• 제목/요약/키워드: ePTFE

검색결과 101건 처리시간 0.043초

무기인산염과 탈단백우골의 혼합사용이 골재생에 미치는 효과 (Effect of deproteinized bovine bone mineral soaked in inorganic polyphosphate on bone regeneration)

  • 나성윤;권영혁;박준봉;허익;정종혁
    • Journal of Periodontal and Implant Science
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    • 제37권1호
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    • pp.77-89
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    • 2007
  • This study was performed to evaluate the effect of deproteinized bovine bone mineral soaked in inorganic polyphosphate on bone regeneration in the calvaria of rabbit in the procedure of guided bone regeneration with titanium reinforced expanded polytetrafluoroethylene(TR-ePTFE) membrane. The rabbits were divided into four groups. Control group used TR-ePTFE membrane filled with de-proteinized bovine bone mineral, experimental group I used TR-ePTFE membrane and deproteinized bovine bone mineral soaked in 4% inorganic polyphosphate, experimental group II and III used TR-ePTFE membrane and deproteinized bovine bone mineral soaked in 8% or 16% inorganic poly-phosphate respectively. After decortication in the calvaria, GBR procedure was performed on 8 rabbits with only TR-ePTFE membrane or titanium reinforced ePTFE membrane filled with deproteinized bovine bone mineral soaked in inorganic polyphosphate. The animals were sacrificed at 4 weeks, and 8 weeks af-ter the surgery. Non-decalcified specimens were processed for histologic analysis, and new bone for-mation was assessed by histomorphometric as well as statical analysis. 1. Both control group and experirrental group dermnstrated increasing of new bone formation until 8weeks. 2. At 8 weeks, experimental group I and group II showed the significant difference compared to control group in new bone formation. Especially experimental group II showed the most in-creasing of new bone formation. 3. The higher concentration of inorganic polyphosphate filled, the more volume of bone formation pro-moted, but experimental group III did not reveal significant difference compared to contol group. 4. Deproteinized bovine bone mineral did not resorbed at all until 8 weeks. These results suggest that inorganic polyphosphate has a promoting effect on bone regeneration. possibly by enhancing osteoconductivity of the carrier and by increasing osteoinductivity of the defected alveolar bone tissue, but not as we respect.

치주조직 상태에 따른 e-PTFE막 부착에 관한 연구 (In Vitro Study Of Salivary Bacterial Adherence On e-PTFE Membrane According To Periodontal Status.)

  • 주재익;정현주
    • Journal of Periodontal and Implant Science
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    • 제26권1호
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    • pp.117-132
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    • 1996
  • The purpose of this study was to evaluate the bacterial adherence on e-PTFE membrane immersed in whole saliva from subjects with different periodontal status. Experiment involved 3 subject groups: 5 persons with healthy periodontium(probing depth below 3mm and no signs of gingival inflammation including bleeding on probing), 10 patients with gingivitis(probing depth below 3mm and apparent signs of gingival inflammation), and 10 patients with advanced periodontitis(probing depth over 7mm and apparent signs of gingival inflammation). Each disease group was included before and after scaling and root planing treatment. After obtaining whole saliva from each subject, e-PTFE membrane(Gore-Tex periodontal membrane : $GTPM^{(R)}$, W.L. Gore & Associates, Flagstaff, USA) specimens were immersed at room temperature in the saliva aliqouts for 1, 3, 7 days. The weight between pre - and post - immersion in saliva was measured with the analytical balance and the difference was recorded. The specimens were processed for SEM observation. The bacterial adherence on the membrane specimens was evaluated using the scanning electron microscope images. The obtained results were as follows : 1. There was no difference in the weight of bacteria adherent to e-PTFE membrane specimens according to the periodontal status and the immersion periods. 2. As the exposure time to saliva increased, the bacterial adherence to the membrane specimen significantly increased in all groups(P<0.005). 3. As the severity of periodontal disease increased, the bacterial adherence to the membrane specimens significantly increased(p<0.001). 4. After scaling and root planing, the bacterial adherence to the membrane specimens significantly decreased in gingivitis and periodontitis patient group(P<0.001). These results suggest that bacterial contamination on exposed barrier membrane surface be reduced through improvement of periodontal status and oral health environment before and after GTR procedure for the successful outcome.

