• 제목/요약/키워드: C2A

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새로운 C2C-PAKA 프로토콜의 안전성 연구 (On the Security of a New C2C-PAKA Protocol)

  • 변진욱
    • 정보보호학회논문지
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    • 제22권3호
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    • pp.473-483
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    • 2012
  • 단말 간 사용자의 안전성 확보를 위해, 동일한 패스워드를 가정하여 두 사용자를 인증하는 환경은 실용적이지 않다. 왜냐하면, 사용자들은 각자 고유의 다른 패스워드를 암기하고 있기 때문이다. 이를 해결하기 위해 서로 다른 패스워드를 이용한 단말간의 키 교환 (EC2C-PAKA) 프로토콜이 서로 다른 영역의 환경 (cross-realm setting)에서 제안되었다. 최근에, 이러한 EC2C-PAKA 프로토콜에 대한 취약점이 Feng과 Xu에 의해서 주장되었다. 그들은 EC2C-PAKA 프로토콜이 패스워드 가장공격에 취약함을 주장하였다. 그들은 또한 패스워드 가장공격에 강인한 프로토콜을 제안했다. 본 논문에서는 Feng과 Xu가 제안한 공격이 옳지 않음과 EC2C-PAKA 프로토콜이 여전히 패스워드 가장 공격에 강인함을 보인다. 반대로, Feng과 Xu가 향상 시킨 프로토콜이 A 영역에서 Alice의 패스워드를 알고 있는 서버가 B 영역에 있는 Bob을 가장할 수 있는 가장 공격에 취약함을 보인다. 이에 대한 대처방안도 논의한다.

Chaetomium globosum 이 생성하는 Cellulose 분해 효소에 관한 연구 -(제2보) Cellulase의 정제- (Studies on Cellulolytic Enzyme Producing by Ckaetomium globosum -Part 2. Purification of Cellulase-)

  • 정동효
    • Applied Biological Chemistry
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    • 제12권
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    • pp.33-41
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    • 1969
  • 1. Cheatomium globosum의 밀기울 배양기에서 조효소를 추출하고 황산암모니움 염석 부분을 cellulose 분말 column으로 2개의 cellulase활성 부분(C-1, C-2)을 분리 하였다. 그 하나는 환원당 증가 활성이 강하며 (C-1) 다른 하나는 곁도 감소 활성이 강하였다. (C-2) 그러나 단백질 량은 C-1부분이 많았고 C-2 부분은 적었다. 2. 환원당 증가 활성이 강한부분 (C-1)을 DEAE-Sephadex A-25 column에서 분리할 결과 다시 2개의 성분 (C-1-1 및 C-1-2)으로 나누어 졌다. 그리고 C-1-2는 column에 강하게 흡착되었고 2M-NaCl의 용액으로 용출되었다. 이는 착색 된 것으로 봐서 C-1-1과는 아주 다른 단백질로 생각이 된다. 3. Cellulase C-1-1을 다시 Amberlite XE-64 column으로 분별하여 단일의 peak를 얻었다. 4. Cellulase C-1-1 부분의 초원심 침강계 면은 단일의 peak로 나타나고 또 자외선 홍수 spectrum도 전형적인 단백질의 흡수 spectrum을 나타 내었다. 5. Cellulase C-1-1의 최적 pH는 환원당 증가활성법으로나 점도 감소 활성법으로 다 같이 pH 4.0이였다. 6. 그리고 그의 최적 온도는 $40^{\circ}C$였다. 7. Cellulase C-1-1의 pH 안정성은 $40^{\circ}C$에서 pH 5.0 내지 pH 8.0의 범위 내였다. 8. 그리고 열안정성은 pH 4.0에서 $50^{\circ}C$ 이하였다

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Ti$_3$SiC$_2$의 소성 변형 특성에 미치는 결정립 크기의 효과 (Effect if Grain Size on Plasticity of Ti$_3$SiC$_2$)

