• 제목/요약/키워드: Apatite

검색결과 281건 처리시간 0.044초

결정화 소결에 의한 생체활성재료의 제조 (Preparation of bioactive materials by crystallization sintering)

  • 명중재;이안배;정용선;신건철;김호건
    • 한국결정성장학회지
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    • 제8권1호
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    • pp.169-178
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    • 1998
  • CaO-$SiO_2-P_2O_5$ 3성분계 유리화 영역(glass forning region)내의 여러조성(A:$SiO_2$- rich조성, B:CaO-rich조성, C:$P_2O_5$-rich조성, D, E:A, B, C의 중간조성)을 가지는 유리분말을 결정화시켰을 때 유리중에 석출되는 결정상(crystal phase)을 분말 XRD로 확인하였다. 여러조성중 apatite(($Ca_{10}(PO_4)_6O$)와 $\beta$-wollastonite($CaSiO_3$)결정이 석출되고, 굽힘강도가 우수한 E조성(CaO 49.4, $SiO_2\;36.8,\;P_2O_5$8.8wt%)을 선택하여 이 조성의 유리분말을 일방향으로 결정화 소결하였다. 제조된 결정화 소결체에 대하여 charaterization을 하고 굽힘강도를 측정하였다. 또한 결정화 소결체와 생체뼈와의 결합성을 조사하기 위하여 유사체액(simulated body fluid)내에서 침적실험을 하였으며, 결정화 소결체의 표면을 thin-film XRD, FT-IR로 분석하였다. 실험결과, apatite와 wollastonite 결정이 석출된 치밀한 결정화 소결체가 얻어졌으며, 이들 결정은 wollastonite 결정의 (202)면이 인상방향에 수직으로 성장하는 경향을 보였다. 또한 제조된 결정화 소결체는 평균 186.9MPa의 굽힘강도를 나타내어 일반적 방법으로 제조되는 결정화 소결체보다 높은 역학적 성질을 보였다. 유사체액내의 침적실험결과, 시료표면위에 apatite 결정층이 3일후부터 형성되어 생체뼈와 화학결합을 이룰 가능성이 있음을 알았다.

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Skaergaard 암체의 희토류의 분화경향 (Differentiation Trend of Rare Earth Elements of the Skaergaard Intrusion)

  • Yun D. Jang
    • 자원환경지질
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    • 제34권6호
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    • pp.617-625
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    • 2001
  • Skaergaard 암체는 광범한 in situ 화성분화작용을 격은 층상관입암의 대표적인 예로 널리 알려져 있다. 따라서 이 암체는 폐쇄계에서 미량원소변이를 modeling 할 수 있는 적지가 될 것이다. 그러나, 기존의 연구에 의하면 본 암체의 전암 및 광물의 회토류는 폐쇄계로서의 예상된 경향을 보이지 않는다(Haskin and Haskin, 1968; Paster et al., 1974). 발표된 분배계수, 공존광물들의 mode,그리고 전암 및 광물의 미량원소함량을 사용한 미량원소modeling에 의하면 Skaergaard 암체의 희토류는 분화후기에 일어난 광범한 인회석 결정작용에 크게 영향을 받았음을 보여준다. 미량원소modeling은 Upper Border Series에서 간헐적으로 나타나는 인회석이 기존에 주장되어 온 바와 같은 liquldus상이 아니라 진화하는 magma의 미량원소함량에는 영향을 끼칠 수 없는 interstitial phase임을 시사한다. 분화작용 말기에 Skaerganrd 마그마가 대류를 멈추거나 소규모로 대류를 할 때, 마그마 암장의 상부에 축적되는 휘발성분에 기인한 증가된 $PH_2$O가 인회석이 UBS에서 정출 되는 것을 방해하였을 것이다. 이와 같은 인회석의 특성을 고려해서 Skaergaard분화작용을 modeling하면 희토류는 폐쇄계로서의 예상된 경향을 따른다 이와 같은 결과는 최종 20% 분화작용기간 중에 양적으로 상당한 양의 마그마의 주입이나 분출을 수반하는 그 어떤 Skaergaard 암체의 분화model도 배격한다.

