• 제목/요약/키워드: $Co-Al_{2}O_{3}$

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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.

제주도(濟州道) 화산회토양(火山灰土壌)의 이화학적(理化学的) 특성(特性) 및 유기물(有機物) 성상(性状)에 관(関)한 연구(硏究) (Studies on the Physico-chemical Properties and Characterization of Soil Organic Matter in Jeju Volcanic Ash Soil)

  • 이상규;차규석;김인탁
    • 한국토양비료학회지
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    • 제16권1호
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    • pp.20-27
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    • 1983
  • 제주도(濟州道) 화산회토양유기물(火山灰土壌有機物)의 화학성(化学性), 유기물(有機物) 성상(性狀) 및 부식산(腐植酸)의 광학적(光学的) 특성(特性)을 알고져 수종(数種)의 화산회토양(火山灰土壌)을 공시(供試)하여 실내시험(室內試験)한 결과(結果)를 요약(要約)하면 다음과 같다. 가. 토양(土壌)의 화학적(化学的) 성질(性質) 1) 화산회토양(火山灰土壌)은 비화산회토양(非火山灰土壌)에 비(比)하여 유기물(有機物)(4~27%), 유효규산(有効珪酸)(291~884ppm), 활성(活性) 알루미늄(150~478ppm) 및 활성철함량(活性鉄含量)(0.77~0.86%)이 많고 반대(反対)로 유효인산(有効燐酸)(4~15ppm) 함량(含量)이 현저(顕著)히 낮았다. 2) 가리(加里), 석화(石火), 고토등(苦土等)은 밭의 경우 화산회토양(火山灰土壌)에서 높은 편이나 삼림지(森林地) 및 유휴지토양(遊休地土壌)은 낮은 경향(傾向)을 보였다. 3) 화산회토양(火山灰土壌)은 규반비(珪礬比) 및 규산(珪酸)/유기물비(有機物比)가 낮은 반면(反面) K/Ca+Mg, Al/Fe(활성(活性)) 및 C/P비(比)가 현저(顕著)히 높았다. 나. 유기물(有機物) 및 질소분별정량(窒素分別定量) 1) 화산회토양(火山灰土壌)은 유기물(有機物)의 총탄소중(総炭素中) Humin-C의 비율(比率), 유기물중(有機物中) Humin산(酸) 그리고 Humin중(中) C/N율(率)이 비화산회토양(非火山灰土壌)보다 현저(顕著)히 높았다. 2) 화산회토양(火山灰土壌)은 비화산회토양(非火山灰土壌)에 비(比)하여 총질소(総窒素), 산(酸) 및 알카리가용성(可溶性) 질소함량(窒素含量)이 현저(顕著)히 높은 반면(反面) 총질소중(総窒素中) 무기태질소(無機態窒素)로 방출(放出)될 수 있는 무기화율(無機化率)은 높지 않았다. 다. 토양부식(土壌腐植)의 형태(形態) 1) 화산회토양(火山灰土壌)은 비화산회토양(非火山灰土壌)에 비(比)하여 광흡(光吸) 수능(收能)이 높고(K600, RF치(値), ${\delta}logK$) 부식화도(腐植化度)가 진전(進展)될수록 색농도(色濃度)가 짙은 것으로 나타났다. 2) 화산회토양(火山灰土壌)은 산화제(酸化劑)에 대(対)한 저항성(抵抗性)이 높고 산(酸) 및 알카리 가수분해성(加水分解性)이 강(强)하여 부식화도(腐植化度)가 높아 부식(腐植)의 자연분해(自然分解)가 극(極)히 어려운 것으로 나타났다. 라. Humin의 관능기조사(官能基調査) 화산회토양(火山灰土壌)의 유출부식산(油出腐植酸)의 관능기(官能基)는 phenolic-OH기(基), Alcoholic-OH기(基) 및 Carboxyl기(基)가 많고 비화산회토양(非火山灰土壌)은 Methoxyl기(基) 및 Carbonyl기(基)가 많았다. 마. 부식산(腐植酸)의 흡광도(吸光度) 1) 공시토양(供試土壌)의 가시광역(可視光域)은 200~500nm부근의 단파장영역(短波長領域)이었으며 주로 350, 420, 450 및 480nm 에서 4개(個)의 흡광곡선(吸光曲線)을 나타내었다. 2) 화산회토양(火山灰土壌)인 흑악통(黑岳統)은 362nm부근에서 단일(單一)의 높은 흡광도(吸光度)를 보였으며 비화산회토양(非火山灰土壌)인 영악통(永楽統)은 360nm와 390nm에서 2개(個)의 단순(單純)한 높은 흡광대(吸光帶)를 나타내었다. 마. 분해촉진제(分解促進剤) 처리효과(處理効果) 화산회토양(火山灰土壌)에 대(対)한 분해촉진효과(分解促進効果)는 이도통(統)은 역분해성(易分解性) 유기물(有機物) 첨가(添加)에 따른 "Priming Effect"가 증가(增加)되었으며 남원(南元)과 흑악통(黑岳統)은 Na-Pyrophosphate의 첨가효과(添加効果)가 있었다.

