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안동소주 누룩 제조를 위한 누룩 두께 및 누룩 띄움시간의 최적화 (Optimization of Thickness and Maturation Period of Andong-Soju Nuruk for Fermentation of Andong-Soju)

  • 배경화;류희영;권인숙;권정숙;손호용
    • 한국미생물·생명공학회지
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    • 제35권3호
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    • pp.231-237
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    • 2007
  • 전통주의 다양성과 국내 누룩의 우수성을 확보하기 위한 연구의 일환으로, 민속주 안동소주의 자가 제조 누룩의 최적 제조조건을 검토하였다. 안동소주 제조의 전통적인 누룩 제조방법을 준수하면서 23 cm 지름의 $2.2{\sim}5.5\;cm$의 다양한 두께의 누룩을 성형하고, 3주간 띄움 과정을 거치면서 1주일 간격으로 수분함량, pH, brix, 무게변화, 전분 당화능, 환원당 함량, 생균수 및 우점종 변화 등을 조사하였다. 그 결과 두께 4.0 cm 이상으로 성형된 누룩이 전분 당화능력 및 생균수, 누룩 곰팡이 생육면에서 가장 우수하였으며, 에탄올 발효면에서는 2주간의 띄움이, 안동소주의 누룩곰팡이를 이용한 관능적 측면에서는 3주간의 띄움이 필요하다고 판단되었다. 실제 제조된 누룩으로 포도당 및 전분 발효배지에서 에탄을 발효시킨 결과, 누룩 성형시 $4.0{\sim}5.5\;cm$ 두께로 성형하여 $2{\sim}3$주간 누룩을 띄운 경우가 가장 우수한 결과를 나타내었다. 또한 누룩 제조시 별도의 건조효모 첨가는 불필요함을 확인하였다. 본 연구결과는 전통적인 안동소주 제조법하에서 자가제조 누룩의 두께와 띄움시간을 조정하여 누룩의 균일 제조과 효율적인 생산이 가능함을 제시하고 있다.

Promotion of excisional wound repair by a menstrual blood-derived stem cell-seeded decellularized human amniotic membrane

  • Farzamfar, Saeed;Salehi, Majid;Ehterami, Arian;Naseri-Nosar, Mahdi;Vaez, Ahmad;Zarnani, Amir Hassan;Sahrapeyma, Hamed;Shokri, Mohammad-Reza;Aleahmad, Mehdi
    • Biomedical Engineering Letters
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    • 제8권4호
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    • pp.393-398
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    • 2018
  • This is the first study demonstrating the efficacy of menstrual blood-derived stem cell (MenSC) transplantation via decellularized human amniotic membrane (DAM), for the promotion of skin excisional wound repair. The DAM was seeded with MenSCs at the density of $3{\times}10^4cells/cm^2$ and implanted onto a rat's $1.50{\times}1.50cm^2$ full-thickness excisional wound defect. The results of wound closure and histopathological examinations demonstrated that the MenSC-seeded DAM could significantly improve the wound healing compared with DAM-treatment. All in all, our data indicated that the MenSCs can be a potential source for cell-based therapies to regenerate skin injuries.

Mechanical Properties of C-type Mesophase Pitch-based Carbon Fibers

  • Ryu, Seung-Kon;Rhee, Bo-Sung;Yang, Xiao Ping;Lu, Yafei
    • Carbon letters
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    • 제1권3_4호
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    • pp.165-169
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    • 2001
  • The C-type mesophase pitch-based carbon fiber (C-MPCF) was prepared throuch C-type spinnerette and compared the mechanical properties to those of round type mesophase pitch fiber (R-MPCF) and C-type isotropic pitch fiber (C-iPCF). The tensile strength and modulus of C-MPCF were about 18.6% and 35.7% higher than those of R-MPCF. The tensile strength of C-MPCF was 62% higher than that of C-iPCF of the same $8{\mu}m$ thickness because of more linear transverse texture, which could be easily converted to graphitic crystallinity during heat treatment. The torsional rigidity of C-MPCF was 2.37 times higher than that of R-MPCF. The electrical resistivity of C-MPCF was $8{\mu}{\Omega}{\cdot}m$. The C-iPCF shows far lower electrical resistivity than R-iPCF as well as the mesophase carbon fiber because of better alignment of texture to the fiber axis.

