• Title/Summary/Keyword: Microscopic observation

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Effect of Glucose on Swarming Motility of Paenibacillus sp. CK214 (Paenibacillus sp. CK214의 swarming 운동성에 미치는 glucose의 영향)

  • Kang, Sung Wan;Yoo, Ah Young;Kang, Ho Young
    • Journal of Life Science
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    • v.23 no.2
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    • pp.299-305
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    • 2013
  • Paenibacillus is a gram-positive, spore-forming aerobes that was previously classified as a Bacillus species. Paenibacillus sp. CK214 was highly motile on LB agar plates and showed typical colonial morphology of Paenibacillus. However, its motility was defective in the absence of glucose. Electron microscopic observation revealed that the cells of CK214 cultured on LB agar plates were peritrichously flagellated but not flagellated in the presence of glucose. Flagellar filaments were purified by centrifugation after shearing off from the CK214 cells with vigorous pipetting. The purified protein was composed of a single flagellin with an apparent molecular size of 29 kDa. Recognition of the protein by anti-Edwardsiella tarda flagellin protein antibody demonstrates that the protein is a flagellin protein. A decreased level of flagellin protein was detected in CK214 cells grown under glucose-supplemented media.

Effect of Exogenous Insulin on The Metabolism of Normal Rat (인슐린 투여가 정상쥐의 대사에 미치는 영향)

  • 주진순
    • Journal of Nutrition and Health
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    • v.22 no.4
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    • pp.237-246
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    • 1989
  • The objective of this study was to determine the metabolic effect of exogenous insulin on Sprague-Dawley rats. In a short-term study, the rats were injected insulin and sacrificed at 0.50, 1, 1.5, 2, 4 and 6hr, respectively. Another group of the rats were injected long-acting insulin everyday and sacrificed at 0, 10, 20 and 30days, respectively. Levels of hemoglobin, hematocrit, plasma glucose, plasma protein, plasma albmin, plasma lipids, cholesterol were determined for each experimental group. Also microscopic observation of fat infiltration of liver and aorta performed. No significant abnormality was abserved either at the short-term or at the long-term insulin injection on normal rats.

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Evaluation about Weathering Characteristics of Granite at Sangju Area (상주지역 화강암의 풍화 특성에 대한 평가)

  • Kang, Changwoo;Kim, Bongsu;Son, Kwangrok;Bae, Wooseok
    • Journal of the Korean GEO-environmental Society
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    • v.17 no.5
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    • pp.17-25
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    • 2016
  • The rocks exposed on the surface undergo expedite weathering process due to the effects of climatic process, etc. and the weathering process changes the properties of minerals, thereby lowering the stability of rocks. Therefore, it is important to examine the composition of minerals in order to investigate the resistance of rocks against weathering, which is performed by weathering sensitivity analysis. And microscopic flaking test was performed for the bored samples in this study and the composition of minerals that are vulnerable to weathering was measured through mode analysis. The lithological and mineralogical weathering factors were evaluated through this process. Furthermore, the degree of progress of weathering was identified by quantitatively measuring the actual mineral composition of rocks through X-Ray diffraction analysis and identifying the secondary minerals through observation with a scanning electron microscope. This analyzing the weathering sensitivity was analyzed to be capable of determining appropriate indicators that can determine weather resistance and predicting the weathering grade using chemical weathering speed.

Effect of Heat Treatment on the Deformation and Fracture Behaviors of 3-ply Cu/Al/Cu Clad Metal (3층 Cu/Al/Cu 클래드재의 열처리온도에 따른 변형 및 파단거동)

  • Kim, In-Kyu;Ha, Jongsu;Hong, Sun Ig
    • Korean Journal of Metals and Materials
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    • v.50 no.12
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    • pp.939-948
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    • 2012
  • A 3-ply clad metal consisting of aluminum and copper was fabricated by roll bonding process and the microstructures and mechanical properties of the roll-bonded and post-roll-bonding heat treated Cu/Al/Cu clad metal were investigated. A brittle interfacial reaction layer formed at the Cu/Al interfaces at and above $400^{\circ}C$. The thickness of the reaction layer increased from $12{\mu}m$ at $400^{\circ}C$ to $28{\mu}m$ at $500^{\circ}C$. The stress-strain curves demonstrated that the strength decreased and the ductility increased with heat treatment up to $400^{\circ}C$. The clad metal heat treated at $300^{\circ}C$ with no indication of a reaction layer exhibited an excellent combination of the strength and ductility and no delamination of layers up to final fracture in the tensile testing. Above $400^{\circ}C$, the ductility decreased rasxpidly with little change of strength, reflecting the brittle nature of the intermetallic interlayers. In Cu/Al/Cu clad heat treated above $400^{\circ}C$, periodic parallel cracks perpendicular to the stress axis were observed at the interfacial reaction layer. In-situ optical microscopic observation revealed that cracks were formed in the Cu layer due to the strain concentration in the vicinity of horizontal cracks in the intermetallic layer, promoting the premature fracture of Cu layer. Vertical cracks parallel to the stress axis were also formed at 15% strain at $500^{\circ}C$, leading to the delamination of the Cu and Al layers.