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PEO법으로 (Si,Mn)-HA 코팅된 치과 임플란트용 Ti 합금의 생체적합성 및 표면특성 (Biocompatibility and Surface Characteristics of (Si,Mn)-HA Coated Ti-Alloy by Plasma Electrolytic Oxidation)

  • 강정인;손미경;최한철
    • 한국표면공학회:학술대회논문집
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    • 한국표면공학회 2017년도 춘계학술대회 논문집
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    • pp.83-83
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    • 2017
  • 생체재료의 표면은 이식과 동시에 생체계면의 역할을 하게 되어, 일련의 생물학적 반응이 시작되고 진행되는 중요한 장소가 된다. 초기에 생체계면에서 일어나는 단백질 흡착이나 염증반응을 비롯한 생물학적 반응들은 궁극적으로 임플란트의 성패를 좌우할 만큼 중요하다. 골융합을 개선하기 위한 다른 방법으로 생체불활성의 타이타늄 (Ti)과 골조직의 능동적인 반응을 이루기 위해 생체활성 표면을 부여함으로서 계면에서의 골형성 반응을 증진시키는 방법이 이용된다. 생체불활성의 Ti과 Ti합금은 골조직과 직접적인 결합을 이루지 못하므로, 골조직과의 반응을 향상하기 위해 여러 종류의 생체활성 재료를 코팅하는 방법이 연구되어 왔고, 이 중 생체의 변화와 가장 유사한 하이드록시아파타이트 코팅이 가장 대중적인 방법으로 사용되었으며 이는 초기 골형성을 촉진하는 것으로 알려졌다. 치과용 임플란트의 표면형상과 화학조성이 골 융합에 영향을 미치는 가장 중요한 인자이므로 최근의 연구동향은 이들 두 가지 표면특성을 결합함으로서 결과적으로 최적의 골세포반응을 유도하고, 골융합 후 골조직과의 micromechanical interlocking에 의해 임플란트의 안정성에 중요한 역할을 하는 마이크론 단위의 표면조도와 표면 구조를 유지하면서, 부가적으로 골 조직 반응을 능동적으로 개선할 수 있는 생체활성 성분을 부여하여 골 융합에 상승효과를 이루기 위한 표면처리법에 관해 많은 연구가 요구되어지고 있다. 따라서 골을 구하는 원소인 망간과 실리콘으로 치환된 하이드록시아파타이트를 플라즈마 전해 산화법으로 코팅하여 세포와 잘 결합할 수 있는 표면을 제공함으로써 골 융합과 치유기간을 단축시킬 수 있을 것으로 사료된다. 실험방법은 시편은 치과 임플란트 제작 합금인 Ti-6Al-4V ELI disk (grade 5, Timet Co., USA; diameter, 10 mm, thickness, 3 mm)이며, calcium acetate monohydrate, calcium glycerophosphate, manganese(II) acetate tetrahydrate, sodium metasilicate을 설계조건에 따라 혼합 제조된 전해질 용액을 이용하여 플라즈마 전해 산화법으로 표면 코팅을 실시하였다. 각 시편의 플라즈마 전해시 전압은 280V로 인가하였고, 전류밀도는 70mA로 정전류를 공급하여 해당 인가전압 도달 후 3분 동안 정전압 방식을 유지하였다. 코팅된 피막 표면을 주사전자현미경과 X-선 회절분석을 통하여 미세구조 및 결정상을 관찰하였다. 또한 코팅된 표면의 생체활성 평가는 정량적으로 평가하기 위해 동전위시험과 AC 임피던스를 통하여 시행하였다. 분극거동을 확인하기 위해 potentiostat (Model PARSTAT 2273, EG&G, USA)을 이용하여 구강 내 환경과 유사한 $36.5{\pm}1^{\circ}C$의 0.9 wt.% NaCl에서 실시하였다. 전기화학적 부식 거동은 potentiodynamic 방법으로 조사하였고 인가전위는 -1500 mV에서 2000 mV까지 분당 1.67 mV/min 의 주사속도로 인가하여 시험을 수행하였다. 임피던스 측정은 potentiostat (Model PARSTAT 2273, EG&G, USA)을 이용하였으며, 측정에 사용한 주파수 영역은 10mHz ~ 100kHz 까지의 범위로 하여 조사하였고 ZSimWin(Princeton applied Research, USA) 소프트웨어를 사용하여 용액의 저항, 분극 저항 값을 산출하였다. 망간의 함량이 증가할수록 불규칙한 기공을 보였으며, 실리콘은 $TiO_2$ 산화막 형성을 저해하는 경향을 확인할 수 있었다. 단독으로 표면을 처리한 경우보다 두 가지 원소를 이용해 복합 표면처리를 시행한 경우가 내식성이 좋아 임플란트과의 골 유착에 긍정적인 영향을 미칠 것으로 사료된다.

