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불균형 자세 예방용 IMU 내장 넥밴드를 이용한 앉은 자세 분류
마상용(S. Y. Ma),심현민(H. M. Shim),이상민(S. M. Lee) 한국재활복지공학회 2015 재활복지공학회논문지 Vol.9 No.4
본 논문에서는 IMU(inertial measurement unit)의 데이터를 이용하여 사람의 앉은 자세를 분류하는 알고리즘을 제안한다. 제안하는 알고리즘은 IMU의 데이터를 주성분 분석법(principle component analysis: PCA)을 이용하여 특징 벡터를 3개로 축소시켰고, RBF(radial basis function) 커널을 적용한 서포트 벡터 머신(support vector machine: SVM)을 이용하여 자세를 분류하였다. 데이터의 측정을 위하여 건강한 성인 3명을 대상으로 실험을 실시하였고, 데이터의 수집을 위하여 넥밴드 형태의 이어폰에 IMU를 내장한 장치를 개발하여 착용하였다. 피험자는 각각 neutral position, smartphoning, writing의 세 가지 앉은 자세에 대하여 실험을 진행하였다. 실험 결과 제안하는 PCA-SVM 알고리즘은 특징 벡터의 차원을 25%로 축소시키면서도 95%의 신뢰를 보였다. In this paper, we propose a classification algorithm for postures of sitting person by using IMU(inertial measurement unit). This algorithm uses PCA(principle component analysis) for decreasing the number of feature vectors to three and SVM(support vector machine) with RBF(radial basis function) kernel for classifying posture types. In order to collect the data, we designed neckband-shaped earphones with IMU, and applied it to three subjects who are healthy adults. Subjects were experimented three sitting postures, which are neutral posture, smartphoning, and writing. As the result, our PCA-SVM algorithm showed 95% confidence while the dimension of the feature vectors was reduced to 25%.
Fenoxaprop-P-ethyl의 제초활성에 대한 Bentazon의 길항작용기구
마상용,김승우,전재철,Ma, S.Y.,Kim, S.W.,Chun, J.C. 한국잡초학회 1998 Weed&Turfgrass Science Vol.18 No.2
Fenoxaprop-P-ethyl에 대한 bentazon의 길항작용기작을 검정하기 위하여 4엽기의 벼와 피를 대상으로 bentazon 혼합처리에서 나타나는 fenoxaprop-P-ethyl의 흡수, 이행, 대사 및 작용점의 활성 변화를 조사하였다. Fenoxaprop-P-ethyl에 대하여 벼와 피의 지상부에서 생육억제가 크게 나타났다. Fenoxaprop-P-ethyl 단독처리에 있어서 두 초종 모두에서 처리 직후부터 빠른 속도로 약제가 흡수되어, 총 흡수량의 90%이상이 약제처리 6시간 이내에 이루어졌으며, 처리 24시간까지 흡수량의 약 30%가 처리엽의 상, 하위조직으로 이행되었다. Ethyl ester형으로 처리된 약제는 신속히 acid형으로 전환되었으며, 처리 24시간 후부터는 acid형이 conjugate형의 대사물로 전환되었다. 그러나 bentazon에 의한 fenoxaprop-P-ethyl의 흡수, 이행 및 대사활성의 변화는 인정되지 않았다. In vitro ACCase의 활성은 벼와 피 에서 각각 26.5 및 23.2nmol/min/mg protein으로 나타났다. 이 효소 활성의 50% 저해농도에 있어서 fenoxaprop-P-ethyl 단독처리와 bentazon 혼합처리 사이에 유의성은 인정되지 않았다. 그러나 bentazon 처리에 의하여 in vivo ACCase 활성의 감소와 엽록체 thylakoid에서 전자전달의 억제가 나타났다. 따라서 fenoxaprop-P-ethyl에 대한 bentazon의 길항작용기작은 bentazon이 fenoxaprop-P-ethyl 작용점의 활성에 직접적으로 관여하는 것이 아니라, 엽록체 구조 및 활성 저해에 의한 fenoxaprop-P-ethyl의 작용점 감소를 통하여 간접적으로 fenoxaprop-P-ethyl의 활성을 억제하는 것으로 판단된다. Antagonistic mode of action of fenoxaprop-P-ethyl [ethyl(R)2-4-{(6-chloro-2-benzoxazolyloxy) phenoxy}propionate] with bentazon was investigated with respect to absorption, translocation, metabolism, and change in target site response of fenoxaprop-P-ethyl using four-leaf stage of rice(Oryza sativa L.) and barnyardgrass [Echinochloa eras-galli (L.) P. Beauv.]