• Title/Summary/Keyword: 재생 자가골

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Reconstruction of Bone Defects Caused by Tumor Resection Using Recycled Autograft Augmented with VFG (재생 자가골과 생비골 이식술을 이용한 종양절제 후 골 결손의 재건)

  • Chung, Yang-Guk;Kang, Yong-Koo;Bark, Won-Jong;Rhee, Seung-Koo;Lee, An-Hi;Park, Jeong-Mi;Park, Bo-Youn
    • The Journal of the Korean bone and joint tumor society
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    • v.15 no.2
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    • pp.93-103
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    • 2009
  • Purpose: We evaluated the outcomes of surgical reconstructions using recycled autograft augmented with VFG for bone defects caused by tumor resections. Materials and Methods: Ten patients with a malignant or locally aggressive bone tumor who were managed with recycled autograft augmented with VFG and followed up minimum 1 year were evaluated for bone union, functional result and complications. The influence of various factors on bone union and functional outcomes were also analyzed. Results: Bone unions were obtained at 13 of 20 junctions. Average union time was 3.7 months at metaphyseal junctions and 8 months at diaphyseal junctions (P<0.05). At diaphyseal junctions, younger aged group and intramedullary location group showed earlier bone union (P<0.05). The mean functional score was 81%. There were 3 nonunions, 4 delayed unions and 2 recycled bone resorption combined with fractures. Conclusion: To obtain excellent results, proper microvascular technique, sufficient length of VFG bridging both junctions, stable internal fixation and protection of reconstructed bone until union are necessary.

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Guided Bone Regeneration using Fibrin Glue in Dehiscence or Fenestration Defects Occurred by Maxillary Anterior Implants: Case Report (상악 전치부 임플란트 식립에 의한 열개 및 천공형 골결손 발생 시 조직 접착제를 이용한 골유도 재생술: 증례보고)

  • Chee, Young-Deok;Seon, Hwa-Gyeong
    • Journal of Dental Rehabilitation and Applied Science
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    • v.28 no.3
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    • pp.277-290
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    • 2012
  • Dental implants are universal restorative method on edentulous site in oral cavity and generally recognized by patients as well as clinicians. Rapid bone resorption of labial portion of maxillary anterior area is performed due to dental trauma, chronic periodontitis, and so on. Accordingly, Implants on maxillary anterior alveolar ridge with narrow labiopalatal width would lead to bony defects of dehiscence or fenestration. In this case, guided bone regeneration procedure is used to augment maxillary anterior alveolar ridge. It can have mechanical and biological advantages to mix tissue adhesive with bone graft materials in guided bone regeneration procedure. In these cases, when the dehiscence or fenestration defects was occurred by dental implants on maxillary anterior alveolar ridge with narrow labiopalatal width, guided bone regeneration procedures were performed with various combination of particle bone graft materials(allograft, xenograft, and alloplast) mixed with fibrin glue, excepting autogerous bone. We reported that all of 4 cases showed favorable alveolar ridge augmentations.

Implant placement after guided bone regeneration (GBR) in severe defected mandibular alveolar ridge: case report (심하게 결손된 하악 치조골에서 골유도재생술(GBR) 후 임플란트의 식립: 증례보고)

  • Chee, Young-Deok;Yu, Tae-Hoon
    • Journal of Dental Rehabilitation and Applied Science
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    • v.30 no.2
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    • pp.184-191
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    • 2014
  • In the mandibular posterior molar area, ridge deficiency is an unfortunate obstacle in the field of implant dentistry. Many techniques are available to rebuild the deficient ridge. Selection and necessity of these techniques are associated with significant morbidity and often require a second surgical site. With the advent of guided bone regeneration (GBR), one may now graft the deficient ridge with decreased morbidity and without a second surgical site. In this case, guided bone regeneration procedures were performed with a combination of allograft, xenograft, and alloplast, excepting autogerous bone at severe defected mandibular alveolar ridge and then placed to the implant successfully. We report that implant placement were good in two cases.