  • 이승건
    • 한국세라믹학회지
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    • 제35권8호
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    • pp.807-812
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    • 1998
  • Mechanical properties of two types of polycrystlline {{{{ { { Ti}_{3 }SiC }_{2 } }} with different grain size were investigated. A fine grain {{{{ { { Ti}_{3 }SiC }_{2 } }} has a higher fracture strength and hardness. Plot of strength versus Vickers indentation load indicated that {{{{ { { Ti}_{3 }SiC }_{2 } }} has a high flaw tolerance. Hertzian indentation test using a spherical indenter was used to study elastic and plastic behavior in {{{{ { { Ti}_{3 }SiC }_{2 } }}. Indentation stress-strain curves of each material are made to evaluate the plasticity of {{{{ { { Ti}_{3 }SiC }_{2 } }} Both find and coarse grain {{{{ { { Ti}_{3 }SiC }_{2 } }} showed high plasticity. In-dentation stress-strain curve of coarse grain {{{{ { { Ti}_{3 }SiC }_{2 } }} deviated even more from an ideal elastic limit in-dicating exceptional plasticity in this material. Deformation zones were formed below the contact as well as around the contact area in both materials but the size of deformation zone in coarse grain {{{{ { { Ti}_{3 }SiC }_{2 } }} was much larger than that in fine grain {{{{ { { Ti}_{3 }SiC }_{2 } }} Intragrain slip and kink would account for high plasticity. Plastic behavior of {{{{ { { Ti}_{3 }SiC }_{2 } }} was strongly influenced by grain size.

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연료용 알콜의 고온발효를 위해 분리한 고온성 효모균주 Saccharomyces cerevisiae F38-1의 발효 특성 (The Fermentation Characteristics of Saccharomyces cerevisiae F38-1 a Thermotolerant Yeast Isolated for Fuel Alcohol Production at Elevated Temperature)

  • 김재완;김상헌;진익렬
    • 한국미생물·생명공학회지
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    • 제23권5호
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    • pp.624-631
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    • 1995
  • The fermentation characteristics of Saccharomyces cerevisiae F38-1, a newly isolated thermotolerant yeast strain from a high temperature environment have been studied using a fermentation medium containing 20% glucose, 0.2% yeast extract, 0.2% polypeptone, 0.3% (NH$_{4}$)$_{2}$SO$_{4}$, 0.1% KH$_{2}$PO$_{4}$, and 0.2% MgSO$_{4}$ without shaking at 30$\circ$C to 43$\circ$C for 5 days. The fermentability was over 90% at 30$\circ$C, 88% at 37$\circ$C, 77% at 40$\circ$C and 30% at 43$\circ$C. A similar fermentation result was obtained at pH between 4 and 6 at 30$\circ$C and 40$\circ$C. Aeration stimulated the growth of the strain at the beginning of the fermentation, but it reduced alcohol production at the end of alcohol fermentation. Optimal glucose concentration was determined to be between 18 and 22% at 40$\circ$C as well as 30$\circ$C, but the growth was inhibited at the glucose concentration of over 30%. A fermentability of over 90% was observed at 40$\circ$C in 2 days when the medium was supplemented by 2% yeast extract. A higher inoculum size increased the initial fermentation rate, but not the fermentation. A fermentability of over 90% was achieved in 2 days at 40$\circ$C in a fermentor experiment using an optimized medium containing 20% glucose and 1% yeast extract.

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Tricalciumaluminate의 초기 수화반응에 미치는 $K_2O$의 영향 (Effect of Potassium Oxide on the Early Hydration of Tricalciumaluminate)

  • 한기성;최만;서일영
    • 한국세라믹학회지
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    • 제19권2호
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    • pp.133-138
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    • 1982
  • Two kinds of clinker liquid melts, one containing 2.0% of $K_2O$ and the other without $K_2O$, were prepared with the similar composition as those developed during the firing of portland cement clinker. One portion of melt was quenched and found to consist of glass together with traces of proto-$C_3A$, and the other portion was allowed to cool spontaneously to crystallize $C_3A$ and calciumferrite well. The product obtained by crystallization of the melt without $K_2O$showed cubic $C_3A$, while orthorhombic $C_3A$ was formed from the crystallized product containing $K_2O$. Studies on the hydration behavior of the samples made from the melts with 30% of gypsum were carried out for 24 hours by observation at regular intervals ettringite, monosulphate hydrates and gypsum which were formed or consumed during hydration. The samples without $K_2O$ in the melts were hydrated wth addition of proper amount of $K_2SO_4$ in the water for hydration. Hydration behavior of glassified $C_3A$ showed that it has low reactivity relative to crystallized $C_3A$, and also hydration reactivity of orthorhombic $C_3A$ was much lower than that of cubic $C_3A$ in 60 minutes. Potassium sulphate in the solution reduced the hydration reactivity of $C_3A$ . Evolution peaks of hydration heat examined by twin-type conduction micro-calorimeter showed that glassified $C_3A$ without $K_2O$ had secondary peak after 9 hours and $C_3A$ containing $K_2O$ after 12 hours. When crystallized $C_3A$ was hydrated, initial peaks of hydration heat were considerably high and there was no secondary peak for cubic $C_3A$ but the secondary peak of orthorhombic $C_3A$ appeared after 4 hours.