Monitoring corrosion of reinforced concrete beams in a chloride containing environment under different loading levels

  • Wei, Aifang;Wang, Ying;Tan, Mike Y.J.
    • Structural Monitoring and Maintenance
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    • v.2 no.3
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    • pp.253-267
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    • 2015
  • Corrosion has significant adverse effects on the durability of reinforced concrete (RC) structures, especially those exposed to a marine environment and subjected to mechanical stress, such as bridges, jetties, piers and wharfs. Previous studies have been carried out to investigate the corrosion behaviour of steel rebar in various concrete structures, however, few studies have focused on the corrosion monitoring of RC structures that are subjected to both mechanical stress and environmental effects. This paper presents an exploratory study on the development of corrosion monitoring and detection techniques for RC structures under the combined effects of external loadings and corrosive media. Four RC beams were tested in 3% NaCl solutions under different levels of point loads. Corrosion processes occurring on steel bars under different loads and under alternative wetting - drying cycle conditions were monitored. Electrochemical and microscopic methods were utilised to measure corrosion potentials of steel bars; to monitor galvanic currents flowing between different steel bars in each beam; and to observe corrosion patterns, respectively. The results indicated that steel corrosion in RC beams was affected by local stress. The point load caused the increase of galvanic currents, corrosion rates and corrosion areas. Pitting corrosion was found to be the main form of corrosion on the surface of the steel bars for most of the beams, probably due to the local concentration of chloride ions. In addition, visual observation of the samples confirmed that the localities of corrosion were related to the locations of steel bars in beams. It was also demonstrated that electrochemical devices are useful for the detection of RC beam corrosion.

Case report: Mass mortality of olive flounder (Paralichthys olivaceus) caused by acute gas bubble disease

  • Lee, Yoonhang;Kim, Nameun;Lee, Ju-yeop;Kang, Hyoyeong;Sung, Minji;Yu, Young-Bin;Kim, Kyunghoi;Je, Jae-Young;Kim, Hyun-Woo;Kang, Ju-Chan;Kim, Do-Hyung
    • Journal of fish pathology
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    • v.34 no.2
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    • pp.255-259
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    • 2021
  • This is the first report describing acute mass mortality occurred in juvenile olive flounder (Paralichthys olivaceus) caused by gas bubble disease (GBD). A total of 610 fish (average weight = 35 g), which were more than half of the fish acclimated at 17℃ in an aquarium, were killed within two days of acclimation. The dead and moribund fish showed excessively opened opercula and mouths, and occasionally, severe exophthalmia. Through microscopic observation, numerous gas emboli were found in the gills of the dead and live fish, while the fish were not infected with any microbial pathogens. The dissolved oxygen (DO) saturation level of the rearing water and seawater nearby the facility reached 145% and 286%, respectively, whereas other water quality parameters (such as salinity, pH, and chemical oxygen demand) were normal. The extreme saturation rate of seawater in the shore nearby seemed to be due to an enormous algal bloom that occurred there. Through molecular identification based on 18S rDNA sequences, the most dominant algal species was most closely related to Ulva californica (99.87% sequence identity) followed by U. prolifera, U. linza, and U. curvata (99.81%). Therefore, it can be concluded that supersaturated seawater due to mass algal bloom caused gas bubble disease in the olive flounder, leading to mass mortality. After technical adjustment, such as increased aeration, lowered water circulation rate, and inlet water filtration using micro-pore carbon filters, the DO level became normal, no further mortality occurred and the status of the fish was stabilized.

Low-Cost Flexible Strain Sensor Based on Thick CVD Graphene

  • Chen, Bailiang;Liu, Ying;Wang, Guishan;Cheng, Xianzhe;Liu, Guanjun;Qiu, Jing;Lv, Kehong
    • Nano
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    • v.13 no.11
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    • pp.1850126.1-1850126.10
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    • 2018
  • Flexible strain sensors, as the core member of the family of smart electronic devices, along with reasonable sensing range and sensitivity plus low cost, have rose a huge consumer market and also immense interests in fundamental studies and technological applications, especially in the field of biomimetic robots movement detection and human health condition monitoring. In this paper, we propose a new flexible strain sensor based on thick CVD graphene film and its low-cost fabrication strategy by using the commercial adhesive tape as flexible substrate. The tensile tests in a strain range of ~30% were implemented, and a gage factor of 30 was achieved under high strain condition. The optical microscopic observation with different strains showed the evolution of cracks in graphene film. Together with commonly used platelet overlap theory and percolation network theory for sensor resistance modeling, we established an overlap destructive resistance model to analyze the sensing mechanism of our devices, which fitted the experimental data very well. The finding of difference of fitting parameters in small and large strain ranges revealed the multiple stage feature of graphene crack evolution. The resistance fallback phenomenon due to the viscoelasticity of flexible substrate was analyzed. Our flexible strain sensor with low cost and simple fabrication process exhibits great potential for commercial applications.