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조직 재생유도술에 사용되는 e-PTFE 및 collagen막에 부착되는 치주세균과 항생제 감수성에 대한 연구 (A COMPARATIVE STUDY ON THE PREDOMINANT CULTIVABLE MICROORGANISMS FOOLOWING THE APPLICATIONS OF E-PTFE AND COLLAGEN MEMBRANE AND THEIR ANTIBIOTIC SUSCEPTIBILITY TEST.)

  • 임효정;김성조;최정임
    • Journal of Periodontal and Implant Science
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    • 제24권3호
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    • pp.561-571
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    • 1994
  • The comparative study on the predominant cultivable periodontopathic bacteria were done 2 weeks after the application of the e-PTFE membrane and collagen membrane in the controlled tissue regeneration procedures. The purpose of the present study also included the antibiotic susceptibility test (ciprofloxacin, tetracycline, clindamycin) of these cultured organisms. 0.1% chlorhexidine mouthwash (10ml twice/day for 6 weeks) and systemic doxycycline (200mg/day for 2 weeks) were administered for supragingival and subgingival plaque control respectively. Four clinical isolates of A.a. from 2 patients were found to be resistant to tetracycline which were susceptible to clindamycin and ciprofloxacin. One isolate of W.r. and two unidcntified microorganisms were resistant only to clindamycin and one isolate of NID BPB and E.c. and two isolates of unidentified microorganisms were resistant only to ciprofloxacin. Overall susceptibility of tested microorganisms to ciprofloxacin, tetracycline and clindamycin were 85%, 77% and 89% respectively. The results indicated no significant differences in the percentage of cultivable periodontopathic bacteria between the two membranes, and also the microorganisms resistant to tetracycline after systemic administration of doxycycline turned out to be susceptible to either ciprofloxacin or clindamycin.

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$BaSO_{4}$ : Eu-PTFE TLD 방사선 센서의 제작과 물리적 특성 (Preparation of $BaSO_{4}$ : Eu-PTFE TLD Radiation Sensor and Its Physical Characterstics)

  • 우홍;김성환;이상윤;강희동;김도성
    • 센서학회지
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    • 제1권1호
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    • pp.59-66
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    • 1992
  • $BaSO_{4}$ : Eu 열형광체 분말을 제작하고 이를 PTFE로 중합한 디스크형의 $BaSO_{4}$ : Eu-PTFE 고감도 TLD 방사선 센서를 제작하였다. $BaSO_{4}$ : Eu 열형광체는 $BaSO_{4}$분말과 활성체인 Eu($Eu_{2}O_{3}$) 및 두가지 용제 $NH_{4}Cl$$(NH_{4})_{2}SO_{4}$를 각각 lmol%, 6mol% 및 5mol%의 농도로 묽은 황산에 공침하여 건조시킨 후 질소분위기에서 $1000^{\circ}C$로 1시간 동안 소결하여 제작하였을 때 $X/{\gamma}$선에 대해 최대감도를 나타내었다. 그리고 $BaSO_{4}$ : Eu glow 곡선의 주 피이크의 활성화에너지와 진동수인자 및 발광차수는 각각 1.17eV, $3.6{\times}10^{11}/sec$ 및 1.25이었으며, 발광 스펙트럼의 피이크 파장은 425nm였다. 한편 $BaSO_{4}$ : Eu-PTFE TLD의 최적제작조건은 열형광체 분말의 함량은 40wt%, TLD의 두께는 $105.7mg/cm^{2}$ 중합조건은 $380^{\circ}C$, 공기중에서 2시간으로 결정하였다. 그리고 ${\gamma}$선에 대한 TL 피이크 강도의 선량의존성은 0.01-20Gy영역에서 선형적이었으며, 감쇠율은 60시간에 약 10 %였다.

