• Title/Summary/Keyword: Surface Pressures

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한국여승(韓國女僧)의 영양섭취(營養攝取)와 혈청(血淸) Lipoprotein, Cholesterol 및 단백량(蛋白量)의 관계(關係) (Daily Nutritional Intake and Serum Levels of Lipoprotein, Cholesterol and Protein -A Study of Buddhist Nuns-)

  • 김난희;윤진숙;주영은;이원정
    • The Korean Journal of Physiology
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    • 제16권2호
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    • pp.195-207
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    • 1982
  • 장기적(長期的)인 채식섭취(菜食攝取)가 혈청(血淸)의 lipoprotein, cholesterol 및 단백량(蛋白量)에 미치는 영향(影響)을 알아보기 위하여 결은 여승(女僧) 45명(名)($20{\sim}35$세)과 대조군(對照群)으로 여대생(女大生) 29명(名)($20{\sim}22$세)을 연구대상(硏究對象)으로 하였다. 하루 열량섭취(熱量攝取)는 여승(女憎)들이 1,945 kcal 였고 여대생(女大生)은 1,815 kcal 였다. 열량구성비율(熱量構成比率)은 여승(女僧)들이 탄수화물(炭水化物) : 단백질(蛋白質) : 지방(地方)=84 : 11 : 5였고 학생(學生)은 70 : 15 : 15였으며 이는 여승(女僧)들의 탄수화물(炭水化物) 편중(偏重) 및 지방섭취부족(脂肪攝取不足)을 보여준다. 신체계측결과(身體計測結果) 여승(女僧)들은 여대생(女大生)보다 신장(身長)을 제외(除朴)하고, 체중(體重), 지방층(脂肪層)두께, 체표면적(體表面積) 및 비만도계수(肥滿度係數)가 모두 높았다. 수축기(收縮期) 및 이완기혈압(弛緩期血壓)은 여승(女憎)과 여대생(女大生)이 거의 같았다. 혈청(血淸)의 총지방(總脂肪), cholesterol 및 단백량(蛋白量)은 여승(女憎)과 여대생간(女大生間)에 유의(有意)한 차이(差異)가 없었다. 그러나 전기영동(電氣泳動)으로 분획(分劃)하여 혈청(血淸)의 high density lipoprotein(HDL), very low density lipoprotein(VLDL) 및 low density lipoprotein(LDL)량(量)을 비교(比較)해 본 결과(結果), 여승(女憎)들의 HDL은 여대생(女大生)보다 낮았으나 LDL은 유의(有意)하게 높았다. Cholesterol분획결과(分劃結果)도 역시 여승(女憎)들의 HDL-cholesterol값은 여대생(女大生)보다 유의(有意) 하게 낮은 반면(反面) LDL-cholesterol은 유의(有意)하게 높았다. Lipoprotein과 cholesterol간(間)의 상관계수(相關係數)(r)를 계산(計算)한 결과(結果) LDL과 LDL-cholesterol(r=0.40), VLDL과 VLDL-cholesterol(r=0.85), HDL과 HDL-cholesterol(r=0.45), 혈청총지방량(血淸總脂防量)과 cholesterol(r=0.66) 및 혈청(血淸) 총(總) cholesterol과 LDL-cholesterol(r=0.79) 간(間)에는 유의(有意)한 상관관계(相關關係)를 보여주었다. 그러나 혈청(血淸) cholesterol과 음식섭취(飮食攝取) 및 신체계측결과간(身體計測結果間)에는 유의(有意)한 상관관계(相關關係)가 나타나지 않았다. 혈청단백량(血淸蛋白量)은 여승(女憎)과 여대생간(女大生間)에 차이(差異)가 없었다. 이상(以上)의 결과(結果)는 여승(女憎)들의 장기적(長期的)인 채식섭취(菜食攝取)로 인(因)해 인체(人體)의 lipoprotein 및 cholesterol 대사(代謝)에 영향(影響)이 있음을 시사(示唆)해 주고 있다.