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$[^{11}C]6-OH-BTA-1$ 조제 시 생성되는 부산물 규명과 반응용매에 따른 표지 효율 비교 (Radiosynthesis of $[^{11}C]6-OH-BTA-1$ in Different Media and Confirmation of Reaction By-products.)

  • 이학정;정재민;이윤상;김형우;이은경;이동수;정준기;이명철
    • Nuclear Medicine and Molecular Imaging
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    • 제41권3호
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    • pp.241-246
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    • 2007
  • 목적: 베타아밀66로이드 양전자단층촬영 영상 추적자인 $[^{11}C]OH-BTA-1(1)$는 알쯔하이머병의 진단용으로 개발되었다. 반응용매 루프 방법에 의한 $[^{11}C]1$$[^{11}C]MeOTf$를 통해서 한번의 반응으로 $^{11}C$을 바로 표지 할 수 있다. 또한 반응 중에 $[^{11}C]2$가 생긴다는 것이 보고된바 있다. 하지만, 실험 중에 다른 부산물이 생기는 것이 발견되어 그 물질을 추정하고, 각 반응용매에 따른 $[^{11}C]1$과 부산물의 표지효율 변화에 대한 조사를 했다. 대상 및 방법: 사이클로트론에서 $^{14}N(p,{\alpha})^{11}C$ 핵반응과 미량의 $O_2$로 부터 의하여 생산되는 $[^{11}C]CO_2$를 0.2 M $LiAlH_4/THF$ 0.2 ml로 환원한 다음 HI 1ml과 반응하여 $[^{11}C]CH_3I$를 생산했다. 질소가스를 20 ml/min로 불어 주면서 200C 에서 AgOTf-Graphpac GC column를 통과시켜 $[^{11}C]CH_3OTf$를 생산했다. 각 반응용매 (MEK, CHO, DEK, DMF) 100 1에 녹인 전구물질 1 mg를 고성능 액체 크로마토그래피 시료 루프에 미리 주입하고 $[^{11}C]CH_3OTf$를 상온에서 7분 동안 질소가스를 불어줬다. Semi-preparative HPLC로 분리하였다. 결과: 각 반응용매에서 $[^{11}C]1$에 표지효율은 MEK: $86.0{\pm}5.5%$, CHO: $59.7{\pm}2.4%$, DEK: $29.9{\pm}1.8%$, DMF: $7.6{\pm}0.5%$이었다. MEK에서 얻은 $[^{11}C]1$의 비방사능은 98 ($GBq/{\mu}mol$)이다. 각 물질의 질량 분석은 1: m/z 257.3 (M+1), 2: 257.3 (M+1), 3: 271.3 (M+1)이었다. 각 생성물질의 표지효율은 MEK에서 $86.0{\pm}5.5%:5.0{\pm}3.4%:1.5{\pm}1.3%$ $([^{11}C]1:[^{11}C]2:[^{11}C]3)$, CHO에서 $59.7{\pm}2.4%:4.7{\pm}3.2%:1.3{\pm}0.5%$, DEK에서 $29.9{\pm}1.8%:2.0{\pm}0.7%:0.3{\pm}0.1%$, DMF에서 $7.6{\pm}0.5%:0.0%:0.0%$이다. 결론: $[^{11}C]1$은 4가지 반응용매 중 MEK 반응용매에서 가장 높은 표지효율을 나타냈다. 부산물인 $[^{11}C]3$은 고성능 액체 크로마토그래피의 자외선, 방사능 검출기와 질량 분석법을 통해 물질을 추정할 수 있었다.

