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박명호 대구보건대학 1995 대구보건대학 論文集 Vol.15 No.-
Again, a distal extension removable partial denture rotates when forces are applied. Since it can be assumed that this rotation must create predominantly off-vertical forces, location of stabilizing and retentive components in relation to the horizontal axis of rotation of the abutment becomes extremely important. In other words, an abutment tooth will better tolerate off-verrtical forces if these forces accrue as near as possible to the horizontal axis of rotation of the abutment. The axial surface contours of abutment teeth must usually be altered to locate components of direct retainer assemblies more favorably in relation to the abutment's horizontal axis.
박명호 대구보건대학 1994 대구보건대학 論文集 Vol.14 No.-
1. In the brushig time of Knowledge of teeth care, after meal showed 88.4% and the three times of brushing frequency Showed the high dental Knowledge as 70.2% (p<0.01) 2. In the Knowledge on the care of dental Proshetic stuff, there isn't any significant difference 3. In the cognitive degree on the dental caries, 'the dental caries occure as not to brush teeth' appeared to 52.1% and the ingestion of sweet food which is a reason of causing a dental caries appeared unexpectedly to 31.6%. So, it was considered to be a result of realized an importance of brushing.
朴明浩 서울大學校經濟硏究所 1994 經濟論集 Vol.33 No.2
經路(traverse)模型이란 주어진 기술조건하에서 均衡成長軌跡(equilibrium growth path)에 있는 생산체계가 새로운 기술진보와 같은 외부적 충격이 발생하였을 때 새로운 균형성창궤적에 도달하는 과정을 분석하는 것이다. 경로모형은 크게 단일시기의 부문모형을 토대로 하는 왈라스경로와 생산과정의 時祭모형을 기초로 하는 오스트리안경로로 구분된다. 본 논문에서는 왈라스 경로분석을 토대로 경제에 외생적 충격이 가해질 때 새로운 균형성장경로에 도달하기 위한 조건을 살펴보고, 바두리(Bhaduri)에 의해 제기된 왈라스 경로모형에서의 가격조정과 수량조정의 對稱構造(duality)를 검토하기로 한다. 이를 통해 왈라스 모형에서의 가격조정과 수량조정의 時差問題(lag)를 일관성있게 다룬다면 對稱構造가 성립하지 않는다는 것을 보이고자 한다. 그리고 왈라스 경로모형에서의 시간의 의미를 규명하고자 한다.
소에서 Detomidine 투여에 의한 진정효과 및 혈액성분의 변화
박명호,남치주,권오경,Park Myeung-Ro,Nam Tchi-Chou,Kweon Oh-Kyeong 한국임상수의학회 1989 한국임상수의학회지 Vol.6 No.1
In order to investigate sedative action of detomidine and its effect on physical signs, hematological and blood chemical components, 15 Holstein cattle were used. The dosage of detomidine was 25 ${\mu}$g/kg and 50 ${\mu}$g/kg. Blood was collected before injection, 30, 60 and 120 min. after injection. Induction time of sedation in a cattle given with 25 ${\mu}$g/kg and 50 ${\mu}$g/kg of detomidine was 10.6${\pm}$2.8. 7.6${\pm}$1.0min. respectively and maintenance time was 70.4${\pm}$8.3, 86.5${\pm}$9.9, respectively. After injection of detomidine, body temperature was slightly increased, heart rate and respiratory rate were slightly decreased. The levels of red blood cell, hemoglobin, packed cell volume and white blood cell were not changed by detomidine. Blood glucose level following detomidine was markedly increased but total protein, serum glutamic oxaloacetic transminase, alkaline phosphatase, lactic dehydrogenase, blood urea nitrogen and creatinine were not changed. This results indicated that detomidine was useful sedative in bovine practice.