• 제목/요약/키워드: Cartilage, elastic

검색결과 19건 처리시간 0.192초

Dynamic Quasi-Elastic Light Scattering Measurement of Biological Tissue

  • Youn, Jong-In;Lim, Do-Hyung
    • 대한의용생체공학회:의공학회지
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    • 제28권2호
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    • pp.169-173
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    • 2007
  • During laser irradiation, mechanically deformed cartilage undergoes a temperature dependent phase transformation resulting in accelerated stress relaxation. Clinically, laser-assisted cartilage reshaping may be used to recreate the underlying cartilaginous framework in structures such as ear, larynx, trachea, and nose. Therefore, research and identification of the biophysical transformations in cartilage accompanying laser heating are valuable to identify critical laser dosimetry and phase transformation of cartilage for many clinical applications. quasi-elastic light scattering was investigated using Ho : YAG laser $(\lambda=2.12{\mu}m\;;\;t_p\sim450{\mu}s)$ and Nd:YAG Laser $(\lambda=1.32{\mu}m\;;\;t_p\sim700{\mu}s)$ for heating sources and He : Ne $(\lambda=632.8nm)$ laser, high-power diode pumped laser $(\lambda=532nm)$, and Ti : $Al_2O_3$ femtosecond laser $(\lambda=850nm)$ for light scattering sources. A spectrometer and infrared radiometric sensor were used to monitor the backscattered light spectrum and transient temperature changes from cartilage following laser irradiation. Analysis of the optical, thermal, and quasi-elastic light scattering properties may indicate internal dynamics of proteoglycan movement within the cartilage framework during laser irradiation.

Does periosteum promote chondrogenesis? A comparison of free periosteal and perichondrial grafts in the regeneration of ear cartilage

  • Yoo, Hyokyung;Yoon, Taekeun;Bae, Hahn-Sol;Kang, Min-Suk;Kim, Byung Jun
    • 대한두개안면성형외과학회지
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    • 제22권5호
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    • pp.260-267
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    • 2021
  • Background: Elastic ear cartilage is a good source of tissue for support or augmentation in plastic and reconstructive surgery. However, the amount of ear cartilage is limited and excessive use of cartilage can cause deformation of the auricular framework. This animal study investigated the potential of periosteal chondrogenesis in an ear cartilage defect model. Methods: Twelve New Zealand white rabbits were used in the present study. Four ear cartilage defects were created in both ears of each rabbit, between the central artery and marginal veins. The defects were covered with perichondrium (group 1), periosteum taken from the calvarium (group 2), or periosteum taken from the tibia (group 3). No coverage was performed in a control group (group 4). All animals were sacrificed 6 weeks later, and the ratio of neo-cartilage to defect size was measured. Results: Significant chondrogenesis occurred only in group 1 (cartilage regeneration ratio: mean±standard deviation, 0.97±0.60), whereas the cartilage regeneration ratio was substantially lower in group 2 (0.10±0.11), group 3 (0.08±0.09), and group 4 (0.08±0.14) (p= 0.004). Instead of chondrogenesis, osteogenesis was observed in the periosteal graft groups. No statistically significant differences were found in the amount of osteogenesis or chondrogenesis between groups 2 and 3. Group 4 showed fibrous tissue accumulation in the defect area. Conclusion: Periosteal grafts showed weak chondrogenic potential in an ear cartilage defect model of rabbits; instead, they exhibited osteogenesis, irrespective of their embryological origin.

TIME-DEPENDENT FRACTURE OF ARTICULAR CARTILAGE: PART 1 - THEORY & VALIDATION

  • 문무성
    • 대한의용생체공학회:학술대회논문집
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    • 대한의용생체공학회 1995년도 춘계학술대회
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    • pp.27-33
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    • 1995
  • A time-dependent large deformation fracture theory is developed for application to soft biological tissues. The theory uses the quasilinear viscoelastic theory of Fung, and particularizes it to constitutive assumptions on polyvinyl-chloride (PVC) (Part I) and cartilage (Part II). This constitutive theory is used in a general viscoelastic theory by Christensen and Naghdi and an energy balance to develop an expression for the fracture toughness of the materials. Experimental methods are developed for measuring the required constitutive parameters and fracture data for the materials. Elastic stress and reduced relaxation functions were determined using tensile and shear tests at high loading rates with rise times of 25-30 msec, and test times of 150 sec. The developed method was validated, using an engineering material, PVC to separate the error in the testing method from the inherent variation of the biological tissues. It was found that the the proposed constitutive modeling can predict the nonlinear stress-strain and the time-dependent behavior of the material. As an approximation method, a pseudo-elastic theory using the J-integral concept, assuming that the material is a time-independent large deformation elastic material, was also developed and compared with the time-dependent fracture theory. For PVC. the predicted fracture toughness is $1.2{\pm}0.41$ and $1.5{\pm}0.23\;kN/m$ for the time-dependent theory and the pseudo-elastic theory, respectively. The methods should be of value in quantifying fracture properties of soft biological tissues. In Part II, an application of the developed method to a biological soft tissue was made by using bovine humeral articular cartilage.