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PEMFC의 고분자막에서 지지체가 고분자전해질 막 성능 및 전기화학적 내구성에 미치는 영향 (Effect of Support on the Performance and Electrochemical Durability of Membrane in PEMFC)

  • 오소형;임대현;이대웅;박권필
    • Korean Chemical Engineering Research
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    • 제58권4호
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    • pp.524-529
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    • 2020
  • 고분자전해질 연료전지의 기계적 내구성을 높이기 위해 고분자막에 지지체를 넣은 강화막이 사용되고 있다. 지지체는 주로 e-PTFE를 사용하는데 소수성이고 이온전달이 안되므로 성능저하의 원인이 될 수 있다. 그래서 본 연구에서는 e-PTFE 지지체가 PEMFC 성능과 전기화학적 내구성 미치는 영향에 대해 연구하였다. 본연구에서는 지지체가 들어간 강화막과 들어가지 않은 단일막(비강화막)을 비교하였는데, 지지체의 소수성 때문에 강화막의 물 확산계수가 단일막보다 낮았다. 강화막은 물확산 계수가 낮아 이온의 막 이동 저항이 단일막보다 높았다. 지지체의 낮은 수소투과도 때문에 강화막의 OCV가 단일막보다 높았다. 지지체가 수소투과도를 감소시킴으로서 라디칼 발생속도를 감소시켜 강화막의 전기화학적 내구성도 향상시킴을 보였다.

탈회이식골과 유도조직재생용 차폐막이 인공치아 매식채 주위의 골열개창 치유에 미치는 효과 (REGENERATIVE CAPACITY OF DEMINERALIZED BONE GRAFT AND GUIDED TISSUE REGENERATION ON DEHISCED ALVEOLAR BONE ADJACENT TO DENTAL IMPLANT)

  • 정경욱;최상묵
    • Journal of Periodontal and Implant Science
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    • 제25권2호
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    • pp.341-356
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    • 1995
  • The purpose of this study was to evaluate the effect of demineralized freeze dried bone and demineralized bone gel with guided tissue regeneration treatment around titanium implants with dehisced bony defects and also evaluate space maintaining capacity of demineralized bone gel type and DFDB powder type under e-PTFE membrane. In 3 Beagle dogs, mandibular premolar was extracted and four peri-implant osteotomies were formed for dehiscence. After insertion of implants, the four peri-implant defects were treated as follows. 1) In control group. no graft material and barrier membrane were applied. 2) In experimental group.1, the site was covered only with the e-PTFE membrane. 3) In experimental group 2,received DFDB powder and covered by the e-PTFE membrane. 4) In experimental group 3, demineralized bone gel and e-PTFE membrane were used. By random selection, animals were sacrificed at 4, 8, 12 weeks. The block sectioned specimens were prepared for decalcified histologic evaluation(hematoxylin and eosin staining) and undecalcified histologic evahiation(Von Kossa's and toluidine blue staining) with light microscopy. The results of this study were as follows. 1) In control group, there was a little new bone formation and connective tissue was completely filled in the defect area. 2) Experimental group 1 showed lesser quantity of bone formation as compared to the bone grafted group. Thin vertical growth of new bone formation around implant fixture was shown. 3) Experimental group 2 showed thick bucco-lingual growth of new bone formation and grafted bone particles were almost resorbed in 12 week group. 4) In experimental group 3, most grafted bone particles were not resorbed in 12 week group and thick bucco-lingual bone formation was shown in dehisced defect base area. 5) There was no remarkable differences in space making capacity and new bone formation procedure between demineralized freeze-dried bone powder type and demineralized bone gel type.

