetes as well as to investigate the effect ofΒ potential hypoglycemic agents.ЦСль исслСдования – Ρ€Π°Π·Ρ€Π°Π±ΠΎΡ‚Π°Ρ‚ΡŒ с ΠΏΠΎΠΌΠΎΡ‰ΡŒΡŽ Π΄ΠΈΠ΅Ρ‚Ρ‹ с высоким содСрТаниСм ΠΆΠΈΡ€ΠΎΠ² ΠΈ ΠΎΠ΄Π½ΠΎΠΊΡ€Π°Ρ‚Π½ΠΎΠΉ ΠΈΠ½ΡŠΠ΅ΠΊΡ†ΠΈΠΈΒ ΡΡ‚Ρ€Π΅ΠΏΡ‚ΠΎΠ·ΠΎΡ‚ΠΎΡ†ΠΈΠ½Π° Π² Π½ΠΈΠ·ΠΊΠΎΠΉ Π΄ΠΎΠ·Π΅ патогСнСтичСски ΠΎΠ±ΠΎΡΠ½ΠΎΠ²Π°Π½Π½ΡƒΡŽ модСль сахарного Π΄ΠΈΠ°Π±Π΅Ρ‚Π° 2-Π³ΠΎ Ρ‚ΠΈΠΏΠ° Ρƒ крыс с Π²Ρ‹Ρ€Π°ΠΆΠ΅Π½Π½ΠΎΠΉ пСрифСричСской ΠΈΠ½ΡΡƒΠ»ΠΈΠ½ΠΎΡ€Π΅Π·ΠΈΡΡ‚Π΅Π½Ρ‚Π½ΠΎΡΡ‚ΡŒΡŽ ΠΈ ΠΎΡ‚Π½ΠΎΡΠΈΡ‚Π΅Π»ΡŒΠ½Ρ‹ΠΌ Π΄Π΅Ρ„ΠΈΡ†ΠΈΡ‚ΠΎΠΌ инсулина.ΠœΠ°Ρ‚Π΅Ρ€ΠΈΠ°Π»Ρ‹ ΠΈ ΠΌΠ΅Ρ‚ΠΎΠ΄Ρ‹. ЭкспСримСнты ΠΏΡ€ΠΎΠ²ΠΎΠ΄ΠΈΠ»ΠΈ Π½Π° 16 Π°ΡƒΡ‚Π±Ρ€Π΅Π΄Π½Ρ‹Ρ… самцах крыс. Π‘Π°Ρ…Π°Ρ€Π½Ρ‹ΠΉ Π΄ΠΈΠ°Π±Π΅Ρ‚Β 2-Π³ΠΎ Ρ‚ΠΈΠΏΠ° ΠΌΠΎΠ΄Π΅Π»ΠΈΡ€ΠΎΠ²Π°Π»ΠΈ ΠΊΠΎΡ€ΠΌΠ»Π΅Π½ΠΈΠ΅ΠΌ ΡΠΊΡΠΏΠ΅Ρ€ΠΈΠΌΠ΅Π½Ρ‚Π°Π»ΡŒΠ½Ρ‹Ρ… ΠΆΠΈΠ²ΠΎΡ‚Π½Ρ‹Ρ… высокоТировой Π΄ΠΈΠ΅Ρ‚ΠΎΠΉ (55%Β ΠΊΠ°Π»ΠΎΡ€ΠΈΠΉ Π·Π° счСт ΠΆΠΈΡ€ΠΎΠ²) Π² Ρ‚Π΅Ρ‡Π΅Π½ΠΈΠ΅ 28 сут с ΠΏΠΎΡΠ»Π΅Π΄ΡƒΡŽΡ‰Π΅ΠΉ ΠΎΠ΄Π½ΠΎΠΊΡ€Π°Ρ‚Π½ΠΎΠΉ ΠΈΠ½Ρ‚Ρ€Π°ΠΏΠ΅Ρ€ΠΈΡ‚ΠΎΠ½Π΅Π°Π»ΡŒΠ½ΠΎΠΉ ΠΈΠ½ΡŠΠ΅ΠΊΡ†ΠΈΠ΅ΠΉΒ ΡΡ‚Ρ€Π΅ΠΏΡ‚ΠΎΠ·ΠΎΡ‚ΠΎΡ†ΠΈΠ½Π° Π² Π΄ΠΎΠ·Π΅ 35 ΠΌΠ³/ΠΊΠ³. ΠšΠΎΠ½Ρ†Π΅Π½Ρ‚Ρ€Π°Ρ†ΠΈΡŽ Π³Π»ΡŽΠΊΠΎΠ·Ρ‹ ΠΈ инсулина Π² сывороткС ΠΊΡ€ΠΎΠ²ΠΈ крыс измСряли до ввСдСния стрСптозотоцина ΠΈ ΠΏΠΎ ΠΎΠΊΠΎΠ½Ρ‡Π°Π½ΠΈΠΈ экспСримСнта. Для ΠΎΡ†Π΅Π½ΠΊΠΈ инсулинорСзистСнтности ΠΏΡ€ΠΎΠ²ΠΎΠ΄ΠΈΠ»ΠΈΒ Π³Π»ΡŽΠΊΠΎΠ·ΠΎΡ‚ΠΎΠ»Π΅Ρ€Π°Π½Ρ‚Π½Ρ‹ΠΉ ΠΈ инсулинотолСрантный тСсты. Π’ сывороткС ΠΊΡ€ΠΎΠ²ΠΈ опрСдСляли содСрТаниС ΠΎΠ±Ρ‰Π΅Π³ΠΎΒ Π±Π΅Π»ΠΊΠ°, Π°Π»ΡŒΠ±ΡƒΠΌΠΈΠ½ΠΎΠ², ΠΎΠ±Ρ‰Π΅Π³ΠΎ ΠΈ прямого Π±ΠΈΠ»ΠΈΡ€ΡƒΠ±ΠΈΠ½Π°, ΠΌΠΎΡ‡Π΅Π²ΠΈΠ½Ρ‹, ΠΌΠΎΡ‡Π΅Π²ΠΎΠΉ кислоты, ΠΎΠ±Ρ‰Π΅Π³ΠΎ холСстСрина, холСстСрина Π»ΠΈΠΏΠΎΠΏΡ€ΠΎΡ‚Π΅ΠΈΠ½ΠΎΠ² высокой плотности ΠΈ Π½ΠΈΠ·ΠΊΠΎΠΉ плотности, активности аланинаминотрансфСразы и аспартатаминотрансфСразы.