• Title/Summary/Keyword: muscles

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A Design and Implementation of 3D Facial Expressions Production System based on Muscle Model (근육 모델 기반 3D 얼굴 표정 생성 시스템 설계 및 구현)

  • Lee, Hyae-Jung;Joung, Suck-Tae
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.16 no.5
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    • pp.932-938
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    • 2012
  • Facial expression has its significance in mutual communication. It is the only means to express human's countless inner feelings better than the diverse languages human use. This paper suggests muscle model-based 3D facial expression generation system to produce easy and natural facial expressions. Based on Waters' muscle model, it adds and used necessary muscles to produce natural facial expressions. Also, among the complex elements to produce expressions, it focuses on core, feature elements of a face such as eyebrows, eyes, nose, mouth, and cheeks and uses facial muscles and muscle vectors to do the grouping of facial muscles connected anatomically. By simplifying and reconstructing AU, the basic nuit of facial expression changes, it generates easy and natural facial expressions.

Back Pain of Muscular Origin (근긴장성 요통의 치료에 대한 새로운 소견)

  • Choi, Joong-Rieb
    • The Korean Journal of Pain
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    • v.6 no.1
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    • pp.83-95
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    • 1993
  • In out-patient clinic, it seems to be common that most back pain arise from muscular origins rather than from skeletal origins. Most physicians have wished to diagnose lower back pain from the radiologic findings only. From clinical experiences and anatomical studies, I have gotten a different opinion from common sense about backaches. If I met a patient who had lower back pain around the posterior superior iliac crest(P.S.I.C.) area, I would had to search a trigger point in the erector spinae muscles at the level of thoraco-lumber junction rather than at the level of the painful site. It is why that sensory innervation over the posterior superior iliac crest area is the posterior primary branch of T12 spinal nerve running down through the erector spinae muscles. Pain on the iliac crest area is supposedly due to hyperirritability of the sensory nerve distributing to this area. Hyperirritability of the posterior primary branch of $T_{12}$ spinal nerve may be due to the spasm of the longissimus thoracis muscle in the erector spinae muscles at the level of the thoraco-lumbar junction. So finally, I would like to insist that spasmolytic treatment on the muscle at the level of the thoraco-lumbar junction would be better for pain relief around P.S.I.C. than treatment at the painful site only.

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Effect of Head Posture and Breathing Pattern on Muscle Activities of Sternocleidomastoid and Scalene during Inspiratory Respiration (흡기 호흡 시 머리자세와 호흡패턴이 목빗근과 목갈비근의 근활성도에 미치는 영향)

  • Koh, Eun-Kyung;Jung, Do-Young
    • Korean Journal of Applied Biomechanics
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    • v.23 no.3
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    • pp.279-284
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    • 2013
  • The purpose of this study was to determine the effect of head posture and respiratory pattern on muscle activities of sternocleidomastoid (SCM) and scalene during maximal respiration. The seventeen subjects with upper-costal breathing pattern were participated in this study. Surface electromyography was used to measure the muscles activities of SCM and scalene. The volume and velocity of inspiration were monitored by using the spirometer in each subject. Each subject was performed the 3-cycle of respiration in each condition. The mean values of three peak muscle activity in each muscle were used in the data analysis. A2 (head posture: forward head posture: FHP vs. neutral posture) X 2 (breathing pattern: costal vs. diaphragmatic) repeated-measures analysis of variance (ANOVA) was used to compare the normalized muscle activities of the SCM and scalene. The results showed that the muscle activities of SCM and scalene in diaphragmatic breathing were significantly lower than those in costal breathing for each head posture (p<.0125). The muscle activities of SCM in neutral position were lower than those in forward head position during costal breathing (p<.0125). The diaphragmatic breathing in neutral position of head is recommended to decrease the tension of the accessory inspiratory muscles during respiration in neck-pain patients with FHP.

Effect of Electrical Stimulation on the Denervated Muscle of the Albino Rat. Sprague-Dawley (전기자극이 흰쥐 탈신경 근육의 위축에 미치는 영향)

  • Lee, Jae-Hyoung;Lee, Kyung-Ro
    • The Journal of Korean Physical Therapy
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    • v.2 no.1
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    • pp.47-63
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    • 1990
  • The purpose of this study was to determined the effect of low-frequency electrical stimulation on the denervated gastrocnemius muscles of the albino rats, Sprague-Dawley. Fifteen Sprague-Dawley adult male albino rats were divided into non-treated (normal) group, denervated (control) group, denervated and electrical stimulated (experiments). The gastrocnemius muscles of the right leg were submaximally stimulated with 30 Hz electrical stimulation. After 4-week period, the animals were sacrificed, and muscle were removed, fixed by immersion, and processed for light and electron microscopy. The numbers of Ag-NOR increased significantly (p<0.001), but significant reductions of girth(p<0.01), wet muscle weight (p<0.001), high glycogen content fiber (p<0.01), and mitochondrial number (p<0.05) were found in denervated control group. In comparison with control group, significant increase of right leg girth (p<0.05), wet muscle weight (p<0.001), high glycogen content fiber (p<0.05), numbers of Ag-NOR(p<0.001), number of mitochondria (p<0.01), mitochondrial volume found in electrical stimulated experimental group. The results suggest that the electrical stimulation of the muscle partially prevented the denervated atrophy in the rat gastrocnemius muscles.

