• 제목/요약/키워드: muscular deformation

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Discrimination of Motions with Physical Deformation of Muscles and EMG

  • Unkawa, Taksshi;Iida, Takeo
    • 한국감성과학회:학술대회논문집
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    • 한국감성과학회 2000년도 춘계 학술대회 및 국제 감성공학 심포지움 논문집 Proceeding of the 2000 Spring Conference of KOSES and International Sensibility Ergonomics Symposium
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    • pp.109-112
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    • 2000
  • The purpose of the present study is to evaluate the basic upper-limb involved in products manipulation. Upper-limb muscular deformations and electromyography (EMG) measurements are used as indexes for estimated motion: hand opening and closing, wrist extending and flexing, pronation and supination, grasping conditions. Measured values are analyzed by multivariate analysis and a regression equation is obtained for estimating the characteristics of upper-limb performance. Muscular deformation is defined as a change in shape, such as a pressure changes when the hand or wrist moves. hand opening and closing can be discriminated at a higher percentage of accuracy by muscular deformation data than by EMG data. Muscular deformation measurements using air-pack pressure sensors were verified to be effective in motion estimation applications.

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유한요소법을 이용한 인두의 기능이상에 대한 생체역학적 모델 (A Biomechanical Modeling of Human Pharyngeal Muscular Dysfunction by Using FEM(Finite Element Method))

  • 김성재;배하석;최병철;김성민
    • 대한의용생체공학회:의공학회지
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    • 제24권6호
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    • pp.515-522
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    • 2003
  • 인두는 구강과 식도, 비강과 폐의 중간에서 능동적으로 구강을 통해 섭취되는 음식물과 비강을 통해 흡입되는 공기의 통로역할을 하는 주요한 기관이다. 본 연구는 유한요소기법을 이용한 인두의 3차원 구조의 재구성 과정을 거쳐 인두의 생체역학모델을 구현하였으며, 연하곤란환자의 인두근육의 주요부분에 대한 구조적 변형특성을 3가지로 분류하여 유한요소기법을 이용하여 인두내의 압력에 대한 형상의 변형을 관찰 후 최적화 과정을 거쳐 각 부분에서의 추정 압력 구배를 측정하여 연하과정에서 내부에 생성되는 압력의 연속적인 압력분포를 추정하였다. CT에 의한 인두의 변형 형상을 추정하여 임의 압력에 의한 인두구조의 변형 형상을 유한요소 해석에 의해 계산한 후 비교하여 실제 인두강 내에 형성되는 압력을 추정하였다. 재료적 특성은 인두의 기능이상 시 근조직경화가 발생, 즉 stiffness 가 증가하는 것으로 가정하여 응력-변형률 관계에 있어서 각각 $25\%,\;50\%,\;75\%$씩 증가시켜 분석하였다. 이러한 인두의 생체역학모델은 인두기능장애를 가진 환자의 치료 계획 수립에 도움이 되는 유용한 자료를 제공 할 것으로 생각된다.

경기력 향상을 위한 경주용 탄소 자전거 프레임의 하중과 변형에 관한 연구 (A Study on the Load and Deformation of Race Carbon Bicycle Frame for Improved Athletic Performance)

  • 최웅재;최승호;김용선;윤성민;김홍건
    • 한국기계가공학회지
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    • 제18권1호
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    • pp.46-51
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    • 2019
  • As the industry develops and quality of life increases, the concept of leisure is also changing. Bicycling is a healthy sport for exercising while enjoying nature, facilitating the enjoyment of a healthy life. As a result, the awareness surrounding bicycles has increased, and so has the interest in lighter and more luxurious carbon bikes. The number of domestic companies producing carbon bicycles frames is nil. In this study, we analyze the frames of existing foreign brands and analyze the deformation and stress concentration area according to the load of the frame, using the finite element analysis. In addition, we set up the range of stiffness based on the content of the structural analysis, to localize the carbon bicycle frame and famous foreign products, and compare the prototype with the stiffness by using bicycle molds for track races.