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인공 탈회된 법랑질 표면의 CPP-ACP와 nano-sized carbonated apatite 함유물질의 재광화효과 (CPP-ACP of artificially demineralized enamel surface and remineralization of material containing nano-sized carbonated apatite)

  • 김영숙
    • 한국치위생학회지
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    • 제8권1호
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    • pp.13-22
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    • 2008
  • This study compared tooth's remineralization using enamel surface artificially demineralized with 0.1M lactate and HCL solution using Vicker's Hardness Number(VHN) to compare CPP-ACP and remineralization of nano-sized Carbonate Apatite's initial caries. Using pH circulation models divided into 0% nano-CA, 5% nano-CA, 10% nano-CA, 10% CPP-ACP and D.W. they were treated for 5 minutes, three times a day for 14 days to get the following results. 1. There were no significant differences among the initial surface hardness of samples demineralized surface of front tooth in 5 groups. and all 5 groups' surface hardness reduced significantly after demineralization of enamel. 2. When inquiring into hardness changes through pH circulation model, the highest hardness change was in 5% nano-CA group. Also. 10% nano-CA and 10% CPP-ACP groups increased significantly. but there was no significant difference statistically. In generalizing the above experiment results, nano-sized Carbonate Apatite showed remineralization, and compared to 10% CPP-ACP group, 5% nano-CA had remineralization to artificial caries. thus implies that when we develop method to contact with tooth of nano-CA in the future, it is expected to gain synergy effect on function of saliva, a natural remineralization material.

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Tobermolite를 이용한 폐수내 인산염제거 (Phosphate Removal in Wastewater by Tobermolite)

  • 임봉수;김대현;이태우
    • 상하수도학회지
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    • 제27권6호
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    • pp.751-759
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    • 2013
  • This study is carried out to get the basic design parameters for phospate removal facilites from wastewater by Tobermolite. The phosphate removal by the apatite formation on the surface was affected by several important factors, temperature, ions present in wastewater stream, contact time, recirculation rate, and etc. In case of the temperature, with the increase of temperature, the apatite formation was accelerated. When temperature increased from $15^{\circ}C$ to $35^{\circ}C$, removal efficiency of phosphate increased from 83 % to 93 %. An increase of calcium and fluoride ion content increase the apatite formation, however, bicarbonate and magnesium ion inhibited the crystallization of apatite. As expected, when the recirculation rate was increased from 1 Q to 3 Q, at EBCT (Empty Bed Contact Time) 60min enhanced removal efficiency was observed. The more the recirculation rate increased, the more the removal efficiency increased. According to the results of column experiment using an actual wastewater with low and high phosphate concentration (5 mg/L and 50 mg/L-P), the removal efficiency was 77 % at EBCT of 45 min, and 80 % at 60 min. It was suggested that optimum EBCT was 45 min.

알루미나에 코팅된 생체활성유리의 결정화에 따른 수산화 아파타이트 형성 (Hydroxyapatite Formation on Crystallized Bioactive Glass Coat on Alumina)

  • 이은성;지상수;김철영
    • 한국세라믹학회지
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    • 제40권3호
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    • pp.255-261
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    • 2003
  • 생체활성 유리를 알루미나 기판에 코팅하고 이를 유사 생체 용액에 반응시켰을 때 코팅 유리층 표면에 생성된 수산화 아파타이트 형성 거동 변화에 대하여 연구하였다. 알루미나에 코팅된 생체 활성 유리를 여러 온도에서 열처리하였을 때 다양한 종류의 결정상이 나타났으며, 특히 110$0^{\circ}C$에서 열처리하였을 때는 $\beta$-wollastonite와 apatite, 120$0^{\circ}C$에서 열처리하였을 때는 $\alpha$-wollastonite와 apatite가 생성되었다. 이들 시편을 tris-완충용액에 반응시켰을 때, $\alpha$-wollastonite 결정의 부식 속도가 $\beta$-wollastonite의 부식 속도보다 빨랐다. 그리고 이들 시편을 유사 생체 용액과 반응시켰을 때는 두 코팅층 표면에서 수산화 아파타이트가 형성되었는데, 그 형성 속도는 $\alpha$-wollastonite가 포함된 시편에서 더 빨랐다.

