• 제목/요약/키워드: NEm

검색결과 105건 처리시간 0.021초

곤충병원선충과 곰팡이를 이용한 농가화장실 파리의 미생물적 방제 (Microbial Control of Fly Maggots with Entomopathogenic Nematodes and Fungus in Outhouses of Farmhouses)

  • 추호렬;김형환;이동운;박영도
    • 한국응용곤충학회지
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    • 제35권1호
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    • pp.80-84
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    • 1996
  • 곤충병원성선충과 곰팡이를 이용한 파리의 생물적 방제 가능성을 검토한결과, 여과지상에서의 큰집파리에 대한 고충병원성선충의 병원력은 동래에서 분리한 Steinernema glaseri strain이 $96.7\pm$2.8%의 치사유을 보여 가장 효과가 좋았으며, 다음이 S. carpocapsae로서 $90.0\pm$0.0%였고 함양에서 분리한 Heterorhabditis bacteriophora strain은 $86.7\pm$2.7%, 포천에서 분리한 S. carpocapsae strain은 $70.0\pm$9.4%였다. 농가 화장실에 곤충병원성선충 260,000마리씩을 처리한 경우, H. bacteriophora 함양 strain이 100%, S. glaseri 동래 strain이 $76.9\pm$3.9%, S. carpocapsae 포천 strain이 $58.5\pm$6.1%의 파리유충을 치사시켰다. 곤충병원성곰팡이 Beauveria brongniartii 7.0$\times${TEX}$10^{9}${/TEX} cfu를 단독처리한 농가 화장실에서는 집파리유충의 치사율이 $73.6\pm$0.1%였으나, S. carpocapsae포천 strain이 130,000마리와 곰팡이 혼합처리에서는 77.8$\pm$3.9%, H. bacteriophora 함양 strain 130,000마리와 곰팡이 혼합처리에서는 $77.7\pm$5.1%의 치사율을 보여, 파리방제의 곤충병원성선충과 곰팡이의 이용가능성이 있었다.

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생물살충제를 위한 곤충병원선충 및 공생박테리아의 in vitro 배양 (In Vitro Culture of Entomopathogenic Nematode with Its Symbiont for Biopesticide)

  • 유연수;박선호
    • KSBB Journal
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    • 제14권3호
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    • pp.303-308
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    • 1999
  • 본 연구에서는 환경친화적인 무공해생물농약 재발을 위하여 곤충병원성 선충의 in vitro 배양방법을 개별하였다. 곤충병원선 층연 Steinernem$\alpha$ glasen 종으로부터 공생박테리아를 분리하여 동정한 결과 Xenorhabdus nem$\alpha$tophllus 종임을 확인하였으며, X enorhabdus nematophilus는 감염단계 선충의 장내에서와 in vitro 배양 동안에 그 생화학적 특성이에서 차이를 보이는 동 질형화 헨상을 나타냄을 확인하였다. 균주의 최적바지 조성은 5% yeast extract, 0.5% NaCl, $K_2HPO_4$, $0.02% MgSO_4$.$7H_2O$이였으며, $28^{\circ}C$가 최적배양 온도였다, 초기 pH 6-7에 관계 없이 성장이 진행됨에 따라서 약 90까지 층가하였다. Flask 배양에 비해서 fennentortor양에서 균주의 성장속도가 1.4배 빠르게 나타났으나, 그에 따른 상변회도 빠르게 진행되었다. 한편 Steinem$\xi$ma glaseri익 in vitro 배양을 위 힌 인공배지원으로 chIcken offal, dog food, peanut 퉁이 사용될 수 있으며 최적의 배지는 농축펀 bovine liver로 조사되었으며, 그 농도논 80%일 때 가장 높은 증식을 보였다. 또한 곤충병원선충으로부터 분리된 공생박테리아를 이용한 혼합배양방법은 공생박테리아를 사용­하지 않는 경우보다 선충의 in vitro 증식속도가 2 배 가량 빨랐으며, 15일만에 약 $5.5\times10^4$/mL 의 선충이 수확되였다.