Π Π΅Π·ΡƒΠ»ΡŒΡ‚Π°Ρ‚Ρ‹. Π”ΠΈΠ΅Ρ‚Π° с высоким содСрТаниСм ΠΆΠΈΡ€ΠΎΠ² Π² сочСтании с ΠΎΠ΄Π½ΠΎΠΊΡ€Π°Ρ‚Π½ΠΎΠΉ ΠΈΠ½ΡŠΠ΅ΠΊΡ†ΠΈΠ΅ΠΉ стрСптозотоцина приводила Ρƒ ΡΠΊΡΠΏΠ΅Ρ€ΠΈΠΌΠ΅Π½Ρ‚Π°Π»ΡŒΠ½Ρ‹Ρ… ΠΆΠΈΠ²ΠΎΡ‚Π½Ρ‹Ρ… ΠΊ Π½Π°Ρ€ΡƒΡˆΠ΅Π½ΠΈΡŽ Π»ΠΈΠΏΠΈΠ΄Π½ΠΎΠ³ΠΎ ΠΈ Π±Π΅Π»ΠΊΠΎΠ²ΠΎΠ³ΠΎ ΠΎΠ±ΠΌΠ΅Π½ΠΎΠ² ΠΈ Ρ€Π°Π·Π²ΠΈΡ‚ΠΈΡŽΒ ΠΈΠ½ΡΡƒΠ»ΠΈΠ½ΠΎΡ€Π΅Π·ΠΈΡΡ‚Π΅Π½Ρ‚Π½ΠΎΡΡ‚ΠΈ. Π£Ρ€ΠΎΠ²Π΅Π½ΡŒ базального инсулина Π½Π΅ измСнялся Π½Π° Ρ„ΠΎΠ½Π΅ Π²Ρ‹Ρ€Π°ΠΆΠ΅Π½Π½ΠΎΠΉ Π³Π»ΠΈΠΊΠ΅ΠΌΠΈΠΈ.Π—Π°ΠΊΠ»ΡŽΡ‡Π΅Π½ΠΈΠ΅. ΠŸΠΎΠ»ΡƒΡ‡Π΅Π½Π½Ρ‹Π΅ Ρ€Π΅Π·ΡƒΠ»ΡŒΡ‚Π°Ρ‚Ρ‹ ΡΠ²ΠΈΠ΄Π΅Ρ‚Π΅Π»ΡŒΡΡ‚Π²ΡƒΡŽΡ‚ ΠΎ Ρ‚ΠΎΠΌ, Ρ‡Ρ‚ΠΎ ΠΏΡ€ΠΈ ΠΊΠΎΡ€ΠΌΠ»Π΅Π½ΠΈΠΈ крыс Π΄ΠΈΠ΅Ρ‚ΠΎΠΉ с высоким содСрТаниСм ΠΆΠΈΡ€ΠΎΠ² ΠΈ ΠΎΠ΄Π½ΠΎΠΊΡ€Π°Ρ‚Π½ΠΎΠΌ Π²Π²Π΅Π΄Π΅Π½ΠΈΠΈ стрСптозотоцина Π² Π½ΠΈΠ·ΠΊΠΎΠΉ Π΄ΠΎΠ·Π΅ (35 ΠΌΠ³/ΠΊΠ³) воспроизводятся патологичСскиС процСссы, Ρ…Π°Ρ€Π°ΠΊΡ‚Π΅Ρ€Π½Ρ‹Π΅ для сахарного Π΄ΠΈΠ°Π±Π΅Ρ‚Π° 2-Π³ΠΎ Ρ‚ΠΈΠΏΠ°. Бозданная модСль ΠΌΠΎΠΆΠ΅Ρ‚Β ΠΈΡΠΏΠΎΠ»ΡŒΠ·ΠΎΠ²Π°Ρ‚ΡŒΡΡ для изучСния ΠΏΠ°Ρ‚ΠΎΠ³Π΅Π½Π΅Π·Π° сахарного Π΄ΠΈΠ°Π±Π΅Ρ‚Π° 2-Π³ΠΎ Ρ‚ΠΈΠΏΠ°, Π° Ρ‚Π°ΠΊΠΆΠ΅ для исслСдования Π΄Π΅ΠΉΡΡ‚Π²ΠΈΡΒ ΠΏΠΎΡ‚Π΅Π½Ρ†ΠΈΠ°Π»ΡŒΠ½Ρ‹Ρ… гипогликСмичСских срСдств

    PROPERTIES OF AlInN GRADED-GAP GUNN DIODES

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    AlGaInAs GRADED-GAP GUNN DIODE

