• Title/Summary/Keyword: Active Cell

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Morphological change of Sertoli cells in the pheasant(Phasianus colchicus) testis in active and inactive phase of spermatogenesis (꿩의 정자형성기와 비형성기의 정소내 Sertoli cell의 형태적변화)

  • Yang, Hong-hyun;Paik, Young-ki;Kim, In-shik
    • Korean Journal of Veterinary Research
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    • v.34 no.1
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    • pp.9-18
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    • 1994
  • The morphological changes of Sertoli cells of the Korean native pheasant were studied in the active and inactive spermatogenic phases. Twenty-four male of the pheasants were studied in the active (April~June) and inactive(August~March) phase. These data are useful in studying the male genital organs of the Korean native pheasant. Light microscopic morphological changes of the Sertoli cells were studied on paraffin-embedded sections stained with hematoxylin-eosin stain. Ultrastructural changes of Sertoli cells were investigated of ultrathin section using electron microscope. Results are summarized as follows: During the active phase, the average diameter of seminiferous tubule was $245.33{\pm}29.93{\mu}m$ and was largely decreased by $94.50{\pm}14.10{\mu}m$, and the thickness of interstitial tissue was comparatively increased during the inactive phase. During the active phase, in the cytoplasmic process of Sertoli cell and lipid droplets appeared disperse. Well-developed smooth Endoplasmic Reticulum and microtuble were observed in the cytoplasmic process. The nuclei of Sertoli cells were adjacent to the basement membrane. The size of nuclei was reduced and nuclei of Sertoli cells were densely packed within the tubule. Few collagen fibers, fibroblast and various sizes of lipid droplets were observed in the interstitial cell of the seminiferous tubule.

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A Study on The Optimum Structure of Dye-sensitized Solar Cell for Upscaling (염료감응형 태양전지의 대면적화를 위한 최적 구조 연구)

  • Seo, Hyun-Woong;Kim, Mi-Jeong;Hong, Ji-Tae;Kim, Hee-Je
    • Proceedings of the KIEE Conference
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    • 2007.07a
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    • pp.1295-1296
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    • 2007
  • A lot of researches about dye-sensitized solar cell (DSC) are recently being conducted. Because DSC has several advantages to pass the limits of silicon solar cells such as a low manufacturing expense, a simple manufacturing process and its transparency. But most researches on DSC are still conducted about the unit cell and laboratory-centered. That is, present researches on DSC are not practical. Therefore, researches about large area cells and modules have to be prerequisites for DSC to have the practicality. Characteristics of large area DSC are so different from those of small area DSC in aspect of fill factor and efficiency. In this study, we made an experiment on finding suitable size of DSC that has the most effective power according to the variation of active area. In detail, the experiment was conducted about the optimum ratio of length to width and we introduced the ratio of active area to non-active area to find the active area which has the best output. Because small DSC doesn‘t have the best output in comparison with total area of cell although the smaller DSC has the better efficiency. As a result, we achieved the optimum ratio of length to width of 8:3 and active area of $8cm^2$ as the optimum size for upscaling DSC.

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An electron microscopic study on gastro-enteroendocrine cells of frog (Rana dybowskii) (산개구리 위장관 내분비세포의 전자현미경적 연구)

  • Lee, Jae-hyun;Lee, Hyeung-sik
    • Korean Journal of Veterinary Research
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    • v.30 no.2
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    • pp.129-143
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    • 1990
  • In the present paper, the distribution, relative frequences and cell types of endocrine cells in the gastrointestinal tract of the frog (Rana dybowskii) during the hibernating and the active phase were examined by light and electron microscopy. The results obtained are summarized as follow: The reactive cells for Grimelius were frequently found in the gastrointestinal tract, whereas the reactive cells for Hellman-$Hellerstr{\hat{o}}m$ were found numerous in the fundus and pylorus of stomach, a few in the duodenum and lower small intestine, and very few in the rectum during both phases. No reactive cells for Masson-Fontana were found in the gastrointestinal tract during both phases. Elecron microscopically, 4 types of endocrine cells in the fundus of the stomach, 3 types in the pylorus of the stomach and duodenum, and 1 type in the lower small intestine and rectum, respectively, were identified during the hibernating phase. In the active phase, 3 types of endocrine cell in the fundus of the stomach, 2 types in the pylorus of the stomach and duodenum, and 1 type in the lower small intestine and rectum were observed, respectively. In the hibernating phase, more cytoplasmic granules and various types of endocrine cells were generally found than in the active phase.

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Micropower energy harvesting using high-efficiency indoor organic photovoltaics for self-powered sensor systems

  • Biswas, Swarup;Lee, Yongju;Kim, Hyeok
    • Journal of Sensor Science and Technology
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    • v.30 no.6
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    • pp.364-368
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    • 2021
  • We developed a highly efficient organic photovoltaic (OPV) cell with a poly[4,8-bis(5-(2-ethylhexyl)thiophen-2-yl)benzo[1,2-b;4,5-b']dithiophene-2,6-diyl-alt-(4-(2-ethylhexyl)-3-fluorothieno[3,4-b]thiophene-)-2-carboxylate-2-6-diyl)]:[6,6]-phenyl-C71-butyric acid methyl ester active layer for harvesting lower-intensity indoor light energy to power various self-powered sensor systems that require power in the microwatt range. In order to achieve higher power conversion efficiency (PCE), we first optimized the thickness of the active layer of the OPV cell through optical simulations. Next, we fabricated an OPV cell with optimized active layer thickness. The device exhibited a PCE of 12.23%, open circuit voltage of 0.66 V, short-circuit current density of 97.7 ㎂/cm2, and fill factor of 60.53%. Furthermore, the device showed a maximum power density of 45 ㎼/cm2, which is suitable for powering a low-power (microwatt range) sensor system.

