• 제목/요약/키워드: connective tissue

검색결과 918건 처리시간 0.021초

골연화증과 저인산혈증을 유발한 인산뇨성 간엽성 종양 -증례 보고- (Osteomalacia and Hypophosphatemia Caused by Phosphaturic Mesenchymal Tumor Mixed Connective Tissue Variant (PMTMCT) -A Case Report-)

  • 정재윤;김준혁;이상훈;김한수
    • 대한골관절종양학회지
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    • 제10권2호
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    • pp.124-129
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    • 2004
  • 인산뇨성 간엽성 종양 복합성 결합조직 변이형(PMTMCT)은 매우 드문 질환으로, 인산뇨, 저인산혈증, 정상혈청 칼슘농도, 그리고 감소된 1,25-dihydroxyvitamin D3등의 부종양성 증후군을 보이는 종양성 골연화증을 흔히 유발하는 것으로 알려져 있다. 45세 여자 환자에서 종양성 골연화증의 증상을 동반하는 우측 둔부내 인산뇨성 간엽성 종양을 진단하여, 수술적인 치료로 좋은 결과를 얻었기에 문헌고찰과 함께 보고하는 바이다.

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상악 전치부의 임플란트 식립과 관련하여 혈관개재골막결합조직판막술을 이용한 치조제증대술: 3가지 증례보고 (Ridge Augmentation Using Vascularized Interpositional Periosteal- Connective Tissue (VIP-CT) in Conjunction with Anterior Implant Placement in Maxilla : Report of Three Cases)

  • 김윤상
    • Journal of Periodontal and Implant Science
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    • 제38권2호
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    • pp.207-214
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    • 2008
  • Purpose: The aim of augmentation of the alveolar ridge is to restore absorbed alveolar ridges for future implant site or esthetic prosthodontic restoration. The present clinical report describes the anterior maxillary augmentation cases using a soft tissue rotated palatal flap, and considers various problems of before and after surgery. Method: First & second patients were treated by vascularized interpositional periosteal-connective tissue(VIP-CT) flap for horizontal soft tissue augmentation. Especially second patient was progressed with bone grafting at the same time. Third patient was treated by the same flap with bone graft and implant placement in single tooth missing premaxillary area. Result: The obtained horizontal augmentation width measured $0.5{\sim}2.7\;mm$. Conclusion: This technique constitutes a viable approach for augmentation the anterior sector of alveolar ridge with the placement of dental implants. But it needs correct diagnosis preparation and careful surgery skill.

비염증성 치은증식증의 상피 및 상피하조직내 세포변화에 관한 면역조직화학적 연구 (AN IMMUNOHISTOCHEMICAL STUDY ON THE CELLULAR CHANGE IN EPITHELIUM AND SUBEPITHELIAL TISSUE OF NON-INFLAMMATORY GINGIVAL HYPERPLASIA)

  • 최영욱;한경윤
    • Journal of Periodontal and Implant Science
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    • 제23권3호
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    • pp.605-621
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    • 1993
  • The gingival hyperplasia refers to an increase in the size of the gingival tissue produced by an increase in the number of its component cells. In order to investigate the cellular change in epithelium and subepithelial tissue of noninflammatory gingival hyperplasia, the gingival tissues were surgically obtained from the patients with dilantin gingival hyperplasia and idiopathic gingival hyperplasia. The excised tissue samples were fixed in neutral formalin for 6-24 hours, embedded with paraffin, sectioned at $4-6{\mu}m$ in thickness, mounted on glass slides coated with 3-aminopropyltriethoxysilane(Sigma Chemical Co., St. Louis, MO, U.S.A.) and immunocytochemically processed by Avidin-Biotin peroxidase complex method for detecting proliferating cell nuclear antigen, tenascin and collagen type IV. Monoclonal mouse anti-human PCNA antibody(Oncogene Science, Uniondale, NY, U.S.A., 1 : 250,000), monoclonal mouse anti-human tenascin antibody(Chemicon-International Inc., Temecula, CA, U.S.A., 1:5,000), and monoclonal mouse anti-human collagen type IV(Dakopatts, Glostrup, Denmark, 1: 50) were used as primary antibodies. The results were as follows: 1. In non-inflammatory gingival hyperplasia, the positive reaction to proliferating cell nuclear antigen was localized in the basal cell layer of gingival epithelium and well-developed rete pegs. 2. The positive reaction to tenascin was shown in the connective tissue subjacent to basament membrane of gingival tissue, and especially strong positive reaction was noted in the tip portion of connective tissue projections. 3. The positive reaction to collagen type IV was localized along the basement membranes of gingival epithelium and blood vessels. The results suggest that connective tissue enlargement may affect the proliferation of gingival epithelium.