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폭발하중을 받는 콘크리트 구조물의 실험적 거동분석 : (II) 초고강도 콘크리트 및 RPC 슬래브의 실험결과 (Behavior Analysis of Concrete Structure under Blast Loading : (II) Blast Loading Response of Ultra High Strength Concrete and Reactive Powder Concrete Slabs)

  • 이나현;김성배;김장호;조윤구
    • 대한토목학회논문집
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    • 제29권5A호
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    • pp.565-575
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    • 2009
  • 최근, 테러 및 전쟁과 관련된 폭발사고가 빈번히 발생하고 있으며, 특히 도심지에서는 이러한 폭발사고로 인해 인명피해 뿐 아니라 주요 시설물에도 큰 손상이 가해져 제2차, 3차의 피해가 발생하게 된다. 폭발사고에 대하여 인명 및 시설물을 안전하게 보호하기 위해서는 기본적으로 구조물에 가해지는 폭발하중 효과에 대한 이해가 필요하다. 폭발하중은 매우 빠른 시간 내에 콘크리트 구조물에 큰 압력으로 작용하는 하중이므로 변형률 속도와 구조물의 국부적인 손상을 고려하여 동적응답을 평가해야 한다. 일반적으로, 콘크리트는 다른 건설재료에 비해 상대적으로 높은 폭발저항성을 가진 재료이지만, 일반강도 콘크리트는 충격 및 폭발하중에 대하여 충분한 저항성능을 가지지 않는다. 그러므로 방호설계에서는 고에너지 흡수력과 높은 파괴저항성을 지니는 새로운 재료의 개발이 필요하다. 본 논문에서는 최근 활발하게 연구 중인 초고강도 콘크리트(UHSC)와 Reactive Powder Concrete(RPC)에 대한 방폭성능을 평가하고자 한다. UHSC와 RPC는 강도 및 성능향상, 부재의 치수 및 중량 감소, 내진저항성 향상과 같은 장점들로 인해 초고층건물 및 초장대교량에서 사용되어지고 있다. 또한 UHSC와 RPC는 9.11테러와 같은 테러 및 충격하중에 의한 사회주요시설물의 방호설계에 적용할 수 있다. 그러므로 본 연구에서는 폭발하중에 대한 UHSC 및 RPC 구조물의 거동을 파악하기 위하여 $1.0m{\times}1.0m{\times}150mm$의 슬래브 구조물 시편을 제작하여 폭발실험을 수행하였으며, 폭발파의 특성 뿐만 아니라 최대 및 잔류 변위와 철근과 콘크리트 표면에서 변형률을 측정하여 구조물의 거동을 분석하였다. 또한 손상 및 파괴모드를 각 시편별로 측정하였다. 본 실험을 통해 UHSC 및 RPC가 일반강도콘크리트에 비해 폭발저항성이 높은 것으로 분석되었다.

임플랜트 식립부위 형성시 골조직의 온도변화에 관한 연구 (A STUDY ON THE TEMPERATURE CHANGES OF BONE TISSUES DURING IMPLANT SITE PREPARATION)