THE EFFECT OF NEW BONE FORMATION OF ONLAY BONE GRAFT USING VARIOUS GRAFT MATERIALS WITH A TITANIUM CAP ON THE RABBIT CALVARIUM (가토의 두개골에서 티타늄 반구를 이용한 다양한 onlay bone graft시 골형성 능력)

  • Park, Young-Jun;Choi, Guen-Ho;Jang, Jung-Rok;Jung, Seung-Gon;Han, Man-Seung;Yu, Min-Gi;Kook, Min-Suk;Park, Hong-Ju;Ryu, Sun-Youl;Oh, Hee-Kyun
    • Maxillofacial Plastic and Reconstructive Surgery
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    • v.31 no.6
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    • pp.469-477
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    • 2009
  • Purpose: This study was performed to evaluate the effect of various graft materials used with a titanium cap on the ability of new bone formation in the rabbit calvarium. Materials and Methods: A total of 32 sites of artificial bony defects were prepared on the calvaria of sixteen rabbits by using a trephine bur 8 mm in diameter. Each rabbit had two defect sites. 0.2 mm deep grooves were formed on the calvaria of sixteen rabbits by using a trephine bur 8 mm in diameter for the fixation of a titanium cap. The treatments were performed respectively as follows: without any graft for the control group (n=8), autogenous iliac bone graft for experimental group 1 (n=8), alloplastic bone graft ($SynthoGraft^{(R)}$, USA) for experimental group 2 (n=8), and xenogenic bone graft ($NuOss^{(R)}$, USA) for experimental group 3 (n=8). After the treatments, a titanium cap (8 mm in diameter, 4 mm high, and 0.2 mm thick) was fixed into the groove. At the third and sixth postoperative weeks, rabbits in each group were sacrificed for histological analysis. Results: 1. In gross examination, the surgical sites showed no signs of inflammation or wound dehiscence, and semicircular-shaped bone remodeling was shown both in the experimental and control groups. 2. In histological analysis, the control group at the third week showed bone remodeling along the inner surface of the cap and at the contact region of the calvarium without any specific infiltration of inflammation tissue. Also, there was no soft tissue infiltration. Bone remodeling was observed around the grafted bone and along the inner surface of the titanium cap in experimental group 1, 2, and 3. 3. Histologically, all groups at the sixth week showed the increased area of bone remodeling and maturation compared to those at the third week. In experimental group 2, the grafted bone was partially absorbed by multi nucleated giant cells and new bone was formed by osteoblasts. In group 3, however, resorption of the grafted bone was not observed. 4. Autogenous bone at the third and sixth week showed the most powerful ability of new bone formation. The size of newly formed bone was in decreasing order by autogenous, alloplastic, and heterogenous bone graft. There was no statistically significant difference among autogenous, alloplastic, and heterogenous bones(p>0.05). Summary: This result suggests that autogenous bone is the best choice for new bone formation, but when autogenous bone graft is in limited availability, alloplastic and xenogenic bone graft also can be an alternative bone graft material to use with a suitably guided membrane.

The Use of Autogenous Periosteal Grafts for the Periodontal Regeneration in Mandibular Class II Furcation Defects in the Dog (성견의 2급 치근 분지부 결손에서 자가골막 이식에 의한 치주조직 재생)

  • Nam, Seung-Ji;Chung, Hyun-Ju;Kim, Young-Jun
    • Journal of Periodontal and Implant Science
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    • v.30 no.2
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    • pp.241-257
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    • 2000
  • Autogenous periosteal grafts are an attractive alternative to existing barrier membrane materials since they meet the reqiurements of an ideal material. But no histological data are available on the effectiveness of periosteal membranes in the treatment of periodontal defects. The purpose of this study was to evaluate effect of autogenous periosteal graft on periodontal regeneration histologically. Class II furcation defects were surgically created on the second, third and the fourth premolars bilaterally in the mandibules of six mongrel dogs. The experimental sites were divided into three groups according to the treatment modalities; control group - surgical debridement only; Group I- autogenous periosteal membrane placement after surgical debridement; Group II-autogenous periosteal membrane placement after surgical debridement and bone grafting. The animals were sacrificed at 2, 4 and 12 weeks after periodontal surgery and the decalcified and undecalcified specimens were prepared for histological and histometrical analysis. Clinically all treated groups healed without significant problems. Under light microscope, at 2 weeks, control group showed significant apical epithelial migration and bone remodelling only below the notch area. But for the group I, II with autogenous periosteal graft, less apical migration of epithelium appeared and large amount of osteoid tissue showed above the notch area. Grafted periosteal membrane was indiscernable at 4 weeks, so periosteal membrane might be organized to surrounding tissues. Histometrically, at 4 and 12 weeks, all the test and control groups didn't show significant change of epithelial zone but new attachment level tended to be gained in the test groups than control group. These results suggest that autogenous periosteal grafts should be a good alternative for guided tissue regeneration.