Capillarity-Driven Self-Assembly of Silver Nanowires-Coated Fibers for Flexible and Stretchable Conductor

  • Li, Yi;Chen, Jun;Han, Xiao;Li, Yinghui;Zhang, Ziqiang;Ma, Yanwen
    • Nano
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    • v.13 no.12
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    • pp.1850146.1-1850146.9
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    • 2018
  • The rapid development of smart textiles requires the large-scale fabrication of conductive fibers. In this study, we develop a simple, scalable and low-cost capillary-driven self-assembly method to prepare conductive fibers with uniform morphology, high conductivity and good mechanical strength. Fiber-shaped flexible and stretchable conductors are obtained by coating highly conductive and flexible silver nanowires (Ag NWs) on the surfaces of yarn and PDMS fibers through evaporation-induced flow and capillary-driven self-assembly, which is proven by the in situ optical microscopic observation. The density of Ag NWs and linear resistance of the conductive fibers could be regulated by tuning the assembly cycles. A linear resistance of $1.4{\Omega}/cm$ could be achieved for the Ag NWs-coated nylon, which increases only 8% after 200 bending cycle, demonstrating high flexibility and mechanical stability. The flexible and stretchable conductive fibers have great potential for the application in wearable devices.

Study on the quality assessment of Liquidambaris Storax (소합향(蘇合香)의 규격 설정을 위한 연구)

  • Kim, Jung-Hoon;Lee, Guemsan;Lee, Seung-Ho;Ju, Young-Sung
    • The Korea Journal of Herbology
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    • v.36 no.1
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    • pp.87-95
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    • 2021
  • Objective : Liquidambaris Storax, the processed resin of Liquidambar orientalis Mill., has been therapeutically used as orifice-opening medicinals in Korean Medicine. However, unauthenticated resinous drugs from various origins were sold as Liquidambaris Storax. This study aimed to establish the quality assessment of genuine Liquidambaris Storax and to provide quantitative differences of Liquidambaris Storax in herbal markets. Methods : Bibliographic research on ancient Liquidambaris Storax was performed using classic books of herbology. The quality assessment was approached by searching modern books of herbal medicines. The marker compounds in Liquidambaris Storax from various origins were quantitatively analyzed using high-performance liquid chromatography. Results : L. orientalis was botanically characterized by palmately 5-lobed shape of leaves. Genuine Liquidambaris Storax was recognized as resinous or semi-solid form (ancient―Song dynasty) to liquid form (Myeong/Cheong dynasty) and two processed forms were available in current markets. Genuine liquid Liquidambaris Storax should be lengthened as a thread when it was lifted by a stick and be sunken under the water. The crystals of cinnamic acid was seen under microscopic observation and the scent of benzaldehyde occurred after the treatment with potassium permanganate. Cinnamyl alcohol, cinnamic acid, and cinnamaldehyde were quantified in two liquid samples of Liquidambaris Storax, while cinnamaldehyde was not quantified in resinous (semi-solid) sample. Conclusion : This study presents the detailed methods of quality assessment for genuine Liquidambaris Storax as well as the status in the herbal markets. Further quantitative study with diverse samples is required to establish the quality standard of Liquidambaris Storax.

Analysis and Tree-Ring Dating of Wooden Coffins Excavated from Incheon Sipjeong-Dong Site (인천 십정동 유적 내 출토 목관의 연륜연대 및 재질분석)

  • LEE, Kwang Hee;LEE, Ui Cheon;KANG, Pyung Won;KIM, Soo Chul
    • Journal of the Korean Wood Science and Technology
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    • v.49 no.1
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    • pp.67-81
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    • 2021
  • This study aimed to conduct tree-ring dating and analysis of the materials used for the wooden coffins excavated from the ruins of Sipjeong-dong, Incheon. The tree species for the 10 wooden coffin materials was identified as pine. For accurate tree-ring measurement, the cross section was polished using sandpaper. The annual ring width was measured with an accuracy of 0.01 mm. Since the five materials were consistent with each other in dendrochronology, a representative annual ring chronology of 83 years was prepared. The prepared representative annual ring chronology was compared with the standard annual ring chronology, and the outermost ring of the wooden coffin was confirmed to correspond to the year 1575, suggesting that the wooden coffin was produced in the late 16th century. In addition, microscopic observation and FT-IR analysis revealed that the fibers attached to the surface of the wooden coffin were fibroin (Silk), and infrared spectroscopy (FT-IR) and Py-GC/MS analysis showed that the paint left on the surface of the wooden coffin was lacquer.