두 개의 임플란트를 이용한 3본 고정성 국소의치에서 가공치 위치에 따른 하악골에서의 응력 분포 및 변형에 관한 삼차원 유한요소법적 연구 (THE THREE DIMENSIONAL FINITE ELEMENT ANALYSIS OF STRESS DISTRIBUTION AND DEFORMATION IN MANDIBLE ACCORDING TO THE POSITION OF PONTIC IN TWO IMPLANTS SUPPORTED THREE-UNIT FIXED PARTIAL DENTURE)

  • 김동수;김일규;장금수;박태환;김규남;손충렬
    • Journal of the Korean Association of Oral and Maxillofacial Surgeons
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    • 제34권2호
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    • pp.166-179
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    • 2008
  • Excessive concentration of stress which is occurred in occlusion around the implant in case of the implant supported fixed partial denture has been known to be the main cause of the crestal bone destruction. Therefore, it is essential to evaluate the stress analysis on supporting tissue to get higher success rates of implant. The purpose of this study was to evaluate the effects of stress distribution and deformation in 3 different types of three-unit fixed partial denture sup-ported by two implants, using a three dimensional finite element analysis in a three dimensional model of a whole mandible. A mechanical model of an edentulous mandible was generated from 3D scan, assuming two implants were placed in the left premolars area. According to the position of pontic, the experiments groups were divided into three types. Type I had a pontic in the middle position between two implants, type II in the anterior posi-tion, and type III in the posterior position. A 100-N axial load was applied to sites such as the central fossa of anterior and posterior implant abutment, central fossa of pontic, the connector of pontic or the connector between two implants, the mandibular boundary conditions were modeled considering the real geometry of its four-masticatory muscular supporting system. The results obtained from this study were as follows; 1. The mandible deformed in a way that the condyles converged medially in all types under muscular actions. In comparison with types, the deformations in the type II and type III were greater by 2-2.5 times than in the type I regardless of the loading location. 2. The values of von Mises stresses in cortical and cancellous bone were relatively stable in all types, but slightly increased as the loading position was changed more posteriorly. 3. In comparison with type I, the values of von Mises stress in the implant increased by 73% in Type II and by 77% in Type III when the load was applied anterior and posterior respectively, but when the load was applied to the middle, the values were similar in all types. 4. When the load was applied to the centric fossa of pontic, the values of von Mises stress were nearly $30{\sim}35%$ higher in the type III than type I or II in the cortical and cancellous bone. Also, in the implant, the values of von Mises stress of the type II or III were $160{\sim}170%$ higher than in the type I. 5. When the load was applied to the centric fossa of implant abutment, the values of von Mises stress in the cortical and cancellous bone were relatively $20{\sim}25%$ higher in the type III than in the other types, but in the implant they were 40-45% higher in the type I or II than in the type III. According to the results of this study, musculature modeling is important to the finite element analysis for stress distribution and deformation as the muscular action causes stress concentration. And the type I model is the most stable from a view of biomechanics. Type II is also a clinically accept-able design when the implant is stiff sufficiently and mandibular deformation is considered. Considering the high values of von Mises stress in the cortical bone, type III is not thought as an useful design.

Diagnosis and treatment of positional plagiocephaly

  • Jung, Bok Ki;Yun, In Sik
    • 대한두개안면성형외과학회지
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    • 제21권2호
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    • pp.80-86
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    • 2020
  • Positional plagiocephaly is increasing in infants. Positional plagiocephaly is an asymmetric deformation of skull due to various reasons; first birth, assisted labor, multiple pregnancy, prematurity, congenital muscular torticollis and position of head. Positional plagiocephaly can mostly be diagnosed clinically and by physical examinations. The simplest way to assess the severity of plagiocephaly is to use a diagonal caliper during physical examination, which measures the difference between the diagonal lengths on each side of the head. Plagiocephaly can be treated surgically or conservatively. Positional plagiocephaly, which is not accompanied by craniosynostosis, is treated conservatively. Conservative treatments involve a variety of treatments, such as change of positions, physiotherapy, massage therapy, and helmet therapy. Systematic approaches to clinical examination, diagnosis and treatment of positional plagiocephaly can be necessary and the age-appropriate treatment is recommended for patients with positional plagiocephaly.