Effect of stem cell culture on thermal stability (줄기세포배양액이 열 안정성에 미치는 영향)

  • Moon, Ji-Sun
    • Journal of the Korean Applied Science and Technology
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    • v.38 no.1
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    • pp.186-195
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    • 2021
  • In this study, when stem cell culture solution is used as a cosmetic ingredient, one of the most prominent problems is that the ingredients generally have low thermal stability. Therefore, in this study, in order to find out how the stem cell culture medium is heated or preserved at high temperature, the effect of various effects of stem cells on the various effects of the stem cells was investigated. Investigated. As a result of the experiment, the wound healing assay confirmed that the cell migration increased after 6 hours, and after 24 hours, it was confirmed that the cell mobility was increased and cell division was promoted, thereby being concentrated. As a result of investigating the amount of transdermal water loss by preparing a cosmetic product containing stem cell culture solution, it was confirmed that the culture solution addition group showed an improvement rate of 31% compared to the non-added group, thereby helping in skin wound recovery. As a result of this, it is considered that this point should be considered when the stem cell culture medium is used as an active ingredient in cosmetics in the future.

Improving Device Efficiency for n-i-p Type Solar Cells with Various Optimized Active Layers

  • Iftiquar, Sk Md;Yi, Junsin
    • Transactions on Electrical and Electronic Materials
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    • v.18 no.2
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    • pp.70-73
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    • 2017
  • We investigated n-i-p type single junction hydrogenated amorphous silicon oxide solar cells. These cells were without front surface texture or back reflector. Maximum power point efficiency of these cells showed that an optimized device structure is needed to get the best device output. This depends on the thickness and defect density ($N_d$) of the active layer. A typical 10% photovoltaic device conversion efficiency was obtained with a $N_d=8.86{\times}10^{15}cm^{-3}$ defect density and 630 nm active layer thickness. Our investigation suggests a correlation between defect density and active layer thickness to device efficiency. We found that amorphous silicon solar cell efficiency can be improved to well above 10%.

Performance Analysis of Fuel Cell by Controlling Active Layer Thickness of Catalyst (촉매 활성층 두께 제어를 통한 연료전지 성능 해석)

  • Kim, H.G.
    • Transactions of the Korean Society of Machine Tool Engineers
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    • v.16 no.3
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    • pp.133-140
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    • 2007
  • A 2-D model of fluid flow, mass transport and electrochemistry is analysed to examine the effect of current density at the current collector depending on active layer thickness of catlyst in polymer elecrolyte fuel cells. The finite element method is used to solve the continuity, potential and Maxwell-Stefan equations in the flow channel and gas diffusion electrode regions. For the material behavior of electrode reactions in the active catalyst layers, the agglomerate model is implemented to solve the diffusion-reaction problem. The calculated model results are described and compared with the different thickness of active catalyst layers. The significance of the results is discussed in the viewpoint of the current collecting capabilities as well as mass transportation phenomena, which is inferred that the mass transport of reactants dictates the efficiency of the electrode in the present analysis.

A Study on the Design of Denitrification Reactor and the Characteristics (탈질화 반응기의 설계 및 특성에 관한 연구)

  • 김선화;송주영
    • Journal of Life Science
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    • v.11 no.3
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    • pp.273-278
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    • 2001
  • Removal of nitrogen compound from waste water is essential and often accomplished by biological process. Deni-trification bacterium. Paracoccus denitrificans(KCTC 2350) is employed to estimate the ability and the characteristics of denitrification. In the immobilized biological reactor system, the measurement of absolute amount of active strain in the reactor is comparatively difficult or impossible. In this study, strain immobilized denitrification reactor was designed with the unwoven texture wrapped peeped hole plastic tube to calculated the absolute amount of active strain by comparing the activity of the immobilized reactor adn the free cell reactor. The reactor system was continuous stirred tank reactor and the rate of substrate consumption was assumed to be Michaelis-Menten equation. As a result, we found that the amount of immobilized active strain was the half of the total active strain in the reactor and the time required to reach in the equilibrium state in the immobilized reactor system was shorter than that of the free cell reactor system.

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The Analysis on the Activation Procedure of Polymer Electrolyte Fuel Cells

  • Jang, Jong-Mun;Park, Gu-Gon;Sohn, Young-Jun;Yim, Sung-Dae;Kim, Chang-Soo;Yang, Tae-Hyun
    • Journal of Electrochemical Science and Technology
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    • v.2 no.3
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    • pp.131-135
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    • 2011
  • It is, in general, believed that during the activation process, the proton conductivity increases due to wetting effect and the electrochemical resistance reduction, resulting in an increase in the fuel cell performance with time. However, until now, very scant information is available on the understanding of activation processes. In this study, dominant variables that effect on the performance increase of membrane electrode assemblies (MEAs) during the activation process were investigated. Wetting, pore restructuring and active metal utilization were analyzed systematically. Unexpectedly, the changes for both ohmic and reaction resistance characterized by the electrochemical impedance spectroscopy (EIS) after initial wetting process were much smaller when considering the degree of cell performance increases. However, the EIS spectra represents that the pore opening of electrode turns into gas transportable structure more easily. The increase in the performance with activation cycles was also investigated in a view of active metals. Though the particle size was grown, the number of effective active sites might be exposed more. The impurity removal and catalytic activity enhancement measured by cyclic voltammetry (CV) could be a strong evident. The results and analysis revealed that, not merely wetting of membrane but also restructuring of electrodeand catalytic activity increase are important factors for the fast and efficient activation of the polymer electrolyte fuel cells.