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Understanding Bacterial Biofilm Stimulation Using Different Methods - a Criterion for Selecting Epiphytes by Plants

  • Bhushan, Shashi;Gogoi, Mandakini;Bora, Abhispa;Ghosh, Sourav;Barman, Sinchini;Biswas, Tethi;Sudarshan, Mathummal;Thakur, Ashoke Ranjan;Mukherjee, Indranil;Dey, Subrata Kumar;Chaudhuri, Shaon Ray
    • 한국미생물·생명공학회지
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    • 제47권2호
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    • pp.303-309
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    • 2019
  • Earlier studies by our group revealed that gallic acid in phytochemicals stimulated biofilm production in epiphytes, while caffeic acid in phytochemicals inhibited biofilm production in non-epiphytes. It is well documented that antimicrobial secretion by some epiphytic bacteria inhibits non-epiphytic bacterial growth on leaf surfaces. These selection criteria help plants choose their microbial inhabitants. Calcium and iron in phytochemicals also stimulate biofilm formation and thus, may be selection criteria adopted by plants with respect to their native epiphytic population. Furthermore, the processing of leaves during phytochemical extraction impacts the composition of the extract, and therefore its ability to affect bacterial biofilm formation. Computation of the Hurst exponent using biofilm thickness data obtained from the Ellipsometry of Brewster Angle Microscopic (BAM) images is an efficient tool for understanding the impact of phytochemicals on epiphytic and non-epiphytic populations when compared to fluorescent microscopy, scanning electron microscopy, and staining techniques. To the best of our knowledge, this is the first report that uses the Hurst exponent to elucidate the mechanism involved in plant microbe interaction.

Carbon Fibres for the Repair of Abdominal Wall Defects in Rabbits

  • Gangwar, A.K.;Sharma, A.K.;Kumar, Naveen;Maiti, S.K.;Kumar, N.;Gupta, O.P.;Goswami, T.K.;Singh, Rajendra
    • Carbon letters
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    • 제6권1호
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    • pp.15-24
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    • 2005
  • Sixteen clinically healthy New Zealand white rabbits of either sex were divided into two equal groups I and II of 8 animals each. Under thiopental sodium (2.5%) anaesthesia a linear full thickness abdominal wall defect of 3 cm in length was created and repaired with continuous suture pattern using 3000 filaments of carbon fibres and 1~0 black braided nylon suture, ingroup I and II respectively. Increased vascularity was observed in carbon fibres (group I) and on day 30 the carbon fibres were covered by white fibrous tissue. Significantly higher (P < 0.05) values of glucose was seen on day 14 in group I, whereas, decrease in glucose value was observed in group II. Histopathologically, the carbon fiber implant induced extensive fibrous tissue (collagen fiber) reaction. Negligible inflammatory cells in the stroma indicate the host tissue tolerance to carbon fibers. Histochemically, gradually increased alkaline phosphatase activity up to day 14 in group I, suggested the proliferation of fibroblasts in early stages.

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Fracture Toughness and Crack Growth Resistance of the Fine Grain Isotropic Graphite

  • Kim, Dae-Jong;Oh, Seung-Jin;Jang, Chang-Heui;Kim, In-Sup;Chi, Se-Hwan
    • Carbon letters
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    • 제7권1호
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    • pp.19-26
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    • 2006
  • Three point bending tests of single edge notched beam (SENB) specimens were carried out to evaluate the fracture behavior of the fine-grain isotropic nuclear grade graphite, IG-11. To measure the crack initiation point and the subsequent crack growth, the direct current potential drop (DCPD) method and a traveling microscope were used. The effects of test variables like initial crack length, specimen thickness, notch type and loading rate on the measured fracture toughness, $K_Q$, were investigated. Based on the test results, the ranges of the test variables to measure the reliable fracture toughness value were proposed. During the crack growth, the rising R-curve behavior was observed in IG-11 graphite when the superficial crack length measured on the specimen surface was used. The increase of crack growth resistance was discussed in terms of crack bridging, crack meandering, crack branching, microcracking and crack deflection, which increase the surface energy and friction force.

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Fabrication and Electrical, Thermal and Morphological Properties of Novel Carbon Nanofiber Web/Unsaturated Polyester Composites

  • Kim, Seong-Hwan;Kwon, Oh-Hyeong;Cho, Dong-Hwan
    • Carbon letters
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    • 제11권4호
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    • pp.285-292
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    • 2010
  • Novel unsaturated polyester composites with PAN-based nanofiber, stabilized PAN nanofiber, and carbonized nanofiber webs have been fabricated, respectively, and the effects of the nanofiber web content on their electrical resistivity, the thermal stability, dynamic storage modulus, and fracture surfaces were studied. The result demonstrated that the introduction of just one single layer (which is corresponding to 2 wt.%) of the carbonized nanofiber web to unsaturated polyester resin (UPE) could contribute to reducing markedly the electrical resistivity of the resin reflecting the percolation threshold, to improving the storage modulus, and to increasing the thermal stability above $350^{\circ}C$. The effect on decreasing the resistivity and increasing the modulus was the greatest at the carbonized PAN nanofiber web content of 8 wt.%, particularly showing that the storage modulus was increased about 257~283% in the measuring temperature range of $-25^{\circ}C$ to $50^{\circ}C$. The result also exhibited that the carbonized PAN nanofibers were distributed uniformly and compactly in the unsaturated polyester, connecting the matrix three-dimensionally through the thickness direction of each specimen. It seemed that such the fiber distribution played a role in reducing the electrical resistivity as well as in improving the dynamic storage modulus.

