• Title/Summary/Keyword: MPE(Material

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Effects of Medicinal Plant Extract on the Change of Cerebral Hemodynamic in Rats (약용식물 추출물이 흰쥐의 뇌혈류학적 변화에 미치는 영향)

  • Park, Sung-Jin;Hahm, Tae-Shik;Kim, Cheun-An
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.39 no.4
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    • pp.506-510
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    • 2010
  • As an attempt to develop new functional health beverage by using medicinal herb, we investigated the effect of medicinal plant extract (MPE) on mean arterial blood pressure (MABP) and regional cerebral blood flow (rCBF) of rats. The changes of MABP and rCBF were determined by LDF methods. LDF allows for real time, noninvasive, continuous recordings of local CBF. MABP in MPE treated rats showed significant change of MPE 1.0 and 10.0 mg/kg. MPE i.v. administration showed significant increase of rCBF in a dose-dependent manner. Propranolol pretreated MABP showed significant change in the increase of MPE. rCBF of propranolol pretreated rats showed significant change from the i.v. injection concentration of 1.0 and 10.0 mg/kg. The ischemia/reperfusion induced oxidative stress may have contributed to cerebral damage in rats, and the present study provides clear evidence for the beneficial effect of MPE on ischemia induced brain injury. Also, the action mechanism in elevation effect of MPE on rCBF might be concerned with the role of $\beta$-adrenoceptor. The exact component and mechanism remains for the future study.

A Study on the Characteristics of Bonding Strength by Types of Repair Materials by Mechanical Pressurizing Equipment(MPE) (기계식 가압장비(MPE)에 의한 보수재 종류별 부착강도 특성에 관한 연구)

  • Yu, Hyeong-Sik;Chung, Jee-Seung
    • The Journal of the Convergence on Culture Technology
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    • v.6 no.2
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    • pp.553-560
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    • 2020
  • In the existing research paper, we developed Mechanical Pressurizing Equipment(MPE) that can apply a certain amount of pressure and found out about improving the bonding strength of repair materials constructed in the repair section, and if pressurized, the bonding strength could be increased. In this study, the pressure of Mechanical Pressurizing Equipment(MPE) was changed to 0, 10, 30, 50, and 80 kPa, and the test was conducted to select effective pressure by measuring the flexural, compressive, and bonding strength of the specimens and deformation of the pressure plate at the age of 3 and 28th days. As a result of the test, 30 kPa was the most efficient pressure for the MPE. After producing the specimen with three types of repair materials with different main components, the bonding strength was measured according to dry and wet conditions, construction site (ceiling, wall and floor), and whether or not pressurized, on the 3rd, 7th, 14th, and 28th, indicating that the repair materials mixed with cellulose fiber was most effective for the MPE.

Development of AHP-based Aviation Logistics MPE Company's Production Management Job Training (AHP 기반 항공물류 소부장 전문기업의 생산관리 직무교육 개발 방안)

  • Lee, Dong-Bae;Park, Doo-Jin
    • Journal of Korea Port Economic Association
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    • v.40 no.2
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    • pp.191-204
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    • 2024
  • In this study, AHP-based production management job training was developed for MPE companies in the aviation logistics industry. The AHP model was designed with upper and lower classes. Purchase management competency, material management competency, process management competency, and SCM competency were selected as factors of the upper class of production management job training. Lower class evaluation factors were selected for each upper class. As a result of AHP analysis, the relative importance of the upper class evaluation factors was found in the order of SCM competency (0.322), process management competency (0.314), material management competency (0.201), and purchase management competency (0.163). Among the upper classes, it was analyzed that the importance of SCM competency and process management competency was high. The final priority of evaluation factors for the development of the production management curriculum of MPE companies in the aviation logistics industry was analyzed as follows. First, supply chain performance management, which is the lower layer of SCM competency, was analyzed as the top priority factor, and the priorities of evaluation factors were derived such as facility preservation management, which is the lower layer of SCM competency, supply chain production operation, which is the lower layer of SCM competency, process quality management, which is the lower layer of SCM competency, supply chain transportation management, and supply chain supply plan, which are the lower layers of SCM competency

A Study on the Performance of Mechanical Pressurizing Equipment(MPE) for Improving Bond Strength of Repair Materials for Concrete Box Structures (콘크리트 박스 구조물용 보수재의 부착강도 향상을 위한 기계식 가압장비(MPE) 성능에 관한 연구)

  • Yu, Hyeong-Sik;Jung, Jee-Seung
    • The Journal of the Convergence on Culture Technology
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    • v.6 no.1
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    • pp.477-483
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    • 2020
  • The rehabilitation methods used in existing concrete box structures rely on the method of attaching the repair material to the section of the structure with a spray equipment. In the case of ceiling or wall parts, the adhesion force to the repair material may be reduced by the gravity and dead load after construction. In subway structures, vibration causes a problem that reduces the initial adhesion. Supplementary measures are needed as the quality of repair varies depending on the worker's proficiency and construction environment. In this study, mechanical pressurization equipment was developed that can apply a certain pressure after construction of a repairwork to solve problems such as reduction of adhesion of repair materials by gravity and variation of repair quality by labor work. To find out the effect of the pressurized equipment, a chamber similar to the field conditions was constructed to measure the attachment strength different from the pressurized condition, the section, and the environmental conditions. The pressurization differed from the other parts, but the adhesion strength of up to 70% was increased.

