• Title/Summary/Keyword: Bone support

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Functionality of Dairy Foods on Osteoporosis

  • Moon, Yong-Il;Lee, Sunho;Oh, Sangnam;Kim, Younghoon
    • Journal of Dairy Science and Biotechnology
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    • v.34 no.3
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    • pp.157-164
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    • 2016
  • Osteoporosis is a systemic skeletal disease characterized by decreased bone mass, which results in a markedly increased risk of traumatic fractures. This disease is a worldwide health problem with a high prevalence. Recently, various dietary components have been found to minimize the risk of developing osteoporosis through their ability to stimulate bone formation and optimize bone health. Among them, probiotics and fermented milk can have beneficial effects to human health. Bioactive compounds derived from probiotics in fermented milk can especially modulate physiological functions related to bone health. Here, we review the evidence to support these insights into newly found functionality of dairy foods for osteoporosis prevention.

The Usefulness of Costochondral Cantilever Graft for Correction of Saddle Nose (안비 변형의 교정에 있어 늑골늑연골 외팔보이식의 유용성)

  • Seo, Sang Woo;Yoo, Won Min
    • Archives of Plastic Surgery
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    • v.33 no.4
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    • pp.458-464
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    • 2006
  • Purpose: Saddle nose deformity results from lack of support to the nasal dorsum. The integrity of both the cartilaginous or bony portion of the nose is compromised. Cantilever bone graft is the mainstay for correction of saddle nose deformity, but the problems of bone graft are stiffness of the nasal tip and resorption. Thus the authors propose a costochondral cantilever graft, with the bony and cartilaginous portion harvested as one block, using cartilaginous portion as support to the nasal tip. Methods: Between October of 1996 and July of 2005, 8 cases of saddle nose deformity were treated by the same surgeon. All patients had undergone costochondral cantilever graft. Postoperative evaluation included the depression of the nasal dorsum and tip. Comparisons of preoperative and postoperative photographs was done if possible. Results: The mean follow-up period was 5.9 years. The results were excellent aesthetically and there was no complication. Conclusion: The authors' method maximize the benefits of each bone and cartilage graft while minimizing their inherent limitations.

CANINE ERUPTION THROUGH BIO-$OSS^{(R)}$ GRAFT IN PATIENTS WITH CLEFT LIP & PALATE (구순구개열 환자에서의 이종골 이식재를 통한 견치의 맹출)

  • Kim, Ji-Hun;Choi, Byung-Ho;Chang, Che-Rry
    • The Journal of Korea Assosiation for Disability and Oral Health
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    • v.6 no.2
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    • pp.105-111
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    • 2010
  • Objective : To report eruption of maxillary canine through Bio-$Oss^{(R)}$ graft in patients with secondary bone-grafted alveolar clefts. Methods : Secondary alveolar bone grafts placed in the cleft alveolar defect have been shown to support dental eruption through the graft and may further affect the prevalence of impacted teeth. As the case may be, it could be difficult to do secondary alveolar bone graft with autologous bone. In particular, few reports have been shown the secondary bone graft with heterogenous bone(Bio-$Oss^{(R)}$). In this report, the eruption of canine into bone-grafted alveolar clefts was recorded as panoramic, occlusal radiographs, in 3 patients grafted with Bio-$Oss^{(R)}$ Results : Like autologous bone graft, the canine was erupted and developed into the cleft alveolar defect through Bio-$Oss^{(R)}$ graft. Conclusion : In some cases that autologous bone graft is not available, we can consider heterogenous bone graft into the cleft alveolar defect for dental development and eruption of impacted teeth.

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Preliminary evaluation of a three-dimensional, customized, and preformed titanium mesh in peri-implant alveolar bone regeneration

  • Jung, Gyu-Un;Jeon, Jae-Yun;Hwang, Kyung-Gyun;Park, Chang-Joo
    • Journal of the Korean Association of Oral and Maxillofacial Surgeons
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    • v.40 no.4
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    • pp.181-187
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    • 2014
  • Objectives: The purpose of this preliminary study is to evaluate the effectiveness of a customized, three-dimensional, preformed titanium mesh as a barrier membrane for peri-implant alveolar bone regeneration. Materials and Methods: Ten patients were recruited for this study. At the time of implant placement, all patients had fenestration or a dehiscence defect around the implant fixture. A mixture of particulate intraoral autologous bone and freeze-dried bone allograft was applied to the defect in a 1 : 1 volume ratio and covered by the preformed titanium mesh. A core biopsy specimen was taken from the regenerated bone four months postoperatively. Patients were followed for 12 months after the definitive prosthesis was placed. Results: Satisfactory bone regeneration with limited fibrous tissue was detected beneath the preformed titanium mesh. Histologic findings revealed that newly formed bones were well-incorporated into the allografts and connective tissue. New growth was composed of approximately 80% vital bone, 5% fibrous marrow tissue, and 15% remaining allograft. All implants were functional without any significant complications. Conclusion: The use of preformed titanium mesh may support bone regeneration by maintaining space for new bone growth through its macro-pores. This preliminary study presents the efficacy of a preformed titanium mesh as a ready-to-use barrier membrane around peri-implant alveolar bone defect. This preformed mesh is also convenient to apply and to remove.