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흰쥐 해마에서 Norepinephrine 유리에 미치는 $N^6-cyclopentyladenosine$ 및 Forskolin의 영향 (Interaction of Forskolin with the Effect of $N^6-cyclopentyladenosine$ on Norepinephrine Release in Rat Hippocampus)

  • 최봉규;김도경;손용;양의종
    • The Korean Journal of Physiology and Pharmacology
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    • 제1권3호
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    • pp.225-231
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    • 1997
  • As it has been reported that the depolarization-induced norepinephrine (NE) release is modulated by activation of presynaptic $A_1-adenosine$ heteroreceptor and various lines of evidence indicate the involvement of adenylate cyclase system in $A_1-adenosine$ post-receptor mechanism in hippocampus, it was attempted to delineate the role of adenylate cyclase system in the $A_1-receptor-mediated$ control of NE release in this study. Slices from rat hippocampus were equilibrated with $[^3H]-NE$ and the release of the labelled products was evoked by electrical stimulation.(3 Hz, $5Vcm^{-1}$, 2 ms, rectangular pulses). The influence of various agents on the evoked tritium-outflow was investigated. $N^6-Cyclopentyladenosine$ (CPA), a specific $A_1-adenosine$ receptor agonist, in concentrations Tanging from 0.1 to $10{\mu}M$ decreased the $[^3H]-NE$ release in a dose-dependent mauler without any change of basal rate of release. 8-Cyclopentyl-1,3-dipropylxanthine (DPCPX, $2{\mu}M$), a selective $A_1-receptor$ antagonist, inhibited the CPA effect. The responses to N-ethylmaleimide $(3&10{\mu}M)$, a SH-alkylating agent of G-protein, were characterized by increments of the evoked NE-release and the CPA effects were completely abolished by NEM pretreatment. Forskolin, a specific adenylate cyclase activator, in concentrations ranging from 0.1 to $30{\mu}M$ increased the evoked and basal rate of NE release in a dose-dependent manner and the CPA effects were inhibited by forskolin pretreatment. Rolipram $(1&10{\mu}M)$, a phosphodiesterase inhibitor, did not affect the evoked NE release but reduced the CPA effect. And 8-bromo-cAMP $(100&300{\mu}M)$, a membrane permeable cAMP analogue inhibited the CPA effect significantly. These results suggest that the $A_1-adenosine$ heteroreceptor plays an important role in NE-release via nucleotide-binding protein $G_i$ in the rat hippocampus and that the adenylate cyclase system might be participated in this process.

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흰쥐의 뇌의$A_1$ 아데노신 수용체에 작용하는 역효현제에 관한 연구 (Inverse Agonists at $A_1$ Adenosine Receptors in Rat Cerebral Cortex)

  • 박경선;양완숙;김경환
    • 대한약리학회지
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    • 제32권1호
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    • pp.23-29
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    • 1996
  • 전통적인 수용체 이론에 따르면 상경적 길항제는 효현제와 수용체의 같은 부위에 작용하지만, 효능(efficacy)이 없기 때문에 생물학적 반응을 일으키지는 않는다. 그러나 최근에 발표되는 자료들에 따르면 모든 길항체의 효능(efficacy)이 0가 아니라 음수도 될 수가 있다고 생각된다. 이러한 음수의 효능을 갖는 약물을 역효현제라 부른다. 본 연구에서는 쥐의 cerebral cortex에서 얻은 membranes을 사용하여, $A_1$ 아데노신 수용체에 작용하는 역효현제를 인구하였다. 8개의 길항제로 알려진 약물들이 G단백에 대한 $[^{35}S]GTP_{\gamma}S$ 결합을 감소시키는 정도를 측정함으로써 역효현제의 특성을 검색하였다. 효현제에 의한 $[^{35}S]GTP_{\gamma}S$ 결합의 증가는 이틀 길항제틀에 의해 완전히 억제되었지만, 검색한 8개의 길항제는 두 군으로 구분되었다. DPCPX를 포함한 7개 길항제는 효현제 부재시의 basal $[^{35}S]GTP_{\gamma}S$ binding을 통계적으로 의의있게 감소시켜 역효현제의 특성을 나타내는 반면, CCS-15943은 basal $[^{35}S]GTP_{\gamma}S$ binding에 아무런 영향을 주지 않았다. NEM을 membranes에 처치하면 PIA에 의한 $[^{35}S]GTP_{\gamma}S$ binding이나 basal binding 둘다 감소하는데 이는 $[^{35}S]GTP_{\gamma}S$ binding의 상당부분이 G단백의 activated state를 나타내는 것을 알 수 있다. 또한 $[^3H]DPCPX$를 이용한 competitive binding assay에서 0.1 mM GTP는 효현제인 PIA의 apparent affinity를 감소시켰으며, DPCPX의 apparent affinity는 증가시키고, CGS-15943에는 아무런 영향을 미치지 않았다. 이것은 상기의 $[^{35}S]GTP_{\gamma}S$ binding의 결과를 뒤받침해 주는 결과라고 생각된다.

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Memory Organization for a Fuzzy Controller.