옥천대(沃川帶) 우라늄광층(鑛層)의 구조규제(構造規制) 및 지구화학적(地球化學的) 특성연구(特性硏究) (Lithologic and Structural Controls and Geochemistry of Uranium Deposition in the Ogcheon Black-Slate Formation)

  • 이대성;윤석규;이종혁;김정택
    • 자원환경지질
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    • 제19권spc호
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    • pp.19-41
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    • 1986
  • Structural, radioactive, petrological, petrochemical, mineralogical and stable isotopic study as well as the review of previous studies of the uranium-bearing slates in the Ogcheon sequence were carried out to examine the lithological and structural controls, and geochemical environment in the uranium deposition in the sequence. And the study was extended to the coal-bearing formation (Jangseong Series-Permian) to compare the geochemical and sedimentologic aspects of uranium chemistry between Ogcheon and Hambaegsan areas. The results obtained are as follows: 1. The uranium mineralization occurs in the carbonaceous black slates of the middle to lower Guryongsan formation and its equivalents in the Ogcheon sequence. In general, two or three uranium-bearing carbonaceous beds are found with about 1 to 1.5km stratigraphic interval and they extend from Chungju to Jinsan for 90km in distance, with intermittent igneous intrusions and structural Jisturbances. Average thickness of the beds ranges from 20 to 1,500m. 2. These carbonaceous slate beds were folded by a strong $F_1$-fold and were refolded by subsequent $F_1$-fold, nearly co-axial with the $F_1$, resulting in a repeated occurrence of similar slate. The carbonaceous beds were swelled in hing zones and were shrinked or thined out in limb by the these foldings. Minor faulting and brecciation of the carbonaceous beds were followed causing metamorphism of these beds and secondary migration and alteration of uranium minerals and their close associations. 3. Uranium-rich zones with high radioactive anomalies are found in Chungju, Deogpyong-Yongyuri, MiwonBoun, Daejeon-Geumsan areas in the range of 500~3,700 cps (corresponds to 0.017~0.087%U). These zones continue along strike of the beds for several tens to a few hundred meters but also discontinue with swelling and pinches at places that should be analogously developed toward underground in their vertical extentions. The drilling surveyings in those area, more than 120 holes, indicate that the depth-frequency to uranium rich bed ranging 40~160 meter is greater. 4. The features that higher radioactive anomalies occur particularly from the carbonaceous beds among the argillaceous lithologic units, are well demonstrated on the cross sections of the lithology and radioactive values of the major uranium deposits in the Ogcheon zone. However, one anomalous radioactive zone is found in a l:ornfels bed in Samgoe, near Daejeon city. This is interpreted as a thermal metamorphic effect by which original uranium contents in the underlying black slate were migrated into the hornfels bed. 5. Principal minerals of the uranium-bearing black slates are quartz, sericite, biotite and chlorite, and as to chemical composition of the black slates, $Al_2O_3$ contents appear to be much lower than the average values by its clarke suggesting that the Changri basin has rather proximal to its source area. 6. The uranium-bearing carbonaceous beds contain minor amounts of phosphorite minerals, pyrite, pyrrhotite and other sulfides but not contain iron oxides. Vanadium. Molybdenum, Barium, Nickel, Zirconium, Lead, Cromium and fixed Carbon, and some other heavy metals appear to be positive by correlative with uranium in their concentrations, suggesting a possibility of their genetic relationships. The estimated pH and Eh of the slate suggests an euxenic marine to organic-rich saline water environment during uranium was deposited in the middle part of Ogcheon zone. 7. The Carboniferous shale of Jangseong Series(Sadong Series) of Permian in Hambaegsan area having low radioactivity and in fluvial to beach deposits is entirely different in geochemical property and depositional environment from the middle part of Ogcheon zone, so-called "Pibanryong-Type Ogcheon Zone". 8. Synthesizing various data obtained by several aspects of research on uranium mineralization in the studied sequence, it is concluded that the processes of uranium deposition were incorporated with rich organic precipitation by which soluble uranyl ions, $U{_2}^{+{+}}$ were organochemically complexed and carried down to the pre-Ogcheon sea bottoms formed in transitional environment, from Red Sea type basin to Black Sea type basin. Decomposition of the organic matter under reducing conditions to hydrogen sulfide, which reduced the $UO{_2}^{+2}$ ions to the insoluble uranium dioxide($UO_2$), on the other side the heavy metals are precipitated as sulfides. 9. The EPMA study on the identification of uraninite and others and the genetic interpretation of uranium bearing slates by isotopic values of this work are given separately by Yun, S. in 1984.

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