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파괴된 치주조직의 재생촉진에 관한 연구 (A STUDY OF REGENERATION ENHANCEMENT OF DESTRUCTED PERIODONTAL TISSUE)

  • 한경윤
    • Journal of Periodontal and Implant Science
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    • 제25권2호
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    • pp.407-417
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    • 1995
  • In order to evaluate the effect of platelet-derived growth factor(PDGF-BB) and guided tissue regeneration(GTR) technique on the regeneration of destructed periodontal tissue,intentional through-and-through furcation defects(4mm in height) were made on both mandibular 2nd and 4th premolars of 8 adult male dogs(30-40lb). Experimental group 1 was composed of the premolars that were treated by only topical application of PDGF-BB with 0.05M acetic acid without any barrier membrane. Experimental group 2 was composed of the premolars that were treated by GTR with expanded polytetrafluoroethylene membrane(ePTFE : Gore-tex periodontal material, USA). Experimental group 3 was composed of the premolars that were treated by GTR with ePTFE after topical application of PDGFBE. Control group was composed of the premolars that were treated by coronally positioned flap operation only without use of PDGF-BB and ePTFE membrane. All ePTFE membranes were carefully removed 4 weeks after regenerative surgery, and all experimental animals were sacrificed 8 weeks after regenerative surgery. The light microscopic findings were as follows ; (1) In experimental group 1, rapid new bone formation along the-root surface with multiple ankylosis and root resorption by multinucleated giant cells, and dense connective tissue in the central portion of the furcation defects were observed. (2) In experimental group 2, it was observed that the furcation defects were filled with newly formed bone, Sharpey's fibers were embedded into new cementum on root dentin of furcation fornix area, but the central portion and the area under furcation fornix were still filled with dense connective tissue. (3) In experimental group 3, the furcation defects were regenerated with newly formed dense bone and regular periodontal ligament with Sharpey's fibers embedded into newly formed cementum and bone underneath fornix area. (4) In control group, unoccupied space, apical migration of epithelium, dense infiltration of inflammatory cells in subepithelial connective tissue in relation to heavy plaque accumulation, and root resorption by inflammatory reaction were shown, but any new cementum formation on resorbed dentin surface could not be observed. The present study demonstrated that the combined therapy of PDGF-BB and GTR could enhance the regeneration of destructed periodontal tissue.

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성견 하악의 치주-치근단 실험적 복합병소에서 골조직 재생에 관한 연구 (BONE REGENERATION OF THE EXPERIMENTAL ENDODONTIC-PERIODONTIC COMBINED DEFECTS IN THE MANDIBLES OF THE DOGS)

  • 김정혜;백승호;윤수한
    • Restorative Dentistry and Endodontics
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    • 제24권2호
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    • pp.286-298
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    • 1999
  • The endodontic-periodontic combined lesions have been difficult to get correct diagnosis and predictable treatment. This study was to make the experimental endodontic-periodontic combined defects in dogs for the study of the periodontal regeneration and to evaluate the efficacy of the enamel matrix protein and e-PTFE membrane in the experimental endodontic-periodontic combined defects. 5 mongrel dogs were used. The pulp chambers were opened and the plaque was inserted into the chambers to induce the periapical lesions on the mandibular second, third and fourth premolars of the dogs. 1 month later, the root canal treatments were done with gutta perch a and ZOE sealer. On the day of surgery, the periapical defects were standardized by trephine bur. The buccal dehiscence defects were made by the dental bur and bone chisels. The apicoectomy with retrofilling was done. The prepared roots were randomly selected for test and control groups. In the experimental groups, the enamel matrix derivative and e-PTFE membrane were used. Nothing was placed on the control group. Fluroscent labelling was used to evaluate the bone formation. After 4 and 12 weeks, the dogs were sacrificed and undecalcified sections were prepared and stained with toluidine blue. Those histologic sections were examined by fluorescent microscopy and light microscopy. The results were as follows. 1. In the control group, new bone was formed in the periapical defects and scarcely in the buccal dehiscence defects. New cementum was not detected at 4 and 12 weeks. 2. In the experimental groups, new bone, new cementum and periodontal ligament were found in the periapical and buccal dehiscence defects. The relative amount and the quality of the new bone, new cementum and periodontal ligament tissue that had formed on the experimental groups were superior to those of the control group. 3. The current observation implicated that e-PTFE membrane and enamel matrix protein could be the effective tools for the guided tissue regeneration of the endo-perio combined defects.

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