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가토 대퇴골에 이식한 자가 이연골에 관한 조직학적 연구 (HISTOLOGIC STUDY OF THE AUTOGENOUS AURICULAR CARTILAGE GRAFTS IN THE RABBITS FEMER)

  • 성길현;김은철;민승기;이동근;김수남
    • Maxillofacial Plastic and Reconstructive Surgery
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    • 제15권1호
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    • pp.49-61
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    • 1993
  • The transplantation of cartilage, especially auricular cartilage, has assumed a role of importance in the field of plastic and reconstructive surgery. From long years ago, many reports have appeared in the literature describing the experimental and clinical results of the use of cartilage. At present, the evidence for survival of autograft of cartilage is admitted, But, the results for interrelationship between the bone and cartilage grafts with or without perichondrium is not so conclusive. The purpose of this study were observed as to whether autogenous cartilage grafts were fixed by means of tie with 4-0 vicryl and fibrin adhesive on the femur or microscopic findings of union state in 16 rabbits. We sacrified the experimental animals after 1, 2, 4, 6 weeks postoperatively and made the specimens as a routine laboratory procedures and stained with Hematoxylin-Eosin stain, Verhoeff-van Gieson elastic fiber stain, and alcian blue periodic acid-Schiff(AB-PAS) for mucopolysaccharide. Histologic evaluation was performed under microscope. The obtaind results were as follows : 1. Fibrous union was formed between the grafting cartilage and the femur, nor any findings of calcification and formation of new bone. 2. Partial fibrous adhesion was observed in fibrin adhesive groups on 6 weeks postoperatively. 3. Appositional growth has performed more in fibrin adhesive groups than tie groups. 4. There are little difference in both for new copillary proliferation and fibroblast activations. 5. Degenerative changes have apperared more in tie groups than adhesive groups, but not related to the healing periods.

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PLGA 종류와 담체의 형성 방법에 따른 인간의 조직공학적 연골형성 (Tissue Engineered Cartilage Formation on Various PLGA Scaffolds)

  • 김유미;임종옥;정호윤;박태인;백운이
    • 대한의용생체공학회:의공학회지
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    • 제23권2호
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    • pp.147-153
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    • 2002
  • 본 연구에서는 관상의 Poly(lactic-co-glycolic acid) (PLGA) 담체에 대한 인간의 초자연골과 탄성연골의 형성정도를 살펴보았다. 담체는 PLGA의 분자량에 따라서는 110,000 g/mol과 220,000 g/mol을 비교하였고 내경 유지를 위하여 내경측에는 220,000 g/mol, 외경측에는 110,000 g/mol 의 복합체를 만들거나, 비분해성 고분자 폴리에틸렌 튜브와 110,000 g/mol PLGA의 담체와의 결합도 시도하였다. PLGA 담체들은 주사전자현미경으로 단면 구조를 관찰하였다. 각각의 담체에 20세 미만의 환자들의 비중격에서 채취된 초자연골과 귀에서 채취된 탄성연골에서 분리한 연골세포를 심었다. 분리된 연골세포는 두 번의 계대배양을 거쳐 각각의 PLGA 담체에 심었고 일주일동안 생체 외 환경에서 배양하였다. 각각의 세포와 담체의 복합체를 nude mouse의 배부 좌, 우로 피하조직에 이식하고 8주 뒤 H&E 염색으로 조직 검사를 시행하였다. 110,000 g/mol의 PLGA담체의 연골조직은 잘 형성되어 있었지만 그 내경은 유지되지 못하였다. 반면 220,000 g/mol의 PLGA담체의 연골조직은 내경은 유지하였으나 연골조직이 부분적으로 형성되어 있고 성숙한 연골조직의 양이 많지 않았다. 초자연골 세포에 비교하여 탄성연골 세포가 같은 조건하에서 연골조직을 더 많이 형성한 것으로 나타났다. 관상의 유지를 위하여 220,000 9/mol PLGA 담체를 내경측에 110,000 g/mol PLGA 담체를 외경측으로 한 담체에서는 연골조직 형성이 잘 되지 않았으나 내경측에 폴리에틸렌 튜브를 끼운 110,000 g/mol PLGA 담체에서는 조직 형성과 내경유지가 잘 되었고 원래의 담체와 거의 유사한 형태로 유지되었다. 분화된 연골세포도 조직 소견으로 확인할 수 있었다. 이 1mm 내경의 관상 연골조직은 인공 기관지나 식도 등을 위한 동물 실험과 인공 합성 튜브의 대체 등 앞으로 많은 응용분야가 기대된다.

