• 제목/요약/키워드: Trabecular

검색결과 360건 처리시간 0.028초

Strain Rate Dependent Poroelastic Behavior of Bovine Vertebral Trabecular Bone

  • Hong, Jung-Hwa;Mum, Mu-Seong;Lim, Tae-Hong
    • Journal of Mechanical Science and Technology
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    • 제15권7호
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    • pp.1032-1040
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    • 2001
  • It is widely accepted that the pressure variation of interstitial fluid is one of the most important factors in bone physiology. In order to understand the role of interstitial fluid on porous bony structure, a consideration for the biomechanical interactions between fluid and solid constituents within bone is required. In this study, a poroelastic theory was applied to investigate the elastic behavior of calf vertebral trabecular bone composed of the porous solid trabeculae and the viscous bone marrow. The poroelastic behavior of trabecular bone in a uniaxial stress condition was simulated using a commercial finite difference analysis software (FLAC, Itasca Consulting Group, USA), and tested for 5 different strain rates, i.e., 0.001, 0.01, 0.1, and 10 per second. The material properties of the calf vertebral trabecular bone were utilized from the previous experimental study. Two asymptotic poroelastic responses, the drained and undrained deformations, were predicted. From the predicted results for the simulated five strain rates, it was found that the pore pressure generation has a linearly increasing behavior when the strain rate is the highest at 10 per second, otherwise it showed a nonlinear behavior. The pore pressure generation with respect to the strain was found to be increased as the strain rate increased. The elastic moduli predicted at each strain were 208.3, 212.2, 337.6, 593.1, and 602.2 MPa, respectively. Based on the results of the present study, it was suggested that the calf vertebral trabecular bone could be modeled as a poroelastic material and its strain rate dependent material behavior could be predicted.

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성견 치근이개부 병소에서 흡수성 차폐막의 치주조직재생에 미치는 영향에 대한 조직병리학적 연구 (A Histo-Pathological Study of Effect on Periodontal Regeneration with Bioabsorbable Membrane on The Grade II Furcation Defects in Beagle Dogs)

  • 김재광;임성빈;정진형;이종헌
    • Journal of Periodontal and Implant Science
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    • 제32권1호
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    • pp.161-172
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    • 2002
  • The present study evaluated the effects of guided tissue regeneration using xenograft material(deproteinated bovine bone powder), with and without biodegradable membrane in beagle dogs. Contralateral fenestration defects (6 ${\times}$ 4mm) were created 4 mm apical to the buccal alveolar crest of maxillary premolar teeth in 5 beagle dogs. Deproteinated bovine bone powders were implanted into fenestration defect and one randomly covered biodegradable membrane (experimental group). Biodegradable membrane was used to provide GTR. Tissue blocks including defects with soft tissues which were harvested following four & eight weeks healing interval, prepared for histo-phathologic analysis. The results of this study were as follows. 1. In control group, at 4 weeks after surgery, new bony trabecular contacted with interstitial tissue and osteocytes like cell were arranged in new bony trabecule. Bony lamellation was not observed. 2. In control gruop, at 8 weeks after surgery, scar-like interstitial tissue was filled defect and bony trabecule form lamellation. New bony trabecular was contacted with interstitial tissue but defect was not filled yet. 3. In experimental group, at 4 weeks after surgery, new bony trabecular partially recovered around damaged bone. But new bony trabecular was observed as irregularity and lower density. 4. In experimental group, at 8 weeks after surgery, lamella bone trabecular developed around bone cavity and damaged tissue was replaced with dense interstitial tissue. In conclusion, new bone formation regenerated more in experimental than control groups and there was seen observe more regular bony trabecular in experimental than control groups at 4 weeks after surgery. In control group, at 8 weeks after surgery, the defects was filled with scar-like interstitial tissue but, in experimental group, the defects was connected with new bone. Therefore xenograft material had osteoconduction but could not fill the defects. We thought that the effective regeneration of periodontal tissue, could be achieved using GTR with biodegradable membrane.

대퇴골두 해면골의 미세구조 특성과 기계적 특성의 분석 (Analysis of the Micro-Structural and Mechanical Properties in Human Femoral Head Trabecular Bone with and without Osteoporosis)