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슬관절 연부조직의 물리치료에 관한 문헌적 고찰 (Physical therapy of soft tissue surround the knee joint)

  • 이준희;윤상집;정영준;최원호
    • 대한물리치료과학회지
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    • 제9권3호
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    • pp.161-170
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    • 2002
  • knee injuries are among the most common problems confronting patients, physical therapist and physicians. since the bony structure provides little stability, the soft tissues are required to withstand high forces, often resulting in tissue overload and injury immobilization of the knee in the presence of a hemarthrosis usually leads to proliferation of intraarticular connective tissue adhesions and pint fibrosis. the physical basis of treating scar tissue is early controlled motion. the management of the knee with increased instability is to strengthening the muscles to properly treat an soft tissue injuries, physical therapist should know about the anatomic structures and biomechanical function of the knee joint, in this review article, we discuss the physiologic properties of soft tissue, biomechanical observation in fibrous connective tissue, managing soft tissue contractures, principles in treating scar tissue and treatment of the knee with increased instability.

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성견 1면 치조골 결손부에서 특수제조된 Calcium Sulfate Paste가 치주조직 치유에 미치는 영향 (Periodontal repair in dogs: effect of the modified calcium sulfate paste on the 1-wall intrabony defects)

  • 김종관
    • Journal of Periodontal and Implant Science
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    • 제29권1호
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    • pp.153-171
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    • 1999
  • The purpose of this study was to evaluate the effect of modified calcium sulfate paste on periodontal regeneration. l-wall intrabony defect(mesio-distal width: 4mm, depth: 4mm) was surgically created on the distal side of P2 and mesial side of p4 in four dogs. The control group(GFS) was treated with conventional flap operation alone, and the experimental group(CS) was treated with conventional flap operation with modified calcium sulfate paste application. Both control and experimental groups were sacrificed after 8weeks of healing period, The results of histological and histometric observations were as follows. 1. The length of the junctional epithelium was 0.41${\pm}$0.01mm in the control groups, 0.47${\pm}$0.01mm in the experimental group. 2. The connective tissue attachment was 0.28${\pm}$0.02mm(6.15${\pm}$0.28%) in the control group, 0.18${\pm}$0.01mm(3.41${\pm}$0.14%) in the experimental group. The control group showed more connective tissue attachment. 3. The new cementum formation was 3.80${\pm}$0.06mm(84.80${\pm}$0.33%) in the control group, 4.49${\pm}$0.06mm(87.57${\pm}$0.15%) in the experimental group. Both groups showed a lot of new cementum formation. 4. The new bone formation was 1.43${\pm}$0.03mm(32.37%) in the control group, 2.04${\pm}$O.09mm(40.94%) in the experimental group. 5. The inflamatory cells were observed partially around resorbed calcium sulfate in the connective tissue of the experimental group. 6. Partially resorbed calcium sulfate were found within the connective tissue, around alveolar bone, and in the newly formed alveolar bone, On the basis of these results, newly formed calcium sulfate paste enhanced new bone formation and new cementum formation. The resorption rate of calcium sulfate seems to be controlled by the add-in compounds. Thus research about biocompatibility and adequate resorptionrate is required to develop a improved material.

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Arterial Tortuosity Syndrome in a Neonate