귀 연골조직에서 발생한 부분적 골화 (A Case Report of Focal Ossification of the Auricular Cartilage)

  • 서현우;김효성;하기영;한은미;김부영
    • 대한두개안면성형외과학회지
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    • 제12권1호
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    • pp.58-62
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    • 2011
  • Purpose: The focal ossification of auricular cartilage is an unusual clinical entity in which the ear becomes partially or totally rigid and immalleable. This condition may result from cold injury, local trauma, inflammation, or various systemic diseases. Patients may feel mild discomfort, but there are usually no other serious symptoms. We present a case of focal ossification of auricular cartilage in which the cause is unknown. Methods: A healthy 58-year-old man presented with a 2-year history of hard mass of right posterior auricular area. He denied any precipitating historical events like cold injury and inflammation. Routine testing did not demonstrate systemic abnormalities. Ultrasonographic examination revealed a $22{\times}10{\times}11mm$ sized heterogenous isoechoic mass showing an acoustic shadow. Results: Excisional biopsy was performed under local anesthesia. Histological examination revealed the ossification with deposition of trabecular bone in normal elastic cartilage. The patient was healed without any problems and satisfied with the result. Conclusion: We report clinical experience of focal ossification of auricular cartilage, which is quite a rare clinical entity. It should be considered that there is the possibility of ossification of cartilage when it meets the benign mass of the ear.

연골세포의 기계적 물성치 측정 (Measurement of Biomechanical Property of Chondrocyte)

  • 이권용;;박상국;김병수;박종철
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2002년도 춘계학술대회 논문집
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    • pp.154-157
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    • 2002
  • A cyto-indentation technique was used to obtain the biomechanical compressive compliance property of an chondrocyte cell attached to glass surface, which was tried to generate joint cartilage by tissue engineering. Piezo-transducer system and dual photo-diode system were used to conduct mechanical indentation through displacement-controlled testing and the measurement of corresponding cell reaction force. The Poisson's ratio of 0.37 was quoted from other report. The compressive compliance of chondrocyte, that was determined by elastic contact theory, was 1.38${\pm}$0.057 kPa. This value is 30% higher than that of MG63 osteoblast-like cell. The cyto-indentation technique employed in this study is so precise that it can quantify the biomechanical property of single cell.

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중령에 따른 측두하악관절내 탄력섬유의 분포에 관한 연구 (A Histological Study on Age Changes of the Elastic Fibers of Temporomandibular Joint in Icr Mouse)

  • Jin-Pyo Lee;Jung-Pyo Hong
    • Journal of Oral Medicine and Pain
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    • 제19권1호
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    • pp.125-136
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    • 1994
  • Observation of elastic fiber's change of mouse TMJ due to several round factor, principally external stimulations, their influence on the TMJ structure's change and the analize of the consecutive evolution of the disease in most important. So, the author believe that the factor of TMJ feature is the elastic feature's change and it's the principal factor of the TMJ disease. For observation of the increase and disposition of elastic fiber that to regulate the elastic feature of tissue and allow it existence. For this propose, observation with histologic methods on 20mouse ICR of 3 days, 1 week, 2 weeks, 3 weeks and 4 weeks. The results were as follow : 1. In the early stage, the condyle of TMJ is originated from cartilage mass, and it's calcification is endochondral. 2. In the early stage, the disc is relatively thin and immature, but in the later stage the fiber is dense and the disposition is most functional. 3. Observation of the early stage, the elastic fiber is a thin fiber that to across antero- posterior direction, but in the later stage elastic fiber are developed, the disposition that in the early stage was perpendicular to articular surface, now in parallel. 4. The elastic fiber was observated most clearly in the retrodiscal tissue. 5. In conclusion, the elastic fiber is observed like a thin fiber 1 week from born, but the fiber to increase the weight and it dispose functionally, and 4 week from born, it can realize the normal function.

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유한요소 해석법을 이용한 반월상 연골 절제술의 생체역학적 평가 (Biomechanical evaluation of menisectomy using finite element method)

  • 배지용;박진홍;송은규;박상진;전인수
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2008년도 추계학술대회A
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    • pp.1471-1472
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    • 2008
  • To analyze biomechanical effects of various types of menisectomy in the knee joint, the contact area and pressure distribution of intact the knee joint and the operated by various menisectomies were studied by using finite element method their results are compared with each other. In this study, the femur, the tibia, the articular cartilage and the menisci were three dimensionally reconstructed using MR Images of healthy knee joint in full extension of 26 years old male. Also, three dimensional finite element model of the knee joint was constructed including the models of ligaments and tendons on the reconstructed three dimensional model. Bones were considered to be rigid, articular cartilage and menisci were considered as homogeneous, isotropic and linearly elastic materials and ligaments and tendons were modeled as hyperelastic materials. Based on the results, the effects of various types of menisectomy on the knee joints are clearly elucidated.

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