  • 원예연;백명현;최문권;전경진;김만경
    • 대한의용생체공학회:의공학회지
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    • 제25권6호
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    • pp.519-523
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    • 2004
  • 골다공증이 있는 대퇴골두 해면골과 골다공증이 없는 대퇴골두 해면골의 특성을 평가하고자 미세단층촬영기 및 유한요소모델을 이용하여 해면골을 미세구조 특성과 기계적 특성을 비교 및 분석하였다. 골다공증이 있는 대퇴골두는 골밀도를 측정하여 T-score 값이 -2.5 이상인 시편 15개를 사용했으며, 골다공증이 없는 대퇴골두는 사망전 골다공증으로 인한 병력이 없었던 사체 4구에서 대퇴골두 5개를 획득하여 사용하였다. 대퇴골두 해면골의 미세구조 특성을 분석하기 위해서 미세단층촬영기를 이용하여 골다공증이 있는 대퇴골두와 골다공증이 없는 대퇴골두를 촬영하여 형태학적 지수(histomorphometry index)를 구했고, 미세단층촬영기에 의해서 획득된 미세영상(pixel size=21.31㎛)을 바탕으로 유한요소모델을 재건하여 기계적 특성을 구하였다. 형태학적지수는 골다공증이 없는 대퇴골두가 골다공증이 있는 대퇴골두에 비해서 골소주 두께, 골 체적, 골 체적비, 이방성 정도 그리고 골소주 개수가 증가했으며, 골소주 간격과 구조모델지수는 감소했다. 기계적특성 지수는 골다공증이 없는 대퇴골두 해면골 시편에서 반력, 표면응력 그리고 영률이 높게 분석되었다. 골다공증이 있는 대퇴골두 해면골 시편에서 미세구조 특성이 퇴화되며, 기계적 특성이 감소된다는 사실을 알수 있었다.

해면질골 팬텀으로서 개포된 구조를 갖는 구리폼 및 니켈폼에서 구조적 특성에 대한 군속도 및 감쇠계수의 의존성 (Dependencies of Group Velocity and Attenuation Coefficient on Structural Properties in Copper and Nickel Foams with an Open-Celled Structure as Trabecular-Bone-Mimicking Phantoms)

  • 김성일;이강일
    • 한국음향학회지
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    • 제30권3호
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    • pp.158-166
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    • 2011
  • 본 연구에서는 해면질골에서 해면소주 두께 (Tb.Th) 및 해면소주 간격 (Tb.Sp)과 같은 구조적 특성에 대한 군속도 및 감쇠계수의 의존성을 살펴보기 위하여 해면질골 팬텀으로서 개포된 구조를 갖는 8개의 구리폼 및 니켈폼이 이용되었다. 구리폼 및 니켈폼의 군속도 및 감쇠계수는 12.7 mm의 직경 및 1.0 MHz의 중심 주파수를 갖는 한 쌍의 광대역, 비집속형 초음파 변환기와 함께 수중에서 투과법을 이용하여 측정되었다. 구리폼 및 니켈폼을 투과한 초음파 신호에서 Biot의 fast wave 및 slow wave가 분리되어 나타나는 것을 관찰할 수 있었다. 구리폼 및 니켈폼의 군속도는 Tb.Th 및 Tb.Sp와 모두 높은 양의 상관관계를 나타냈다. 구리폼의 감쇠계수는 Tb.Th 및 Tb.Sp와 높은 음의 상관관계를 나타내는 반면에 니켈폼의 감쇠계수는 Tb.Th 및 Tb.Sp와 높은 양의 상관관계를 나타냈다. 이와 같은 결과는 해면질골 샘플 또는 팬텀을 이용한 다른 연구자들에 의하여 보고된 결과를 이해하는데 도움이 된다.

Differential effects of type 1 diabetes mellitus and subsequent osteoblastic β-catenin activation on trabecular and cortical bone in a mouse mode

  • Chen, Sixu;Liu, Daocheng;He, Sihao;Yang, Lei;Bao, Quanwei;Qin, Hao;Liu, Huayu;Zhao, Yufeng;Zong, Zhaowen
    • Experimental and Molecular Medicine
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    • 제50권12호
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    • pp.3.1-3.14
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    • 2018
  • Type 1 diabetes mellitus (T1DM) is a pathological condition associated with osteopenia. $WNT/{\beta}$-catenin signaling is implicated in this process. Trabecular and cortical bone respond differently to $WNT/{\beta}$-catenin signaling in healthy mice. We investigated whether this signaling has different effects on trabecular and cortical bone in T1DM. We first established a streptozotocin-induced T1DM mouse model and then constitutively activated ${\beta}$-catenin in osteoblasts in the setting of T1DM (T1-CA). The extent of bone loss was greater in trabecular bone than that in cortical bone in T1DM mice, and this difference was consistent with the reduction in the expression of ${\beta}$-catenin signaling in the two bone compartments. Further experiments demonstrated that in T1DM mice, trabecular bone showed lower levels of insulin-like growth factor-1 receptor (IGF-1R) than the levels in cortical bone, leading to lower $WNT/{\beta}$-catenin signaling activity through the inhibition of the IGF-1R/Akt/glycogen synthase kinase $3{\beta}$ ($GSK3{\beta}$) pathway. After ${\beta}$-catenin was activated in T1-CA mice, the bone mass and bone strength increased to substantially greater extents in trabecular bone than those in cortical bone. In addition, the cortical bone of the T1-CA mice displayed an unexpected increase in bone porosity, with increased bone resorption. The downregulated expression of WNT16 might be responsible for these cortical bone changes. In conclusion, we found that although the activation of $WNT/{\beta}$-catenin signaling increased the trabecular bone mass and bone strength in T1DM mice, it also increased the cortical bone porosity, impairing the bone strength. These findings should be considered in the future treatment of T1DM-related osteopenia.