  • 김평일;김영수;장경수;김창회
    • 대한치과보철학회지
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    • 제40권1호
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    • pp.1-17
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    • 2002
  • The purpose of this study is to examine the possibility of thermal injury to bone tissues during an implant site preparation under the same condition as a typical clinical practice of $Br{\aa}nemark$ implant system. All the burs for $Br{\aa}nemark$ implant system were studied except the round bur The experiments involved 880 drilling cases : 50 cases for each of the 5 steps of NP, 5 steps of RP, and 7 steps of WP, all including srew tap, and 30 cases of 2mm twist drill. For precision drilling, a precision handpiece restraining system was developed (Eungyong Machinery Co., Korea). The system kept the drill parallel to the drilling path and allowed horizontal adjustment of the drill with as little as $1{\mu}m$ increment. The thermocouple insertion hole. that is 0.9mm in diameter and 8mm in depth, was prepared 0.2mm away from the tapping bur the last drilling step. The temperatures due to countersink, pilot drill, and other drills were measured at the surface of the bone, at the depths of 4mm and 8mm respectively. Countersink drilling temperature was measured by attaching the tip of a thermocouple at the rim of the countersink. To assure temperature measurement at the desired depths, 'bent-thermocouples' with their tips of 4 and 8mm bent at $120^{\circ}$ were used. The profiles of temperature variation were recorded continuously at one second interval using a thermometer with memory function (Fluke Co. U.S.A.) and 0.7mm thermocouples (Omega Co., U.S.A.). To simulate typical clinical conditions, 35mm square samples of bovine scapular bone were utilized. The samples were approximately 20mm thick with the cortical thickness on the drilling side ranging from 1 to 2mm. A sample was placed in a container of saline solution so that its lower half is submerged into the solution and the upper half exposed to the room air, which averaged $24.9^{\circ}C$. The temperature of the saline solution was maintained at $36.5^{\circ}C$ using an electric heater (J. O Tech Co., Korea). This experimental condition was similar to that of a patient s opened mouth. The study revealed that a 2mm twist drill required greatest attention. As a guide drill, a twist drill is required to bore through a 'virgin bone,' rather than merely enlarging an already drilled hole as is the case with other drills. This typically generates greater amount of heat. Furthermore, one tends to apply a greater pressure to overcome drilling difficulty, thus producing even greater amount heat. 150 experiments were conducted for 2mm twist drill. For 140 cases, drill pressure of 750g was sufficient, and 10 cases required additional 500 or 100g of drilling pressure. In case of the former. 3 of the 140 cases produced the temperature greater than $47^{\circ}C$, the threshold temperature of degeneration of bone tissue (1983. Eriksson et al.) which is also the reference temperature in this study. In each of the 10 cases requiring extra pressure, the temperature exceeded the reference temperature. More significantly, a surge of heat was observed in each of these cases This observations led to addtional 20 drilling experiments on dense bones. For 10 of these cases, the pressure of 1,250g was applied. For the other 10, 1.750g were applied. In each of these cases, it was also observed that the temperature rose abruptly far above the thresh old temperature of $47^{\circ}C$, sometimes even to 70 or $80^{\circ}C$. It was also observed that the increased drilling pressure influenced the shortening of drilling time more than the rise of drilling temperature. This suggests the desirability of clinically reconsidering application of extra pressures to prevent possible injury to bone tissues. An analysis of these two extra pressure groups of 1,250g and 1,750g revealed that the t-statistics for reduced amount of drilling time due to extra pressure and increased peak temperature due to the same were 10.80 and 2.08 respectively suggesting that drilling time was more influenced than temperature. All the subsequent drillings after the drilling with a 2mm twist drill did not produce excessive heat, i.e. the heat generation is at the same or below the body temperature level. Some of screw tap, pilot, and countersink showed negative correlation coefficients between the generated heat and the drilling time. indicating the more the drilling time, the lower the temperature. The study also revealed that the drilling time was increased as a function of frequency of the use of the drill. Under the drilling pressure of 750g, it was revealed that the drilling time for an old twist drill that has already drilled 40 times was 4.5 times longer than a new drill The measurement was taken for the first 10 drillings of a new drill and 10 drillings of an old drill that has already been used for 40 drillings. 'Test Statistics' of small samples t-test was 3.49, confirming that the used twist drills require longer drilling time than new ones. On the other hand, it was revealed that there was no significant difference in drilling temperature between the new drill and the old twist drill. Finally, the following conclusions were reached from this study : 1 Used drilling bur causes almost no change in drilling temperature but increase in drilling time through 50 drillings under the manufacturer-recommended cooling conditions and the drilling pressure of 750g. 2. The heat that is generated through drilling mattered only in the case of 2mm twist drills, the first drill to be used in bone drilling process for all the other drills there is no significant problem. 3. If the drilling pressure is increased when a 2mm twist drill reaches a dense bone, the temperature rises abruptly even under the manufacturer-recommended cooling conditions. 4. Drilling heat was the highest at the final moment of the drilling process.