  • Kim, Kyung Min;Hur, Sun-Mi;Yoon, Ji Hong;Lee, Eun-Jung;Lee, Jae Young
    • Neonatal Medicine
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    • 제25권1호
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    • pp.49-52
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    • 2018
  • Arterial tortuosity syndrome (ATS) is a very rare autosomal recessive connective tissue disease characterized by generalized elongation and tortuosity of the medium- to large-sized arteries, and other systemic connective tissue manifestations. To date, this disease entity has not been reported in Korea. We report a case of ATS diagnosed in a neonate who presented with severe elongation and tortuosity of the aorta and its major branches, as well as the intracranial arteries. Additionally, the patient presented with a tortuous dilatation of the inferior vena cava, an aneurysmal dilatation of the extra-hepatic bile ducts, and an inguinal and sliding hiatal hernia. The diagnosis was confirmed using DNA sequencing analysis, and the patient demonstrated a compound heterozygosity for two novel mutations (c.738delG [p.Gln247Serfs*33] and c.362T>C [p.Ile121Thr]) in exon 2 of the SLC2A10 gene. Genetic analysis also confirmed that both parents were heterozygous carriers of the responsible mutations. Owing to such clinical manifestations, ATS is often misdiagnosed as other connective tissue diseases including Loeys-Dietz syndrome, Marfan syndrome, and Ehlers-Danlos syndrome. In patients presenting with a high index of suspicion, thorough clinical evaluation and screening for ATS including computed tomography or magnetic resonance angiography and target gene analysis are necessary for early diagnosis and management.

Lysosomal Enzyme에 의(依)한 근육조직(筋肉組織)의 변화(變化) -제(第)2보(報) Scanning Electron Microscopy에 의(依)한 고찰(考察)- (Muscle Ultrastructural Changes by Lysosomal Enzymes -2. Scanning Electron Microscopic Studies-)

  • 조무제;윤태규;베일리밀톤이
    • 한국식품과학회지
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    • 제10권1호
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    • pp.36-45
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    • 1978
  • 맥백혈구(脈白血球) Lysosomal 효소를 pH(7.0, 4.0), 온도($37^{\circ}C$, $4^{\circ}C$) 및 처리기간($37^{\circ}C$에서 12 24시간, $4^{\circ}C$에서 36 168시간)을 달리하여 처리(處理)한 우(牛)의 요근조직(腰筋組織)의 변화(變化)에 대(對)하여 endomysial connective tissue, sarcolemma 및 transverse ridge등 근(筋)섬유 표면조직(表面組織)의 변화(變化)를 SEM으로 관찰한 바, 처리온도(溫度)에 관계(關係)없이 pH 7.0에서는 endomysial connective tissue, sarcolenna 및 transverse ridge의 분해(分解)를 나타내어 이 효소의 높은 역가(力價)를 보였으나, pH4.0에서는 이들 표면조직(表面組織)에 변화(變化)가 없었으며 특(特)히 transverse ridge는 $37^{\circ}C$에서 24시간, 그리고 $4^{\circ}C$에서 7일간 처리(處理)하여도 변화(變化)를 나타내지 않아 안정(安定)됨을 보였다.

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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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치주판막술시 여분의 결합조직을 이용한 치은퇴축의 회복에 대한 증례보고 (CASE REPORT OF ROOT COVERAGE VIA CONNECTIVE TISSUE DURING UNDISPLACED FLAP OPERATION)

  • 임성빈;정진형;이재현
    • 대한심미치과학회지
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    • 제4권1호
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    • pp.1-5
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    • 1995
  • A mucogingival grafting procedure has been developed to cover denuded root surfaces. This procedures need to connective tissue, so many clinician open the trap door to palatal side of the patient. In this study, where palatal pocketing was present, pocket elimination was performed, and the tissue normally discarded after thinning of the palatal flap was used as a grafting material. The esthetics in recipient site, both color match and tissue contour were acceptable to the patient in this case.

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Does subepineural injection damage the nerve integrity? A technical report from four amputated limbs

  • Diwan, Sandeep;Nair, Abhijit;Sancheti, Parag;Van Zundert, Andre
    • The Korean Journal of Pain
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    • 제34권1호
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    • pp.132-136
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    • 2021
  • Local anesthetic (LA) injection outside the sheath in epineural or paraneural connective tissue is considered safe practice among regional anesthesiologists. There is limited evidence as to whether neurological complications occur if LA is injected inside the sheath (subepineural - intraneural). We performed ultrasound guided injections at the level of undivided sciatic nerve in four amputated lower limbs. In two specimens, LA was injected in epineural connective tissue (paraneural tissue) and in another two specimens by penetrating the outer nerve sheath (hyperechoic epineurium). Ultrasonography demonstrated an increase in the size of nerve and macroscopic findings revealed fascicular tracings with sub-epineural injections. Limbs were sent for histological analysis in formalin containers. Pathologist performed the analysis which demonstrated an intact perineurium and a breach in the epineurium. We conclude that sub-epineural injections are unsafe and injection should be done in paraneural tissue to ensure safety and avoid unwanted neurological sequelae after the block.