The Effect of Dietary Calcium Level on Biochemical Variables of Bone Metabolism in Ovariectomized Female Rats (식이 칼슘량이 난소 절제한 흰쥐에서 골대사 지료에 미치는 영향)

  • 최미자
    • Journal of the East Asian Society of Dietary Life
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    • v.6 no.3
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    • pp.295-305
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    • 1996
  • This study was done to evaluate the effectiveness of dietary calcium level(a diet which met 100% or twice the calcium level in AIN-76 diet) on preventing bone loss in ovariectomized rats. Forty female Sprauge-Dawley rats(body weight 200$\pm$5g) were divided into two groups. One group were ovariectomized(Ovx) while the others received sham operation(Sham). Thereafter, each rat group was further divided into normal calcium diet(NCD, 0.52%) and high calcium diet(HCD, 1.04%) sub-groups. All rats were fed on experimental diet and deionized water ad libitum for 8 weeks. Urinary pyridinoline & creatinine and serum estradiol, luteinizing hormone, calcium, phosphate, total protein, albumin, alkaline phosphatase and osteocalcin were determined. There were no significant differences in serum calcium. total protein and albumin in the two groups(Ovx vs Sham) of rats. Ovariectomized rats had significantly lower estradiol than sham operated rats. There was a highly significant correlation between total bone mineral density(TBMD) and overall level of esteradiol(r=0.59, p<0.05). Total bone mineral density did not correlate significantly with ALP or osteocalcin, although a negative trend was evident. However, the rats fed high calcium diet had a lower crosslinks value and osteocalcine than the rats fed normal calcium diet. An increased rate of bone turnover is usually associated with a decrease in bone mass bexause bone formation at each remodeling site is never as great as resorption. Ovariectomized rats fed high calcium diet had a lower crosslink value and osteocalcin; it means high cacium diet decreased bone turnover rate. The findings from the present study demonstrated that bone loss due to ovarian hormonal deficiency can be partially prevented by a high calcium diet. Futhermore, these findings support the strategy of the use of a high calcium diet in the prevention of estrogen depletion bone loss (postmenopausal osteoporosis).

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A Bone Age Assessment Method Based on Normalized Shape Model (정규화된 형상 모델을 이용한 뼈 나이 측정 방법)

  • Yoo, Ju-Woan;Lee, Jong-Min;Kim, Whoi-Yul
    • Journal of Korea Multimedia Society
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    • v.12 no.3
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    • pp.383-396
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    • 2009
  • Bone age assessment has been widely used in pediatrics to identify endocrine problems of children. Since the number of trained doctors is far less than the demands, there has been numerous requests for automatic estimation of bone age. Therefore, in this paper, we propose an automatic bone age assessment method that utilizes pattern classification techniques. The proposed method consists of three modules; a finger segmentation module, a normalized shape model generation module and a bone age estimation module. The finger segmentation module segments fingers and epiphyseal regions by means of various image processing algorithms. The shape model abstraction module employ ASM to improves the accuracy of feature extraction for bone age estimation. In addition, SVM is used for estimation of bone age. Features for the estimation include the length of bone and the ratios of bone length. We evaluated the performance of the proposed method through statistical analysis by comparing the bone age assessment results by clinical experts and the proposed automatic method. Through the experimental results, the mean error of the assessment was 0.679 year, which was better than the average error acceptable in clinical practice.

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Case Reports of Bone Grafting in Unilateral Alveolar-palatal Cleft Patients (편측성 치조. 구개 파열 환자에서 골 이식술의 치험레)

  • Bae, Yun-Ho;Park, Jae-Hyun;Lee, Myeong-Jin;Lee, Chang-Gon;Chin, Byung-Rho;Lee, Hee-Kyeung
    • Journal of Yeungnam Medical Science
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    • v.8 no.1
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    • pp.198-205
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    • 1991
  • We obtained successful functional and esthetic results by grafting of iliac marrow-cancellous bone in 2 cases of alveolar-palatal cleft patients. Bone graft of alveolar-palatal clefts provide bony support to adjacent teeth of cleft area, prevented from relapse of orthodontic arch expansion, closure of oroantral fistula and improvement of speech problem. 1. In one case, extraction of upper right central incisor that was little bone support, alignment of rotated teeth and expansion of collapsed arch segment were done with pre-ortodontic treatment. The other case, Bone grafting was done after removal of prosthesis with no preorthodontic treatment. 2. After mucoperiosteal incision in cleft area. The mucosal flap of labial area, palate and nose were separation and the raised nasal mucosa was sutured for closure of oroantral fistula. Then, the iliac marrow-cancellous bones were grafted to cleft site. 3. After 6 months of operation, we had seen the new bone deposition to cleft site in dental radiography and prosthetic treatments of missing teeth were done.