대복 (Gomphina veneriformis)의 생존 및 운동성에 미치는 카드뮴 (cd)의 독성 (Cadmium Toxicity on the Survival Rate and Activity of the Equilateral Venus, Gomphina veneriformis (Bivalvia: Veneridae))

  • 박정준;이정식
    • 한국수산과학회지
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    • 제36권5호
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    • pp.463-468
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    • 2003
  • This study observed change of survival rate, activity and foot structure of the equilateral venus (Gomphina veneriformis) exposed to cadmium. Survival rate and activity of the clam exposed to cadmium was reduced with increase of exposure duration and concentration. Change of survival rate and activity was observed in the early exposure time (7 days) in the condition of above 1 77 mg/L and 0.88 mg/L, respectively. Activity reduction of the clam exposed to cadmium seems to be caused by epidermal layer deformation, muscle fiber fragmentation and muscular layer collapse of the foot.

턱관절균형의학에서 편차발생현상의 신경과학 및 재료역학적 해석과 일반화 (Interpretation and Generalization by Neuroscience and Material Mechanics on Deviation in Temporomandibular Joint Balancing Medicine)

  • 지규용
    • 턱관절균형의학회지
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    • 제12권1호
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    • pp.1-6
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    • 2022
  • Objectives: For the deviation phenomenon occurring during the treatment process in temporo-mandibular balancing medicine (TBM), hypotheses were established regarding the cause and mechanism of formation from the perspective of neuro-science and material mechanics, and a verification method was proposed. Methods: The deviation phenomenon was theoretically analyzed based on the structure theories of material mechanics of the joint and the neurological pain mechanism. Results: Deviation occurs due to temporary yield by the accumulation of heterogeneous stress in the temporo-mandibular joint and the affected joint. Because the joint structures are corresponding with material mechanics showing compressive and tensile properties. The size of the deviation is expressed in terms of strain. The occlusal surface of the teeth is level with the axial joint. Since the magnitude of the deviation has a proportional relationship with the degree of abnormality of the temporo-mandibular joint, the magnitude of the deviation calculated by the balance measurement can be replaced by the strain. The major variables involved in the occurrence of deviations are the strength of joint structures and neurological conditions. Therefore plastic deformation and adaptation occur as a long-term depression of neural circuits is strengthened in different ways at different locations each time in various clinical situations. This is the reason why the sequence of the restoration process while correcting deviations is following reverse order of the accumulation in many layers in the muscular nervous system. Conclusions: From the above results, it can be inferred that the occurrence and correction of the deviations are corresponding with the plastic deformation and neuro-plasticity.

프로폴리스 섭식이 X-선에 의해 손상된 랫드의 여러 조직에 미치는 영향 (Effect of Propolis Feeding on Rat Tissues Damaged by X-ray Irradiation)

  • 이지훈;지태정;서을원
    • Journal of Radiation Protection and Research
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    • 제32권2호
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    • pp.51-57
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    • 2007
  • 본 연구는 프로폴리스가 방사선에 조사된 랫드의 여러 조직에 미치는 방사선 방어 효과를 조사하였다. 혈장성분 중 백혈구의 수는 방사선 조사 20일 경과 후에 방사선만 조사한 실험군보다 프로폴리스 섭식 실험군에서 높은 증가를 나타냈으며, 혈장 성분 중 GOT의 활성도는 GPT에 비해 낮아지고 있다. 간 조직 내 미량원소 중 Mg, Fe, Ca, Mn, Cu, Mo, Ni, As의 함량은 대조 군에 비해서는 증가하였으나 방사선만 조사한 실험군에 비해서는 낮은 수준을 유지하고 있다. 즉 프로폴리스는 백혈구 수의 회복에 효과적이며 방사선으로 인한 간세포의 손상을 보호해 줌으로서 미량원소의 방출을 억제하고 GOT의 활성을 낮춰주는 것으로 생각된다. 조직학적으로 방사선조사 전에 프로폴리스를 섭식하면 정소에서는 훼손된 미분화 세포의 수가 감소하였고, 소장에서도 손상된 배상세포와 점막근판 조직의 형태가 부분적으로 정상적인 형태를 갖추는 것으로 관찰되었다. 따라서 프로폴리스의 섭식은 방사선으로부터 직접적으로 조직을 보호하거나 훼손된 세포의 회복에 영향을 미치는 것으로 조사되었다.