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Horizontal Ridge Augmentation using Ridge Expansion and Autogenous Tooth Bone Graft: A Case Report (치조능확장술과 자가치아골이식술을 이용한 치조능 수평증대술: 증례보고)

  • Kim, Young-Kyun;Yi, Yang-Jin
    • Journal of Dental Rehabilitation and Applied Science
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    • v.27 no.1
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    • pp.109-115
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    • 2011
  • Implants were placed after performing ridge expansion by inserting screws of gradually increasing thickness. Favorable clinical outcome was obtained. During surgery, buccal cortical plate fracture did not occur. Autogenous tooth bone graft material was grafted around the implant dehiscence defects and over the buccal cortical plate. The method involving the insertion of screws for ridge expansion is a successful and predictable technique for implant placement in narrow alveolar bone. Autogenous tooth bone graft material can be used for ridge augmentation and GBR.

Current Update of Cartilage Regeneration Using Stem Cells in Osteoarthritis (골관절염에서 줄기세포를 이용한 연골 재생의 최신 지견)

  • Seon, Jong-Keun;Choi, Ik-Sun;Ko, Jee-Wook
    • Journal of the Korean Orthopaedic Association
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    • v.54 no.6
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    • pp.478-489
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    • 2019
  • Osteoarthritis is a disease characterized by the progression of articular cartilage erosion, that increases pain during joint motion and reduces the ability to withstand mechanical stress, which in turn limits joint mobility and function. Damage to articular cartilage due to trauma or degenerative injury is considered a major cause of arthritis. Numerous studies and attempts have been made to regenerate articular cartilage. In the case of partial degenerative cartilage changes, microfracture and autologous chondrocyte implantation have been proposed as surgical treatment methods, but they have disadvantages such as insufficient mutual binding to the host cells, inaccurate cell delivery, and deterioration of healthy cartilage. Stem cell-based therapies have been developed to compensate for this. This review summarizes the drawbacks and consequences of various cartilage regeneration methods and describes the various attempts to treat cartilage damage. In addition, this review will discuss cartilage regeneration, particularly mesenchymal stem cell engineering-based therapies, and explore how to treat future cartilage regeneration using mesenchymal stem cells.

The effects of decalcification time of demineralized freeze-dried bone on the healing of 3-wall intrabony defects in dogs (탈회시간에 따른 탈회 냉동 건조골이식이 성견 3면 골내낭의 치유에 미치는 영향)

  • Kim, Chang-Sung;Cho, Kyoo-Sung;Kim, Chong-Kwan;Chai, Jung-Kiu
    • Journal of Periodontal and Implant Science
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    • v.26 no.4
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    • pp.779-797
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    • 1996
  • The present study investigated the effects of variations in decalcification time of demineralized freeze-dried bone on the osteogenic potential of DFDB. Sixteen 3-wall intrabony defects with 4mm depth were surgically created in the mesial aspect of upper and lower anterior teeth of 4 dogs. Following the flap procedure, three test groups with 4 defects each received either freeze-dried bone graft (Group I), demineralized freeze-dried bone graft decalcified for 12hours (Group II), or demineralized freeze-dried bone graft decalcified for 24hours(Group III). The rest of the four defects received the flap procedure-only as the control group. The healing was histologically analyzed after 14 weeks on the length of connective tissue adhesion, new bone formation and new cementum formation. The results were as follows: 1. The length of connective tissue adhesion showed no statistically significant difference in all groups with $0.62{\pm}0.14mm$ for Control, $0.42{\pm}0.11mm$ for Group I, $0.63{\pm}0.43mm$ for Group II and $0.52{\pm}0.11mm$ for Group III. 2. The new bone formation showed no statistically significant difference in all groups with $3.17{\pm}0.24mm$ for Control. $3.15{\pm}0.56mm$ for Group I. $3.22{\pm}0.36mm$ for Group II, and $3.28{\pm}0.74mm$ for Group III. 3. The new cementum formation showed no statistically significant difference in all groups with $4.19{\pm}0.46mm$ for Control, $3.23{\pm}0.64mm$ for Group I, $4.13{\pm}1.82mm$ for Group II. and $3.13{\pm}0.62mm$ for Group III.

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