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MEROMORPHIC FUNCTIONS SHARING A NONZERO POLYNOMIAL CM

  • Li, Xiao-Min;Gao, Ling
    • 대한수학회보
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    • 제47권2호
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    • pp.319-339
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    • 2010
  • In this paper, we prove that if $f^nf'\;-\;P$ and $g^ng'\;-\;P$ share 0 CM, where f and g are two distinct transcendental meromorphic functions, $n\;{\geq}\;11$ is a positive integer, and P is a nonzero polynomial such that its degree ${\gamma}p\;{\leq}\;11$, then either $f\;=\;c_1e^{cQ}$ and $g\;=\;c_2e^{-cQ}$, where $c_1$, $c_2$ and c are three nonzero complex numbers satisfying $(c_1c_2)^{n+1}c^2\;=\;-1$, Q is a polynomial such that $Q\;=\;\int_o^z\;P(\eta)d{\eta}$, or f = tg for a complex number t such that $t^{n+1}\;=\;1$. The results in this paper improve those given by M. L. Fang and H. L. Qiu, C. C. Yang and X. H. Hua, and other authors.

Cold Allodynia after C2 Root Resection in Sprague-Dawley Rats

  • Chung, Daeyeong;Cho, Dae-Chul;Park, Seong-Hyun;Kim, Kyoung-Tae;Sung, Joo-Kyung;Jeon, Younghoon
    • Journal of Korean Neurosurgical Society
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    • 제61권2호
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    • pp.186-193
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    • 2018
  • Objective : The purpose of this study was to evaluate pain-related behaviors after bilateral C2 root resection and change in pain patterns in the suboccipital region in rats. Methods : Male Sprague-Dawley rats were randomly assigned to three groups (n=25/group); $n{\ddot{a}}ive$, sham, and C2 resection. Three, 7, 10, and 14 days after surgery, cold allodynia was assessed using $20{\mu}L$ of 99.7% acetone. c-Fos and c-Jun were immunohistochemically stained to evaluate activation of dorsal horn gray matter in C2 segments of the spinal cord 2 hours, 1 day, 7 days, and 14 days after surgery. Results : Three days after surgery, the response to acetone in the sham group was significantly greater than in the $n{\ddot{a}}ive$ group, and this significant difference between the $n{\ddot{a}}ive$ and sham groups was maintained throughout the experimental period (p<0.05 at 3, 7, 10, and 14 days). Seven, 10, and 14 days after surgery, the C2 root resection group exhibited a significantly greater response to acetone than the $n{\ddot{a}}ive$ group (p<0.05), and both the sham and C2 resection groups exhibited significantly greater responses to acetone compared with 3 days after surgery. No significant difference in cold allodynia was observed between the sham and C2 root resection groups throughout the experimental period. Two hours after surgery, both the sham and C2 root resection groups exhibited significant increases in c-Fos- and c-Jun-positive neurons compared with the naive group (p=0.0021 and p=0.0358 for the sham group, and p=0.0135 and p=0.014 for the C2 root resection group, respectively). One day after surgery, both the sham and C2 root resection groups exhibited significant decreases in c-Fos -positive neurons compared with two hours after surgery (p=0.0169 and p=0.0123, respectively), and these significant decreases in c-Fos immunoreactivity were maintained in both the sham and C2 root resection groups 7 and 14 days after surgery. The sham and C2 root resection groups presented a tendency toward a decrease in c-Jun-positive neurons 1, 7, and 14 days after surgery, but the decrease did not reach statistical significance. Conclusion : We found no significant difference in cold allodynia and the early expression of c-Fos and c-Jun between the sham and C2 resection groups. Our results may support the routine resection of the C2 nerve root for posterior C1-2 fusion, but, further studies are needed.

Overexpressed Drosophila DNA Methyltransferase 2 Isoform C Interacts with Hsp70 in Vivo

  • Roder, Karim
    • BMB Reports
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    • 제40권4호
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    • pp.554-561
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    • 2007
  • Shen and colleagues (Lin et al., 2004) have recently shown that overexpression of the Drosophila DNA methyltransferase 2 isoform C, dDnmt2c, extended life span of fruit flies, probably due to increased expression of small heat shock proteins such as Hsp22 or Hsp26. Here, I demonstrate with immunoprecipitations that overexpressed dDnmt2c interacts with endogenous Hsp70 protein in vivo in S2 cells. However, its C-terminal half, dDnmt2c(178-345) forms approximately 10-fold more Hsp70-containing protein complexe than wild-type dDnmt2c. Overexpressed dDnmt2c(178-345) but not the full length dDnmt2c is able to increase endogenous mRNA levels of the small heat shock proteins, Hsp26 and Hsp22. I provide evidence that dDnmt2c(178-345) increases Hsp26 promoter activity via two heat shock elements, HSE6 and HSE7. Simultaneously overexpressed Hsp40 or a dominant negative form of heat shock factor abrogates the dDnmt2c(178-345)-dependent increase in Hsp26 transcription. The data support a model in which the activation of heat shock factor normally found as an inactive monomer bound to chaperones is linked to the overexpressed C-terminus of dDnmt2c. Despite the differences observed in flies and S2 cells, these findings provide a possible explanation for the extended lifespan in dDnmt2c-overexpressing flies with increased levels of small heat shock proteins.