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    Using LROC WAC data for Lunar surface photoclinometry

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    All available lunar digital elevation models, e.g., SELENE LALT DEM, SELENE DTM LISM, Chang’E-1 LAM DEM, GLD100, SLDEM2015, have certain disadvantages, including insufficient resolution and/or the presence of defects as well as mismatching reference coordinate systems, making it difficult to incorporate the topographic effect on photometric LROC WAC observations. We here propose a photoclinometry technique that can be used to account for this effect. To do so, we modify our algorithm used to construct seamless photometric mosaics (Korokhin et al., PSS 2016, 122, 70–87) to determine local slopes simultaneously with parameters of photometric function during the mosaicing procedure. This technique can be useful for improvement of quality of remote sensing of surfaces with complex topography. We also develop a new algorithm for constructing the lunar digital elevation model based on the simultaneous use of laser altimetric measurements (LRO LOLA) and local longitudinal slopes obtained photoclinometrically from LROC WAC data. The algorithm provides a digital elevation model with accuracy and resolution not worse than SLDEM2015, yet demonstrating significantly fewer defects and artifacts. High-quality topo data can be useful for geology, geomorphology and for navigation/exploration/mission planning

    ΠžΠ“Π›Π―Π” Π”ΠžΠ‘Π―Π“ΠΠ•ΠΠ¬ Π’ Π’Π•Π ΠΠ“Π•Π Π¦ΠžΠ’Π˜Π₯ ΠšΠžΠœΠ£ΠΠ†ΠšΠΠ¦Π†Π™ΠΠ˜Π₯ Π‘Π˜Π‘Π’Π•ΠœΠΠ₯

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    This review paper gives an overview progress and problems of communications at a data rate of about 100 Gbit/s. The problem of increasing wireless data rate is priority for many research centers. It is proved that the frequency of about 300 GHz is most suitable to increase the data rate. In the last part of the paper, an overview of the state-of-the-art in technology development and successful demonstrations of data transmission and semiconductor devices with TGz-range cutoff frequency will be given.ΠŸΡ€Π΅Π΄ΡΡ‚Π°Π²Π»Π΅Π½ΠΎ огляд досягнСнь Ρ‚Π° ΠΏΡ€ΠΎΠ±Π»Π΅ΠΌ Π² області Ρ‚Π΅Ρ€Π°Π³Π΅Ρ€Ρ†ΠΎΠ²ΠΈΡ… ΠΊΠΎΠΌΡƒΠ½Ρ–ΠΊΠ°Ρ†Ρ–ΠΉ, ΠΎΡ€Ρ–Ρ”Π½Ρ‚ΠΎΠ²Π°Π½ΠΈΡ… Π½Π° ΡˆΠ²ΠΈΠ΄ΠΊΡ–ΡΡ‚ΡŒ пСрСдавання Π΄Π°Π½ΠΈΡ… близько 100 Π“Π±Ρ–Ρ‚/с. Показано, Ρ‰ΠΎ ΠΏΡ€ΠΎΠ±Π»Π΅ΠΌΠ° Π·Π±Ρ–Π»ΡŒΡˆΠ΅Π½Π½Ρ ΡˆΠ²ΠΈΠ΄ΠΊΠΎΡΡ‚Ρ– Π±Π΅Π·Π΄Ρ€ΠΎΡ‚ΠΎΠ²ΠΎΠ³ΠΎ пСрСдавання Π΄Π°Π½ΠΈΡ… Ρ” ΠΏΡ€Ρ–ΠΎΡ€ΠΈΡ‚Π΅Ρ‚Π½ΠΎΡŽ для Π±Π°Π³Π°Ρ‚ΡŒΠΎΡ… Π΄ΠΎΡΠ»Ρ–Π΄Π½ΠΈΡ†ΡŒΠΊΠΈΡ… Ρ†Π΅Π½Ρ‚Ρ€Ρ–Π². Π”ΠΎΠ²Π΅Π΄Π΅Π½ΠΎ, Ρ‰ΠΎ частота близько 300 Π“Π“Ρ† Ρ” Π½Π°ΠΉΠ±Ρ–Π»ΡŒΡˆ ΠΏΡ–Π΄Ρ…ΠΎΠ΄ΡΡ‰ΠΎΡŽ для Π·Π±Ρ–Π»ΡŒΡˆΠ΅Π½Π½Ρ ΡˆΠ²ΠΈΠ΄ΠΊΠΎΡΡ‚Ρ– пСрСдавання Π΄Π°Π½ΠΈΡ…. Подано ΠΊΠΎΡ€ΠΎΡ‚ΠΊΠΈΠΉ огляд Π½Π°ΠΏΡ–Π²ΠΏΡ€ΠΎΠ²Ρ–Π΄Π½ΠΈΠΊΠΎΠ²ΠΈΡ… ΠΏΡ€ΠΈΠ»Π°Π΄Ρ–Π² Π· Π³Ρ€Π°Π½ΠΈΡ‡Π½ΠΎΡŽ Ρ‡Π°ΡΡ‚ΠΎΡ‚ΠΎΡŽ, Ρ‰ΠΎ Π·Π½Π°Ρ…ΠΎΠ΄ΠΈΡ‚ΡŒΡΡ Π² Ρ‚Π΅Ρ€Π°Π³Π΅Ρ€Ρ†ΠΎΠ²ΠΎΠΌΡƒ Π΄Ρ–Π°ΠΏΠ°Π·ΠΎΠ½Ρ–
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