Thermo-electrical properties of randomly oriented carbon/carbon composite

  • Raunija, Thakur Sudesh Kumar;Supriya, N.
    • Carbon letters
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    • 제22권
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    • pp.25-35
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    • 2017
  • The aim of the work was to investigate the thermo-electrical properties of low cost and rapidly produced randomly oriented carbon/carbon (C/C) composite. The composite body was fabricated by combining the high-pressure hot-pressing (HP) method with the low-pressure impregnation thermosetting carbonization (ITC) method. After the ITC method step selected samples were graphitized at $3000^{\circ}C$. Detailed characterization of the samples' physical properties and thermal properties, including thermal diffusivity, thermal conductivity, specific heat and coefficient of thermal expansion, was carried out. Additionally, direct current (DC) electrical conductivity in both the in-plane and through-plane directions was evaluated. The results indicated that after graphitization the specimens had excellent carbon purity (99.9 %) as compared to that after carbonization (98.1). The results further showed an increasing trend in thermal conductivity with temperature for the carbonized samples and a decreasing trend in thermal conductivity with temperature for graphitized samples. The influence of the thickness of the test specimen on the thermal conductivity was found to be negligible. Further, all of the specimens after graphitization displayed an enormous increase in electrical conductivity (from 190 to 565 and 595 to 1180 S/cm in the through-plane and in-plane directions, respectively).

The Characteristics of Electrocardiography Findings in Left Ventricular Remodeling Patterns of Hypertensive Patients

  • Choi, Sun Young
    • 대한의생명과학회지
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    • 제21권4호
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    • pp.208-217
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    • 2015
  • The exact diagnosis of left ventricular hypertrophy (LVH) is very important in the treatment of hypertension. The purpose of our study is to determine the relationship between left ventricular remodeling patterns and electrocardiography (ECG) findings in hypertensive patients. We divided 137 patients into four groups according to left ventricular mass index (LVMI) and the relative wall thickness: normal, concentric remodeling, concentric hypertrophy, eccentric hypertrophy. LVH on the ECG was defined by three ECG criteria: Sokolow-Lyon voltage criteria, Cornell voltage criteria and Romhilt-Estes point score. LVH on the echocardiography was defined by LVMI. The prevalence of ECG LVH was increased in concentric hypertrophy and eccentric hypertrophy group. The QRS voltages by Sokolow-Lyon voltage criteria (r = 0.494, P = 0.002) and Cornell voltage criteria (r = 0.628, P < 0.001), and Romhilt-Estes point score (r = 0.689, P < 0.001) were positively correlated with LVMI. Also, the QRS voltages and point scores were significantly increased in the concentric hypertrophy and eccentric hypertrophy group with increased LVMI. The QRS voltage and Romhilt-Estes point scores were positively correlated with LVMI. The QRS voltages and Romhilt-Estes point scores were also increased in the left ventricular remodeling groups with increased LVMI.

Effects of Chlorine Contents on Perovskite Solar Cell Structure Formed on CdS Electron Transport Layer Probed by Rutherford Backscattering

  • Sheikh, Md. Abdul Kuddus;Abdur, Rahim;Singh, Son;Kim, Jae-Hun;Min, Kyeong-Sik;Kim, Jiyoung;Lee, Jaegab
    • Electronic Materials Letters
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    • 제14권6호
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    • pp.700-711
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    • 2018
  • CdS synthesized by the chemical bath method at $70^{\circ}C$, has been used as an electron transport layer in the planar structure of the perovskite solar cells. A two-step spin process produced a mixed halide perovskite of $CH_3NH_3PbI_{3-x}Cl_x$ and a mixture of $PbCl_2$ and $PbI_2$ was deposited on CdS, followed by a sub-sequential reaction with MAI ($CH_3NH_3I$). The added $PbCl_2$ to $PbI_2$ in the first spin-step affected the structure, orientation, and shape of lead halides, which varied depending on the content of Cl. A small amount of Cl enhanced the surface morphology and the preferred orientation of $PbI_2$, which led to large and uniform grains of perovskite thin films. In contrast, the high content of Cl produces a new phase PbICl in addition to $PbI_2$, which leads to the small and highly uniform grains of perovskites. An improved surface coverage of perovskite films with the large and uniform grains maximized the performance of perovskite solar cells at 0.1 molar ratio of $PbCl_2$ to $PbI_2$. The depth profiling of elements in both lead halide films and mixed halide perovskite films were measured by Rutherford backscattering spectroscopy, revealing the distribution of chlorine along with the thickness, and providing the basis for the mechanism for enhanced preferred orientation of lead halide and the microstructure of perovskites.