Fabrication of Mullite-Bonded Porous SiC Using Ti3AlC2 MAX Phase

  • Septiadi, Arifin;Yoon, Dang-Hyok
    • 한국세라믹학회지
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    • 제56권2호
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    • pp.191-196
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    • 2019
  • This study assessed the feasibility of a Ti3AlC2 MAX phase as an Al-source for the formation of a mullite bond in the fabrication of porous SiC tubes with high strength. The as-received Ti3AlC2 was partially oxidized at 1200℃ for 30 min before using to minimize the abrupt volume expansion caused by oxidation during sintering. Thermal treatment at 1100-1400℃ for 3 h in air led to the formation of Al2O3 by the decomposition of Ti3AlC2, which reacted further with oxidation-derived SiO2 on the SiC surface to form a mullite phase. The fabricated porous SiC tubes with a relative density of 48 - 62 % exhibited mechanical strengths of 80 - 200 MPa, which were much higher than those with the Al2O3 filler material. The high mechanical strength of the Ti3AlC2-added porous SiC was explained by the rigid mullite neck formation along with the retained Ti3AlC2 with good mechanical properties.

Metagonimus yokogawai 세르카리아의 감각유두에 관한 연구 (Study on Sensory Papillae of Metagonimus yokogawai Cercaria)

  • 김재진;민득영소진탁
    • Parasites, Hosts and Diseases
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    • 제22권1호
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    • pp.11-20
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    • 1984
  • A number of studies on the papillae of cercariae of trematodes reported that the papillar patterns (or chaetotaxy) of cercariae might be an excellent method to attain better understanding of the digenetic trematodes (Richard, 1971 ; Short and Cartrett, 1973; Bayssade-Dufour, 1979) . The present study was aimed to determine the number, distribution pattern and structure of the sensory papillae of Metagonimus yokogawai cercariae, and to elucidate the chaetotaxy of this digenetic trematode. M. yokogawai cercariae were pipetted from a vial in which infected snails (Semisulcospira libertina) had been kept for 3 hours. The snails were collected from an endemic area of M. yokogawai, Boseong river in west-southern part of Korea. Observations of papillae were based on light microscopy of those stained with silver nitrate, and on scanning electron microscopy The results are summarized as follows: 1, All papillae observed were uniciliated. 2. Cilia in anterior tip were shorter than the others in other portions. 3. The body papillae were arranged in essentially symmetrical patterns, Total number of the papillae was 126(63 pairs) in average; anterior tip 40(20 pairs), ventral 20(10 pairs), lateral 42(21 pairs), and caudal 8(4 pairs). 4. The chaetotany of M. yokogawai cercaria was: Ci cycle ($3+3C_{I}V,{\;}2+2C_{I}L,{\;}2+3C_{I}D),{\;}C_{II}{\;}cycle(2C_{II}V,{\;}1C_{II}L,{\;}2C_{II}D),{\;}C_{lll}{\;}cycle{\;}(1+lC_{III}V,{\;}1C_{IlI}L),{\;}C_{IV}{\;}cycle{\;}(1C_{IV}V,{\;}IC_{lV}L){\;}in{\;}cephalic{\;}region:{\;}A_I(1A_{IV}V,{\;}1+2A_{I}L,{\;}1A_{I}D),{\;}A_{II}(1A_{II}V,{\;}1+3A_{II}L,{\;}1A_{II}D),{\;}A_{III}(1A_{III}V,{\;}1+1A_{III}L,{\;}1A_{III}D){\;}and{\;}A_{IV}(1A_{IV}V,{\;}2A_{IV}L)$ in antacetabular region: $1M_{I}V{\;}and{\;}2M_{I}L$ in median: $1+1P_{I}L,{\;}1P_{II}L,{\;}1P_{II}D,{\;}1P_{III}L,{\;}1P_{IV}L{\;}and{\;}1P_{IV}D$ in postacetabular region: 2-2-2-2 in caudal region.

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