• 제목/요약/키워드: Skeletal

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임상가를 위한 특집 4 - 턱교정수술에서 선수술접근 :적응증과 한계 (Surgery First Approach in Orthognathic Surgery : Indication and limitation)

  • 황대석
    • 대한치과의사협회지
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    • 제50권11호
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    • pp.682-688
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    • 2012
  • Surgery first approach in orthognathic surgery is to proceed the orthognathic surgery without preoperative orthodontic treatment. This approach has many advantages, which include a shorter total treatment period, a high level of patient satisfaction due to immediate post-surgical facial improvement, easy postoperative orthodontic treatment due to early normalization of skeletal muscle, and the rapid tooth movement reflecting the regional accelerated phenomenon. However instability due to transient occlusal interference after surgery make worse of long-term skeletal stability. Especially increasing of vertical occlusion caused by interference of interbicupid and molar happen postsurgical skeletal change. Until now, there is no common consensus about treatment protocol of surgery first approach in orthognathic surgery. The purpose of this paper is to introduce our treatment protocol of the surgery first approach and to evaluate indication and limitation with case analysis.

악교정 수술을 받은 골격성 III급 부정교합 환자의 악관절 상태에 관한 연구 (The Evaluation of TMJ Status after Orthognathic Surgery for Skeletal Class III Malocclusion)

  • 손우성;정충보;김종렬
    • 구강회복응용과학지
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    • 제22권4호
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    • pp.289-300
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    • 2006
  • This study was performed to investigate the influence of orthognathic surgery on the temporomandibular dysfunction in skeletal class III malocclusion. The temporomandibular joint status in 22 patients(mean age: 23.7 years) who received orthognathic surgery such as mandibular BSSRO(14 patients), maxillary Le Fort I osteotomy with mandibular BSSRO(8 patients) was evaluated by craniomandibular index. All these patients received orthognathic surgery at least 6 months ago. The mean score and standard deviation was obtained and compared with that of 22 normal individuals(mean age: 24.8years) by Student's t-test. In mandibular movement, the score of orthognathic surgery group was higher than that of the normal group. All the items except mandibular movement did not show any differences between the two groups.

Gene-set based genome-wide association analysis for the speed of sound in two skeletal sites of Korean women

  • Kwon, Ji-Sun;Kim, Sangsoo
    • BMB Reports
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    • 제47권6호
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    • pp.348-353
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    • 2014
  • The speed of sound (SOS) value is an indicator of bone mineral density (BMD). Previous genome-wide association (GWA) studies have identified a number of genes, whose variations may affect BMD levels. However, their biological implications have been elusive. We re-analyzed the GWA study dataset for the SOS values in skeletal sites of 4,659 Korean women, using a gene-set analysis software, GSA-SNP. We identified 10 common representative GO terms, and 17 candidate genes between these two traits (PGS < 0.05). Implication of these GO terms and genes in the bone mechanism is well supported by the literature survey. Interestingly, the significance levels of some member genes were inversely related, in several gene-sets that were shared between two skeletal sites. This implies that biological process, rather than SNP or gene, is the substantial unit of genetic association for SOS in bone. In conclusion, our findings may provide new insights into the biological mechanisms for BMD.

세 가지 주요 검도 공격 동작에서의 근-골격계 응력과 번형률 해석에 관한 연구 (A Study on the Stress and Strain Analysis of Human Muscle Skeletal Model in Kendo Three Typical Attack Motions)

  • 이중현;이영신
    • 한국정밀공학회지
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    • 제25권9호
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    • pp.126-134
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    • 2008
  • Kendo is one of the popular sports in modem life. Head, wrist and thrust attack are the fast skill to get a score on a match. Human muscle skeletal model was developed for biomechanical study. The human model was consists with 19 bone-skeleton and 122 muscles. Muscle number of upper limb, trunk and lower limb part are 28, 60, 34 respectively. Bone was modeled with 3D beam element and muscle was modeled with spar element. For upper limb muscle modelling, rectus abdominis, trapezius, deltoideus, biceps brachii, triceps brachii muscle and other main muscles were considered. Lower limb muscle was modeled with gastrocenemius, gluteus maximus, gluteus medius and related muscles. The biomechanical stress and strain analysis of human muscle was conducted by proposed human bone-muscle finite element analysis model under head, wrist and thrust attack for kendo training.

행렬해법에 의한 골조구조해석의 전산화 (Computerization of Matrix Analysis of Skeletal Structures)

  • 이재영
    • 한국농공학회지
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    • 제22권1호
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    • pp.87-95
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    • 1980
  • General purpose programs are essential elements for the computerization of structural analysis. This paper is associated with actual formulation of such programs by matrix analysis. The basic theory of matrix analysis for skeletal structures, its implementation and techniques for developing efficient programs are discussed in this paper. Any shape of skeletal structure can be included in a single program for space frames. But in order to economize computing time and computer memory space, it is desirable to develop and operate seperate programs specialized into four categories; truss, planar frame, grid and space frame. As for general purpose programs, simplicity of input format and flexibility of output format should be duly considered. Compaction and solution of system equations are the most important aspects in computer programming of matrix analysis, and worth further study for more efficient computerization.