가미소요산(加味逍遙散)이 난소적출로 유발된 흰 쥐의 골다공증에 미치는 영향 (A Study on the Effects of Gamisoyosan on Ovariectomized Osteoporosis in Rats)

  • 박찬수;손영주
    • 대한한방부인과학회지
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    • 제21권1호
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    • pp.1-15
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    • 2008
  • Purpose: Osteoporosis that occurred after menopause is one of the most common metabolic disease. and it is that bone mass significant decrease in comparison with normal people. Its symptoms are fracture, decrease of height, etc. The purpose of this study is to examine what are the effects of the Gamisoyosan on the aged ovariectomized rat model of postmenopausal osteoporosis. Methods: 24 female rats were ovariectomized and divided into normal group(normal), ovariectomized group(control), and treated with Gamisoyosan group(treated). During 8 weeks we dosed D.W to sham and control group, and dosed Gamisoyosan(105 mg/100 g) to experimental group. After 8 weeks we sacrificed rats and measured the body weight, albumin, P, Calcium, ALP, total cholesterol, triglyceride, AST, ALT, T4, estradiol, the femur weight, the tibia ash weight, trabecular bone area, trabecular thickness, osteoclast number. Results: The level of serum albumin, calcium, AST, ALT, estradiol in Gamisoyosan group showed significant increase in comparison with control group. The level of serum triglyceride in Gamisoyosan group showed significant decrease in comparison with control group. Trabecular bone area and osteoclast number in Gamisoyosan group showed significant increase in comparison with control group. Conclusions: Reviewing these experimental results, Gamisoyosan has shown to activate osteogenesis and prevent bone resorption, and it should show efficacy on prevention and improvement of osteoporosis after menopause.

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Zoom-in X-ray Micro Tomography System

  • Chun, In-Kon;Lee, Sang-Chul;Park, Jeong-Jin;Cho, Min-Hyoung;Lee, Soo-Yeol
    • 대한의용생체공학회:의공학회지
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    • 제26권5호
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    • pp.295-300
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    • 2005
  • We introduce an x-ray micro tomography system capable of high resolution imaging of a local region inside a small animal. By combining two kinds of projection data, one from a full field-of-view (FOV) scan of the whole body and the other from a limited FOV scan of the region of interest, we have obtained zoomed-in images of the region of interest without any contrast a nomalies. We have integrated a micro tomography system using a micro-focus x-ray source, a $1248\times1248$ flat-panel x-ray detector, and a precision scan mechanism. Using the cross-sectional images taken with the zoom-in micro tomography system, we measured trabecular thicknesses of femur bones in postmortem rats. To compensate the limited spatial resolution in the zoom-in micro tomography images, we used the fuzzy distance transform for the calculation of the trabecular thickness. To validate the trabecular thickness measurement with the zoom-in micro tomography images, we compared the measurement results with the ones obtained from the conventional micro tomography images of the extracted bone samples.

유체상과 변형율속도를 고려한 해면골의 거동해석 (Behavior of trabecular bone considered by fluid phase and strain rate)

  • 민성기;홍정화;문무성;이진희
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2002년도 추계학술대회 논문집
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    • pp.1078-1080
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    • 2002
  • The pressure variation of interstitial fluid is one of the most important factors in bone physiology. In order to understand the role of interstitial fluid and the biomechanical interactions between fluid and solid constituents within bone, poroelastic theory was applied. The purpose of this study is to describe the behavior of calf vertebral trabecular bone composed of the porous solid trabeculae and the viscous bone marrow by using a commercial finite element analysis program based on the poroelasticity. In this study, the model was numerically tested for 5 different strain rates, i. e., 0.001, 0.01, 0.1, 1.0, and 10 per second. The material properties of the calf vertebral trabecular bone were utilized from the previous experimental study. Two asymptotic poroelastic response, the drained and undrained deformation, were predicted. From the predicted results for the simulated five strain rate, it was found that the pore pressure generation has a linearly increasing behavior when the strain rate is the highest at 10 per second, other wise it showed a nonlinear the strain rate Increased. Based on the results of the present study, it was suggested that the calf vertebral trabecular bone could be modeled as a porous material and its strain rate dependent material behavior could be predicted.

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