MgO-CaO-${SiO_2}-{P_2O_5}$계 Bioglass-Ceramic의 결정화에 미치는 $Al_2O_3$ 첨가의 영향(I) (Effect Of $Al_2O_3$on the Crystallization Of MgO-CaO-${SiO_2}-{P_2O_5}$ Bioglass-Ceramic System (I))

  • 이민호;배태성
    • 대한의용생체공학회:의공학회지
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    • 제15권2호
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    • pp.189-194
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    • 1994
  • Effects of ${AI_2O_3}/{P_2O_5}$ ratio on the crystallization of a series of glasses with the nominal composition of 41.4wt % $SiO_2$, 35.0wt % CaO, 20.6wt % (${P_2O_5}$+${AI_2O_3}$) and 3.0wt% MgO were investigated with DTA, XRD and SEM. The major crystalline phases are apatite and anorthite. The glass transition temperature ($T_g$) and the softening point ($T_s$) are shifted to the upper temperature by increasing $AI_2O_3$ content. The temperature of apatite crystallization ($T_{p1}$) is increased by $AI_2O_3$ content, but the tempera¬ture of anorthite crystallization ($T_{p2}$) is not affected significantly. With increased of $AI_2O_3$, the apatite crystallization is decreased, but anorthite crystallization is increased.

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Ti-Ni형상기억합금의 생체활성에 미치는 표면처리의 영향 (Effect of Surface Treatment on Bioactivity of Ti-Ni Shape Memory Alloys)

  • 최미선;남태현
    • 대한금속재료학회지
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    • 제47권12호
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    • pp.881-886
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    • 2009
  • Research into the replacement of injured systems and tissue in the human body is advancing rapidly. Recently, Ti-Ni shape memory alloys have shown excellent biofunctionality related to their shape memory effect and superelasticity. In this study, the effect of an acid or an alkali treatment on the bioactivity in 49Ti-Ni and 51.5Ti-48.5Ni alloys is investigated in an effort to utilize Ti-Ni alloy as a biomaterial. In addition, the biocompatibility in a SBF solution is assessed through in vitro testing. A porous surface was formed on the surface of both alloys after a chemical treatment. According to the in vitro test, apatite formed on the surfaces of both alloys. The forming rate of apatite in the Ti-rich alloy was faster that in the Ni-rich alloy. The formation of apatite provided proof of the bioactivity of the Ti-Ni alloy. A small quantity of Ni was eluted at the initial stage, whereas Ni was not found for 12 days in the Ti-rich alloy and for 8 days in the Ni-rich alloy. In the case of the treated 51.5Ti-Ni alloy, the shape memory property was worsened but the biocompatibility was improved.

Effect of ethyl alcohol aging on the apatite formation of a low-modulus Ti-7.5Mo alloy treated with aqueous NaOH

  • Ho, Wen-Fu;Tsou, Hsi-Kai;Wu, Shih-Ching;Hsu, Shih-Kuang;Chuang, Shao-Hsuan;Hsu, Hsueh-Chuan
    • Biomaterials and Biomechanics in Bioengineering
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    • 제1권1호
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    • pp.51-62
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    • 2014
  • The purpose of this experiment was to evaluate the apatite-formation abilities of low-modulus Ti-7.5Mo substrates treated with NaOH aqueous solutions and subsequent ethyl alcohol aging before soaking them in simulated body fluid. Specimens of Ti-7.5Mo were initially treated with 5 M NaOH at $60^{\circ}C$ for 24 h, resulting in the formation of a porous network structure composed of sodium hydrogen titanate. Afterwards, the specimens were aged in ethyl alcohol at $60^{\circ}C$ for 5 or 10 min, and subsequently immersed in simulated body fluid at $37^{\circ}C$ for 3, 7 and 14 days. Ethyl alcohol aging significantly increased the apatite-forming abilities of Ti-7.5Mo. The amount of apatite deposited on the Ti-7.5Mo after NaOH treatment and subsequent ethyl alcohol aging was much greater, especially after the Ti-7.5Mo specimens were aged for 5 min. Due to its excellent combination of bioactivity, low elastic modulus and low processing costs, the Ti-7.5Mo treated with NaOH aqueous solutions and subsequently aged in ethyl alcohol has promising heavy load-bearing applications.