• Title/Summary/Keyword: 혼합 모델

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Effect of Cacao Extract on Hydrolysis of Oil vs. Emulsion in pH-Stat Digestion Model (pH-Stat Digestion Model에서 카카오 추출물이 Oil과 Emulsion의 가수분해에 미치는 영향)

  • Lee, Ji-Hyun;Shin, Jung-Ah;Lee, Ki-Teak
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.45 no.4
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    • pp.533-541
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    • 2016
  • Effect of polyphenols-rich cacao extract (CE) on lipid hydrolysis by pancreatic lipase was investigated by pH-stat digestion. Two types of substrate (oil vs. emulsion) prepared from soybean oil and CE were studied as types I and II. In the case of type I, addition of CE did not show retardation of lipid hydrolysis, showing that pancreatic lipase was not inhibited. Final digestibility rate (${\Phi}$ max, %) and initial rate (mM/s) of the 24-h aged control (52.31%, 0.03 mM/s) were similar to those of the CE-added sample (58.88%, 0.03 mM/s). However, in the case of typeII, the hydrolysis rates of the control and CE-added emulsion showed distinct differences as aging time increased to 43 days, showing lower digestion in the CE-added emulsion than the control. After 43 days, ${\Phi}$ max values of the control and CE-added emulsion were 92.13% and 77.68%, respectively.

Progressive Failure Analysis of Adhesive Joints of Filament-Wound Composite Pressure Vessel (필라멘트 와인딩 복합재 압력용기의 접착 체결부에 대한 점진적 파손 해석)

  • Kim, Junhwan;Shin, Kwangbok;Hwang, Taekyung
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.38 no.11
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    • pp.1265-1272
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    • 2014
  • This study performed the progressive failure analysis of adhesive joints of a composite pressure vessel with a separated dome by using a cohesive zone model. In order to determine the input parameters of a cohesive element for numerical analysis, the interlaminar fracture toughness values in modes I and II and in the mixed mode for the adhesive joints of the composite pressure vessel were obtained by a material test. All specimens were manufactured by the filament winding method. A mechanical test was performed on adhesively bonded double-lap joints to determine the shear strength of the adhesive joints and verify the reliability of the cohesive zone model for progressive failure analysis. The test results showed that the shear strength of the adhesive joints was 32MPa; the experiment and analysis results had an error of about 4.4%, indicating their relatively good agreement. The progressive failure analysis of a composite pressure vessel with an adhesively bonded dome performed using the cohesive zone model showed that only 5.8% of the total adhesive length was debonded and this debonded length did not affect the structural integrity of the vessel.

A Study on the Behavior of Blasting Demolition for a Reinforced Concrete Structure Using Sealed Model Test and Particle Flow Analysis (축소모형실험과 입자결합모델 해석을 통한 철근 콘크리트 구조물의 발파해체 거동에 관한 비교 분석)

  • 채희문;전석원
    • Explosives and Blasting
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    • v.22 no.1
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    • pp.33-43
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    • 2004
  • In this study, a comparison was made between the resulting behaviors of scaled model test and particle flow analysis for blasting demolition of a reinforced concrete structure. For the test and analysis, a progressive failure of a five-story structure was considered. The dimension analysis was carried out to properly scale down the real structure into the laboratory size. The test model was made of the mixture of gypsum, sand and water along with soldering lead to analogy reinforcing steel bars. The ratio of mixing components was chosen to best represent the scaled down strength and deformation modulus. The columns and girders of the structure were precasted in the laboratory and assembled right before the blasting test. The numerical analysis of the blasting demolition was carried out using PFC2D (Particle Flow Analysis 2-Dimension by Itasca). The results of the blasting of concrete lahmen structure showed roughly identical demolition behavior between scaled model test and numerical test. For the blasting of the reinforced concrete structure, the results were more identical and closer to the real demolition behavior, since the demolition behavior was better represented in this case due to the increased tensile strength of the component.