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암수동체성 점박이송아리 Rivulus ocellatus marmoratus (진구아강: 점박이송사리과)의 골격계 (Skeletal System of the Hermaphroditic Rivulus Rivulus ocellatus marmoratus (Teleostomi: Aplocheilidae))

  • 이승휘;박은호
    • 한국동물학회지
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    • 제32권3호
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    • pp.177-210
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    • 1989
  • 실험실에서 사육한 암수동체성 점박이송사리 Rivulus ocellatus marmoratus의 모든 골격의 구조와 형태를 관찰, 기술하였다. 본 종의 골격계는 모두 68가지 430개 이상이 단위 골편을 구성되어 있었으며, 그 구조와 형태는 Atherinomorpha에 속하는 물고리류의 경우와 근본적으로 유사하였다. 그러나 안와환부골, 외익상골, 제1늑골 및 근간골 등의 소실은 특기할 만하였다. 이상의 결과를 해부학적, 계통학적 측면에서 논하였다.

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골격형 II급 부정교합자의 제2대구치 석회화 과정에 관한 연구 (A STUDY ON THE CALCIFICATION OF SECOND MOLARS IN SKELETAL CLASS II MALOCCLUSION)

  • 김여미
    • 대한치과교정학회지
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    • 제11권2호
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    • pp.125-134
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    • 1981
  • To study the calcification of second molars in skeletal class II malocclusion, the author examined cephalograms, orthopantomograms, periapical films of 391 children from 7y 0m to 15y 11 m years old who had skeletal class II malocclusion, and observed the difference in the calcification stage between upper and lower second molars. The result s are as follows. 1. The mean ages of crown completion of upper and lower second molars are $8.7{\pm}1.75$, $8.8{\pm}1.13$ in boys, and $8.4{\pm}0.81$, $8.5{\pm}0.91$ in girls. 2. The mean ages of root completion of upper and lower second molars are $14.0{\pm}1.09,\;14.5{\pm}0.52$ in boys, and $13.7{\pm}1.15,\;13.8{\pm}1.18$ in girls. 3. The calcification stages of upper second molars are more advanced than those of lower second molars at $5\%$ level in both sexes.

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Modelling of Ergonomics and Muscular Comfort

  • Eberhard Haug;Alain Tramecon;J. C. Allain;Park, Hyung-Yun
    • Journal of Mechanical Science and Technology
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    • 제15권7호
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    • pp.982-994
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    • 2001
  • Commercially available software packages permit to position human models of various geometries in practical scenarios while respecting the anatomical constraints of the skeletal joints and of the bulk of the bodies. Beyond such features, the PAM-Comfort(sup)TM software has been conceived to provide direct access to the muscular forces needed by humans to perform physical actions where muscle force is required. The PAM-Comfort(sup)TM human models are made of multi-body linked anatomical skeletons, equipped with finite elements of the relevant skeletal muscles. The hyper-static problem of determination of muscle forces is solved by optimisation technique. Voluntary stiffening of muscles can be added to the basic contraction levels needed to perform a specific task. The calculated muscle forces obey Hills model. The model and software have been applied in several interesting scenarios of various fields of application, such as car industry, handling of equipment and sports activities.

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The role of interleukin-17 in bone metabolism and inflammatory skeletal diseases

  • Lee, Youngkyun
    • BMB Reports
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    • 제46권10호
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    • pp.479-483
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    • 2013
  • The balance between osteoblast-dependent bone formation and osteoclast-dependent bone resorption maintains bone homeostasis. In inflammatory conditions, this balance shifts toward bone resorption, causing osteolytic bone lesions observed in rheumatoid arthritis and periodontitis. A recently discovered family of cytokine IL-17 is widely reported to mediate diverse inflammatory processes. During the last decade, novel roles for IL-17 in skeletal homeostasis have been discovered indicating the potential importance of this cytokine in bone metabolism. This review will summarize and discuss the involvement of IL-17 during bone homeostasis in both physiologic and pathologic conditions. A better understanding of the role of IL-17 in skeletal systems warrants an advance in bone biology, as well as development of therapeutic strategies against bone-lytic diseases, such as rheumatoid arthritis and periodontitis.

Factors Influencing Satellite Cell Activity during Skeletal Muscle Development in Avian and Mammalian Species

  • Nierobisz, Lidia S;Mozdziak, Paul E
    • Asian-Australasian Journal of Animal Sciences
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    • 제21권3호
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    • pp.456-464
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    • 2008
  • Avian and mammalian skeletal muscles exhibit a remarkable ability to adjust to physiological stressors induced by growth, exercise, injury and disease. The process of muscle recovery following injury and myonuclear accretion during growth is attributed to a small population of satellite cells located beneath the basal lamina of the myofiber. Several metabolic factors contribute to the activation of satellite cells in response to stress mediated by illness, injury or aging. This review will describe the regenerative properties of satellite cells, the processes of satellite cell activation and highlight the potential role of satellite cells in skeletal muscle growth, tissue engineering and meat production.