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Delayed Reduction of Nasal Bone Fractures

  • Yoon, Han Young;Han, Dong Gil
    • Archives of Craniofacial Surgery
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    • v.17 no.2
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    • pp.51-55
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    • 2016
  • Background: Nasal bone fractures are managed by closed reduction within the 2-week period, and are managed by secondary correction after this time. There is little literature on the delayed reduction for nasal bone fractures beyond the 2-week duration. We report our experience with nasal fractures, which were reduced beyond this period. Methods: A retrospective review was performed for all patients who had undergone closed reduction of isolated nasal bone fracture. Patients were included for having undergone reduction of nasal bone fractures at or more than 2 weeks after the injury. Medical records were reviewed for demographic information, injury mechanism, fracture type, delay in treatment, and cause for delay. Postoperative outcomes were evaluated using computed tomography images. Results: The review identified 10 patients. The average reduction time was 22.1 days. Five of patients underwent reduction between days 15 and 20, and the remaining five patients underwent reduction between days 21 and 41. The postoperative outcomes were excellent in 8 patients and good in 2 patients. Conclusion: Outcomes were superior for nasal fractures with displaced end plates and multiple fracture segments. Our study results appears to support delayed reduction of isolated nasal fractures in the presence of factors that delay bony reunion.

Nostril Base Augmentation Effect of Alveolar Bone Graft

  • Lee, Woojin;Park, Hyung Joon;Choi, Hyun Gon;Shin, Dong Hyeok;Uhm, Ki Il
    • Archives of Plastic Surgery
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    • v.40 no.5
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    • pp.542-545
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    • 2013
  • Background The aims of alveolar bone grafting are closure of the fistula, stabilization of the maxillary arch, support for the roots of the teeth adjacent to the cleft on each side. We observed nostril base augmentation in patients with alveolar clefts after alveolar bone grafting. The purpose of this study was to evaluate the nostril base augmentation effect of secondary alveolar bone grafting in patients with unilateral alveolar cleft. Methods Records of 15 children with alveolar clefts who underwent secondary alveolar bone grafting with autogenous iliac cancellous bone between March of 2011 and May of 2012 were reviewed. Preoperative and postoperative worm's-eye view photographs and reconstructed three-dimensional computed tomography (CT) scans were used for photogrammetry. The depression of the nostril base and thickness of the philtrum on the cleft side were measured in comparison to the normal side. The depression of the cleft side pyriform aperture was measured in comparison to the normal side on reconstructed three-dimensional CT. Results Significant changes were seen in the nostril base (P=0.005), the philtrum length (P=0.013), and the angle (P=0.006). The CT measurements showed significant changes in the pyriform aperture (P<0.001) and the angle (P<0.001). Conclusions An alveolar bone graft not only fills the gap in the alveolar process but also augments the nostril base after surgery. In this study, only an alveolar bone graft was performed to prevent bias from other procedures. Nostril base augmentation can be achieved by performing alveolar bone grafts in children, in whom invasive methods are not advised.

Growth Factor Releasing Porous Poly (${\varepsilon}-caprolactone$)-Chitosan Matrices for Enhanced Bone Regenerative Therapy

  • Im, Su-Yeon;Cho, Seon-Hye;Hwang, Jeong-Hyo;Lee, Seung-Jin
    • Archives of Pharmacal Research
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    • v.26 no.1
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    • pp.76-82
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    • 2003
  • Drug releasing porous poly($\varepsilon$-caprolactone) (PCL)-chitosan matrices were fabricated for bone regenerative therapy. Porous matrices made of biodegradable polymers have been playing a crucial role as bone substitutes and as tissue-engineered scaffolds in bone regenerative therapy. The matrices provided mechanical support for the developing tissue and enhanced tissue formation by releasing active agent in controlled manner. Chitosan was employed to enhance hydrophilicity and biocompatibility of the PCL matrices. PDGF-BB was incorporated into PCL-chitosan matrices to induce enhanced bone regeneration efficacy. PCL-chitosan matrices retained a porous structure with a 100-200 $\mu$m pore diameter that was suitable for cellular migration and osteoid ingrowth. $NaHCO_3$ as a porogen was incorporated 5% ratio to polymer weight to form highly porous scaffolds. PDGF-BB was released from PCL-chitosan matrices maintaining therapeutic concentration for 4 week. High osteoblasts attachment level and proliferation was observed from PCL-chitosan matrices. Scanning electron microscopic examination indicated that cultured osteoblasts showed round form and spread pseudopods after 1 day and showed broad cytoplasmic extension after 14 days. PCL-chitosan matrices promoted bone regeneration and PDGF-BB loaded matrices obtained enhanced bone formation in rat calvarial defect. These results suggested that the PDGF-BB releasing PCL-chitosan porous matrices may be potentially used as tissue engineering scaffolds or bone substitutes with high bone regenerative efficacy.