Strength and Durability of Mortar Made with Plastics Bag Waste (MPBW)

  • Ghernouti, Youcef;Rabehi, Bahia
    • International Journal of Concrete Structures and Materials
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    • v.6 no.3
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    • pp.145-153
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    • 2012
  • The aim of this study is to explore the possibility of re-cycling a waste material that is now produced in large quantities, while achieving an improvement of the mechanical properties and durability of the mortar. This study examines the mechanical properties and the durability parameters of mortars incorporating plastics bag wastes (PBW) as fine aggregate by substitution of a variable percentage of sand (10, 20, 30 and 40 %). The influence of the PBW on the, compressive and flexural strength, drying shrinkage, fire resistance, sulfuric acid attack and chloride diffusion coefficient of the different mortars, has been investigated and analyzed in comparison to the control mortar. The results showed that the use of PBW enabled to reduce by 18-23 % the compressive strength of mortars containing 10 and 20 % of waste respectively, which remains always close to the reference mortar (made without waste). The replacement of sand by PBW in mortar slows down the penetration of chloride ions, improves the behavior of mortars in acidic medium and improves the sensitivity to cracking. The results of this investigation consolidate the idea of the use of PBW in the field of construction.

Improvement of Skin Photoaging by Polysaccharide Extract Derived from Tremella fuciformis (White Jelly Mushroom)

  • Choi, Jae-Hwan;Kim, Bora
    • Natural Product Sciences
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    • v.27 no.4
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    • pp.300-306
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    • 2021
  • Chronic ultraviolet (UV) radiation causes photoaging, which represents skin damage, disrupts skin barrier function, and promotes wrinkle formation. We investigated that the polysaccharide extract of an edible basidiomycetous white jelly mushroom, Tremella fuciformis, (TF-Glucan®) exhibited statistically photoprotective activity by inhibiting matrix metalloproteases (MMPs) and increasing collagen synthesis, and an anti-inflammatory activity by inhibiting nitric oxide and pro-inflammatory cytokines at the concentrations of less than 1000 ㎍/ml, which is not cytotoxic (p < 0.05). Additionally, TF-Glucan® increased the expression of involucrin and filaggrin to prevent the disruption of UVB-induced barrier function (p < 0.05). TF-Glucan® was assessed as a safe material by the human primary skin irritation (1, 3, 5%), human repeated insult patch test (no sensitization at 5%), 3T3 NRU phototoxicity assay (no phototoxicity, PIF < 2, MPE < 0.1), eye irritation test test by BCOP (no category, IVIS ≤ 3) and local lymph node assay (negative at 10, 25, 50%) for identifying potential skin sensitizing. These results suggest that TF-Glucan® may be useful as an anti-photoaging ingredient for developing cosmeceuticals.

Microstructure, High Temperature Deformation Behavior and Hot Formability of Modified Al-0.7Mn alloy (개량 Al-0.7Mn 합금의 미세조직, 고온 변형 거동 및 성형성)

  • Kang, T.H.;Huang, Y.;Shin, Y.C.;Choi, H.J.;Roh, H.R.;Lee, K.A.
    • Transactions of Materials Processing
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    • v.31 no.6
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    • pp.365-375
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    • 2022
  • The microstructure and high-temperature plastic deformation behavior of the modified Al-0.7Mn alloy were investigated and compared with the conventional Al-0.3Mn (Al3102) alloy. α-Al (matrix) and Al6(Mn, Fe) phases were identified in both alloys. As a result of microstructure observation, both alloys showed equiaxed grains, and Al-0.7Mn alloy showed larger grain size and higher Al6(Mn, Fe) fraction than Al-0.3Mn alloy. High temperature compressive tests, the deformation temperatures of 410℃, 450℃, 490℃, 530℃ and strain rats of 10-2/s, 10-1/s, 1/s, 10/s, were conducted using Gleeble equipment. The flow stress values of Al-0.7Mn alloy were higher than that of Al-0.3Mn alloy at all strain rates and temperature conditions. Constitutive equations were presented using the flow stresses obtained from experimental results and the Zener-Hollomon parameter. In the true stress-true strain curves of the two alloys, the experimental and predicted values were in good agreement with each other. Based on the dynamic material model, eutectic deformation maps of Al-0.7Mn and Al-0.3Mn alloys were suggested, and the plastic instability region was presented. The modified Al-0.7Mn alloy showed a wider plastic instability region than that Al-0.3Mn alloy. Based on the process deformation maps, the MPE tube parts could be manufactured through the actual extrusion process using the suggested conditions.