Estimation of Number of Synapses on a Neuron in the Brain Using Physical Bisector Method (Physical disector를 이용한 신경세포 및 신경연접 수의 측정)

  • Lee, Kea-Joo;Rhyu, Im-Joo
    • Applied Microscopy
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    • v.36 no.2
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    • pp.83-91
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    • 2006
  • The number and structure of synapses are dynamically changed in response to diverse physiological and pathological conditions. Since strength of synaptic transmission is closely related to the synaptic density on a neuron, both synaptogenesis and synapse loss may play important roles in controlling neuronal activity. Thus it is essential to estimate the number of synapses using an accurate quantitative method for better understanding of the numerical alteration of synapses under terrain experimental conditions. We applied physical disector principle to estimating the number of synapses per neuron in the dentate gyrus of adult mice. First, we measured the numerical density of granule cells using the physical disector principle. Second, the density of medial perforant path to granule cell synapses was estimated using the bidirectional physical disector. Then, the volume ratio of molecular layer to granule cell layer was measured. With these numerial values, we successfully calculated the number of synapses per neuron. Individual granule cells have approximately 6500 synapses in the dentate gyrus of adult mice $(6,545{\pm}330)$, which are comparable to those of other researchers. Our results showed that the estimation of synapse numbers per neuron using the physical disector principle would provide accurate and precise information on the numerical alteration of synapses in diverse physiological and pathological conditions. Following analyses of synapse numbers using this method will contribute to the better understanding of structural synaptic plasticity in a variety of experimental animal models.

Beneficial Biological Activities of Conjugated Linoleic Acid (CLA의 생물학적 기능)

  • Ha, Yeong L.;Kim, Jeong O.;Kim, Young S.
    • Journal of Life Science
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    • v.27 no.8
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    • pp.965-973
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    • 2017
  • Conjugated linoleic acid (CLA) is a group of positional and geometric isomers of linoleic acid with conjugated double bonds at C9,C11 and C10,C12 positions. Of possible CLA isomers, a naturally occurring CLA isomer is c9,t11-CLA which is produced from linoleic acid by linoleate isomerase from various rumen and lactic bacteria, and mushroom mycelia. Meanwhile, synthetically prepared CLA contained an equal amount of c9,t11-CLA and t10,c12-CLA isomers, and other isomers as minor constituents. CLA was firstly mentioned in 1939 during the elaidinization reaction of linoleic acid. Thereafter, CLA was not an attractant to scientists because it was not scientifically interested any more. However, since the anticarcinogenic action was driven from 7,12-dimethylbenz[a]anthracene (DMBA)-induced mouse skin carcinogenesis in 1987, CLA-related researches were drastically elevated, resulting in approximately 6,100 research papers in literature, so far. CLA exhibited the significant biological activities: anticarcinogenic, antidiabetic, antihypertensive, antiatherosclerotic, body-fat reducing, antioxidative, antiinflammatory, testosterone producing and other activities. Interestingly, two major CLA isomers, c9,t11-CLA and t10,c12-CLA, exhibited different biological activities. Meanwhile, t,t-CLA isomers which is minor constituent of chemically synthesized CLA from linoleic acid exhibited more potent anticarcinogenic activity in carcinogen-induced animal models and cancer cell lines than other CLA isomrs. In the present review, the significant biological activities of CLA were discussed along with historical studies of CLA since 1939.

Radiation Effects on the Ignition and Flame Extinction of High-temperature Fuel (고온연료의 점화 및 화염 소화특성에 미치는 복사효과)