  • Jee, K.D.S.;Poluzzi, R.;Russo, B.
    • 한국지능시스템학회:학술대회논문집
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    • 한국퍼지및지능시스템학회 1993년도 Fifth International Fuzzy Systems Association World Congress 93
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    • pp.1041-1043
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    • 1993
  • Fuzzy logic based Control Theory has gained much interest in the industrial world, thanks to its ability to formalize and solve in a very natural way many problems that are very difficult to quantify at an analytical level. This paper shows a solution for treating membership function inside hardware circuits. The proposed hardware structure optimizes the memoried size by using particular form of the vectorial representation. The process of memorizing fuzzy sets, i.e. their membership function, has always been one of the more problematic issues for the hardware implementation, due to the quite large memory space that is needed. To simplify such an implementation, it is commonly [1,2,8,9,10,11] used to limit the membership functions either to those having triangular or trapezoidal shape, or pre-definite shape. These kinds of functions are able to cover a large spectrum of applications with a limited usage of memory, since they can be memorized by specifying very few parameters ( ight, base, critical points, etc.). This however results in a loss of computational power due to computation on the medium points. A solution to this problem is obtained by discretizing the universe of discourse U, i.e. by fixing a finite number of points and memorizing the value of the membership functions on such points [3,10,14,15]. Such a solution provides a satisfying computational speed, a very high precision of definitions and gives the users the opportunity to choose membership functions of any shape. However, a significant memory waste can as well be registered. It is indeed possible that for each of the given fuzzy sets many elements of the universe of discourse have a membership value equal to zero. It has also been noticed that almost in all cases common points among fuzzy sets, i.e. points with non null membership values are very few. More specifically, in many applications, for each element u of U, there exists at most three fuzzy sets for which the membership value is ot null [3,5,6,7,12,13]. Our proposal is based on such hypotheses. Moreover, we use a technique that even though it does not restrict the shapes of membership functions, it reduces strongly the computational time for the membership values and optimizes the function memorization. In figure 1 it is represented a term set whose characteristics are common for fuzzy controllers and to which we will refer in the following. The above term set has a universe of discourse with 128 elements (so to have a good resolution), 8 fuzzy sets that describe the term set, 32 levels of discretization for the membership values. Clearly, the number of bits necessary for the given specifications are 5 for 32 truth levels, 3 for 8 membership functions and 7 for 128 levels of resolution. The memory depth is given by the dimension of the universe of the discourse (128 in our case) and it will be represented by the memory rows. The length of a world of memory is defined by: Length = nem (dm(m)+dm(fm) Where: fm is the maximum number of non null values in every element of the universe of the discourse, dm(m) is the dimension of the values of the membership function m, dm(fm) is the dimension of the word to represent the index of the highest membership function. In our case then Length=24. The memory dimension is therefore 128*24 bits. If we had chosen to memorize all values of the membership functions we would have needed to memorize on each memory row the membership value of each element. Fuzzy sets word dimension is 8*5 bits. Therefore, the dimension of the memory would have been 128*40 bits. Coherently with our hypothesis, in fig. 1 each element of universe of the discourse has a non null membership value on at most three fuzzy sets. Focusing on the elements 32,64,96 of the universe of discourse, they will be memorized as follows: The computation of the rule weights is done by comparing those bits that represent the index of the membership function, with the word of the program memor . The output bus of the Program Memory (μCOD), is given as input a comparator (Combinatory Net). If the index is equal to the bus value then one of the non null weight derives from the rule and it is produced as output, otherwise the output is zero (fig. 2). It is clear, that the memory dimension of the antecedent is in this way reduced since only non null values are memorized. Moreover, the time performance of the system is equivalent to the performance of a system using vectorial memorization of all weights. The dimensioning of the word is influenced by some parameters of the input variable. The most important parameter is the maximum number membership functions (nfm) having a non null value in each element of the universe of discourse. From our study in the field of fuzzy system, we see that typically nfm 3 and there are at most 16 membership function. At any rate, such a value can be increased up to the physical dimensional limit of the antecedent memory. A less important role n the optimization process of the word dimension is played by the number of membership functions defined for each linguistic term. The table below shows the request word dimension as a function of such parameters and compares our proposed method with the method of vectorial memorization[10]. Summing up, the characteristics of our method are: Users are not restricted to membership functions with specific shapes. The number of the fuzzy sets and the resolution of the vertical axis have a very small influence in increasing memory space. Weight computations are done by combinatorial network and therefore the time performance of the system is equivalent to the one of the vectorial method. The number of non null membership values on any element of the universe of discourse is limited. Such a constraint is usually non very restrictive since many controllers obtain a good precision with only three non null weights. The method here briefly described has been adopted by our group in the design of an optimized version of the coprocessor described in [10].

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