. Shoots of rice and barnyardgrass was more sensitive to fenoxaprop-P-ethyl than the roots. More than 90% of fenoxaprop-P-ethyl was absorbed within 6 hours after treatment and 30% of the absorbed was acropetally and basipetally translocated at 24 hours after treatment. Fenoxaprop-P-ethyl was rapidly transformed to its acid form, fenoxaprop(2-[4-(6-chloro-2-benzoxazolyloxy)phenoxy]propionic acid), which was subsequently metabolized to polar conjugates. However, changes in absorption, translocation, and metabolism of fenoxaprop-P-ethyl by bentazon treatment were not found in both species. Background activity of acetyl-CoA carboxylase(ACCase) in rice and barnyardgrass was 26.5 and 23.2nmol/min/mg, respectively. Concentration required to inhibit fifty percent enzyme activity$(I_{50})$ in vitro was 6.5~7.4${\mu}M$ of fenoxaprop-P-ethyl and more than 500${\mu}M$ of bentazon. There were no significant differences in $I_{50}$ value between two treatments of fenoxaprop-P-ethyl alone and its bentazon mixture. However, bentazon reduced ACCase activity in vivo and inhibited electron transport in chloroplast thylakoid. Based on the results obtained, it is concluded that the antagonistic effect of bentazon occurs due not to direct effect on target site of fenoxaprop-P-ethyl, but to indirect involvement in reducing herbicidal activity of fenoxaprop-P-ethyl through physiological disturbances caused by bentazone at whole chloroplast level.
신제초제 Azimsulfuron 의 제초활성과 토양중 행동
전재철,마상용 ( J . C . Chun,S . Y . Ma ) 한국환경농학회 1996 한국환경농학회지 Vol.15 No.4
Azimsulfuron [1H-pyrazole-5-sulfonamide,N-(((4,6-dimethoxy-pyridine-2-yl-aminocarbonyl-4-(2-methyl-2H-tetrazole-5-yl)] is a new sulfonamide herbicide that selectively controls a wide range of weeds in lowland rice (Oryza sativa). It effectively controlled Cyperus serotinus, Eleocharis kuroguwai, Sagittaria pygmaea, S. trifolia, and Scirpus juncoides at 7.5 - 30 g ai/㏊. In the tolerance test on grasses carried out in a nutrient solution containing 0.3 - 30 ppm of azimsulfuron, greater inhibition occurred in roots of both rice and barnyardgrass (Echinochloa crus galli) than in shoots. However, rice root was approximately 5-fold more tolerant than that of barnyardgrass. The downward movements as determined by 50% growth inhibition of S. juncoides were 4-㎝ in clay loam and 6.5-㎝ in sandy loam soil with 3-㎝/day leaching for 3 days. When incubated at 20 and 30℃, the residual effect in clay loam soil lasted for 30 and 21 days, respectively. In a soil column applied at 15 g ai/㏊ of azimsulfuron followed by 3-㎝/day leaching for 3 days, dry weights of S. trifolia emerging at 5, 10, and 15-㎝ depth were reduced to 87, 85, and 79% of the corresponding untreated control, respectively. Susceptibility of S. trifolia to azimsulfuron did not greatly vary with the emergence depth.