  • Kim, Yu Jeong;Oh, Chang Bo;Choi, Byung Il;Han, Yong Shik
    • Fire Science and Engineering
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    • v.27 no.6
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    • pp.50-56
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    • 2013
  • The radiation effects on the auto-ignition and extinction characteristics of a non-premixed fuel-air counterflow field were numerically investigated. A detailed reaction mechanism of GRI-v3.0 was used for the calculation of chemical reactions and the optically-thin radiation model was adopted in the simulations. The flame-controlling continuation method was also used in the simulation to predict the auto-ignition point and extinction limits precisely. As a result, it was found that the maximum H radical concentration, $(Y_H)_{max}$, rather than the maximum temperature was suitable to understand the ignition and extinction behaviors. S-, C- and O-curves, which were well known from the previous theory, were identified by investigating the $(Y_H)_{max}$. The radiative heat loss fraction ($f_r$) and spatially-integrated heat release rate (IHRR) were introduced to grasp each extinction mechanism. It was also found that the $f_r$ was the highest at the radiative extinction limit. At the flame stretch extinction limit, the flame was extinguished due to the conductive heat loss which attributed to the high strain rate although the heat release rate was the highest. The radiation affected on the radiative extinction limit and auto-ignition point considerably, however the effect on the flame stretch extinction limit was negligible. A stable flame regime defined by the region between each extinction limit became wide with increasing the fuel temperature.

Rheological Properties of the Mixture and Heat-induced Gel Prepared from Pork Salt Soluble Protein in Combined with Water Soluble Chitooligosaccharide and Chitosan (돈육에서 추출한 염용성 단백질에 수용성 키토올리고당 및 키토산을 첨가한 혼합액과 가열 겔의 물성특성)

  • Park, Sung-Yong;Wang, Seung-Hyun;Chin, Koo-Bok;Kim, Young-Dae
    • Korean Journal of Food Science and Technology
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    • v.36 no.4
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    • pp.594-597
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    • 2004
  • Effects of various levels and molecular weights (MWs) of chitooligosaccharides and chitosan with pork salt-soluble protein (SSP) on pH, moisture (%), viscosity, and hardness of protein-chitosan mixtures were determined in a model study. Mixtures of 0.15, 0.3, and 0.45% chitosan at various MWs (Low, 1.5 kDa; Medium, 30-50 kDa; High, 200 kDa) were dissolved in 3% SSP solution for measurement of pH and viscosity at $20^{\circ}C$. pH value increased with addition of 0.45% low MW of chitooligosacchearides into SSP (p<0.05), whereas decreased with addition of 0.45% medium MW and 0.3% or higher level of high MW chitosan. Viscosity increased with addition of more than 0.3% either medium or high MW chitosan (p<0.05), as compared to mixture with low MW chitolligosaccharide and control (p<0.05). No differences in gel pH, moisture, and hardness values were observed among treatments (p>0.05). Further study will be performed to evaluate rheological properties actual meat products with various levels and MWs of chitosan.

Effects of Lavender, Lemon and Eucalyptus Essential Oil on Th2 related Factors of DNCB-induced Atopy dermatitis in NC/Nga Mice Model (라벤더, 레몬, 유칼립투스 혼합 에센셜오일이 아토피 피부염 동물 모델의 Th2 관련인자에 미치는 영향)

  • Kim, Hyeon-Ah;Yun, Mi-Young;Song, Hyang-Hee;Cheong, Kwang-Jo;Yoo, Hwa-Seung
    • Journal of Pharmacopuncture
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    • v.13 no.1
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    • pp.53-61
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    • 2010
  • Purpose : To investigate the effects of the lavender, lemon and eucalyptus oil mixture on the atopy dermatitis skin lesions induced on NC/Nga Mice by dinitrochlorobenzene (DNCB). Material and Method : For this purpose, we fabricated the oil mixture blending three essential oils (lavender, lemon, eucalyptus : ELL) with one carrier oil (jojoba) and apply it on the atopic dermatitis skin lesions of NC/Nga Mice. Atopic dermatitis in NC/Nga Mice was induced by DNCB treatment on the dorsal skin of mice for 8 weeks. The mixture of ratio of each essential oil drop was 1 (eucalyptus) : 2 (lemon) : 2 (lavender) and this mixture was blended with jojoba oil 50ml (0.025%). The ELL-ointment was supplied for 8 weeks. We evaluated the effects of ELL on cell viability of mouse lung fibroblast, clinical skin features and severity, the level of serum Immunoglobulin (Ig) E & Ig G1, Interleukin (IL)-4, IL-13 and Interferon (IFN)-$\gamma$. Results : ELL showed safety on the cell viability of mouse lung fibroblast compared with control group. The cell viability was measured by SRB method. The effects of ELL on clinical skin features and severity in DNCB-induced dermatitis model of NC/Nga mice was significant compared with control group. EEL also showed significant effects on clinical symptom score compared with control group. Serum IgE & IgG1 level and development of atopy dermatitis skin lesions were evaluated. Serum IgE & IgG1 production was significantly down-regulated in EEL group compared with control group. ELL also down-regulated the levels of IL-4 and IL-13, and up-regulated the level of IFN-$\gamma$ compared with control group significantly. Conclusion : ELL was effective on atopy dermatitis by modulating Th2 related factors.

Development of The New Instrument for Measuring of Trunk-Hip Forward Flexion (새로운 체전굴 측정 방법의 개발)

  • Lee, Gun-Bum
    • Korean Journal of Applied Biomechanics
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    • v.12 no.2
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    • pp.245-257
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    • 2002
  • The purpose of this study was to develop a simple, valid, and reliable instrument for measuring forward flexion of trunk-hip joint. The subject included 44 females for sports major of volunteers at D. Women's University. In establishing the validity, objectivity the reliability of the new flexibility test(NF-test) for trunk-hip joint, Takei- flexometer(modified Leighton flexometer) was administered as the reference instrument, and test-retest method was utilized with the best scores. Intraclass correlation coefficient was obtained to use two way-mixed effect model and this value was average measure. The Pearson product correlation coefficient of L in this study were; the new flexibility test and Takei-flexometer as the reference tool correlated r = .962 in the first test, r = .960 in the second test. The intraclass correlation coefficient of the new flexibility test between in the initial test and in the retest were R = .994 for L, R =.993 for Y, and the intraclass correlation coefficient of the new flexibility test between L and Y were R =.985 in the initial test, and R =.986 in the retest. Based on the above findings, the following conclusions are presented. It was found the new flexibility test (NF test) was a valid, reliable, objective tool for measuring forward flexion of trunk-hip joint, and possible to be recommended as he test for measuring trunk-hip flexibility in the field.

A Study on the Low Temperature Epitaxial Growth of $CoSi_2$ Layer by Multitarget Bias cosputter Deposition and Phase Sequence (Multitarget Bias Cosputter증착에 의한 $CoSi_2$층의 저온정합성장 및 상전이에 관한 연구)

  • Park, Sang-Uk;Choe, Jeong-Dong;Gwak, Jun-Seop;Ji, Eung-Jun;Baek, Hong-Gu
    • Korean Journal of Materials Research
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    • v.4 no.1
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    • pp.9-23
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    • 1994
  • Epitaxial $CoSi_2$ layer has been grown on NaCl(100) substrate at low deposition temperature($200^{\circ}C$) by multitarget bias cosputter deposition(MBCD). The phase sequence and crystallinity of deposited silicide as a function of deposition temperature and substrate bias voltage were studied by X-ray diffraction(XRD) and transmission electron microscopy(TEM) analysis. Crystalline Si was grown at $200^{\circ}C$ by metal induced crystallization(M1C) and self bias effect. In addition to, the MIC was analyzed both theoretically and experimentally. The observed phase sequence was $Co_2Si \to CoSi \to Cosi_2$ and was in good agreement with that predicted by effective heat of formation rule. The phase sequence, the CoSi(l11) preferred orientation, and the crystallinity had stronger dependence on the substrate bias voltage than the deposition temperature due to the collisional cascade mixing, the in-situ cleaning, and the increase in the number of nucleation sites by ion bombardment of growing surface. Grain growth induced by ion bombardment was observed with increasing substrate bias voltage at $200^{\circ}C$ and was interpreted with ion bombardment dissociation model. The parameters of $E_{Ar}\;and \alpha(V_s)$ were chosen to properly quantify the ion bombardment effect on the variation in crystallinty at $200^{\circ}C$ with increasing substrate bias voltage using Langmuir probe.

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