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A Musculoskeletal Model of a Human Lower Extremity and Estimation of Muscle Forces while Rising from a Seated Position (인체 하지부 근골격계 모델 및 의자에서 일어서는 동작 시 근력 예측)

  • Jo, Young-Nam;Yoo, Hong-Hee
    • Transactions of the Korean Society for Noise and Vibration Engineering
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    • v.22 no.6
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    • pp.502-508
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    • 2012
  • An analytical model for a human body is important to predict muscle and joint forces. Because it is difficult to estimate muscle or joint forces from a human body, the objective of this study is the development of a reliable analytical model for a human body to evaluate the lower extremity muscle and joint forces. The musculoskeletal system of the human lower extremity is modeled as a multibody system employing the Hill-type muscle model. Muscle forces are determined to minimize energy consumption, and we assume that motion is constrained in the sagittal plane. Muscle forces are calculated through an equilibrium analysis while rising from a seated position. The musculoskeletal model consists of four segments. Each segment is a rigid body and connected by frictionless revolute joints. Muscles of the lower extremity are simplified to seven muscles with those that are not related to the sagittal plane motion are ignored. Muscles that play a similar role are combined together. The results of the present study are compared with experimental results to validate the lower extremity model and the assumptions of the present study.

Changes of Muscle Activation Pattern of Trunk Muscles during Whole-body Tilts with and without Axial Rotation (전신 기울임 운동시 축 회전 유무에 따른 체간근 활성도 변화)

  • Kim, Sol-Bi;Chang, Yun-Hee;Kim, Shin-Ki;Bae, Tae-Soo;Mun, Mu-Seong;Park, Jong-Chul
    • Journal of the Korean Society for Precision Engineering
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    • v.29 no.7
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    • pp.805-810
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    • 2012
  • Determining of the exercise intensity is very important in terms of induction of low fatigue during exercise. Little information is available on the contraction level of the trunk muscles during whole body tilts with and without axial rotation. This study was to investigate the difference muscle activation level according to axial rotation. Twenty subjects were participated. The muscle activities of the five trunk muscles were bilaterally measured at eight axial rotation angles with 12 tilt angles along $15^{\circ}$ intervals. The results showed that tilt with $45^{\circ}$ axial rotation was more balanced in the same tilt angle and was maintained approximately level of 40% MVC at over $60^{\circ}$ tilt angle with respect to co-contraction of abdominal and back muscle. Lumbar stabilization exercise using whole body tilts would be more effective with axial rotation than without axial rotation in terms of muscle co-contraction.

A Role for Peroxidasin PXN-1 in Aspects of C. elegans Development

  • Lee, Juyeon;Bandyopadhyay, Jaya;Lee, Jin Il;Cho, Injeong;Park, Daeho;Cho, Jeong Hoon
    • Molecules and Cells
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    • v.38 no.1
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    • pp.51-57
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    • 2015
  • The Caenorhabditis elegans peroxidasins, PXN-1 and PXN-2, are extracellular peroxidases; pxn-2 is involved in muscle-epidermal attachment during embryonic morphogenesis and in specific axon guidance. Here we investigate potential roles of the other homologue of peroxidasin, pxn-1, in C. elegans. A pxn-1 deletion mutant showed high lethality under heat-stress conditions. Using a transcriptional GFP reporter, pxn-1 expression was observed in various tissues including neurons, muscles, and hypodermis. A translational fusion showed that PXN-1::GFP was secreted and localized in extracellular matrix, particularly along body wall muscles and pharyngeal muscles. Various neuronal developmental defects were observed in pxn-1 mutants and in pxn-1 over-expressing animals, including handedness, branching, breakage, tangling, and defasciculation. These results suggest that pxn-1, like other peroxidasins, plays an important role throughout development.

Teleoperation of Pneumatic Artificial Muscles Based on Joint Stiffness of Master Device (마스터장치의 회전강성을 고려한 공압인공근육의 원격조정)

  • Kim, Ryeong Hyeon;Kang, Bong Soo
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.37 no.12
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    • pp.1521-1527
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    • 2013
  • This study proposes a wearable master device that can measure the joint stiffness and the angular displacement of a human operator to enhance the adapting capability of a slave system. A lightweight inertial sensor and the exoskeleton mechanism of the master device can make an operator feel comfortable, and artificial pneumatic muscles having a working principle similar to that of human muscles improve the performance of the slave device on emulating what a human operator does. Experimental results revealed that the proposed master/slave system based on the muscle stiffness sensor yielded uniform tracking performance compared with a conventional position-feedback controller when the payload applied to the slave system changed.

Effects of Neck Stabilization and Swiss Ball Exercises on the Recovery from Fatigue of Neck Muscles in Turtle Neck Posture: Preliminary Experimental Study

  • Kim, Byeong Jo
    • Journal of International Academy of Physical Therapy Research
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    • v.9 no.2
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    • pp.1498-1507
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    • 2018
  • The purpose of this study was to examine the immediate effect of neck stabilization exercise and Swiss ball exercise on the recovery from the fatigue of neck muscles induced. The turtleneck posture was set artificially by using Smartphone with healthy adults. Repetitively measured ANOVA was executed to examine the changes in the muscle fatigue of sternocleidomastoid, upper trapezius, and splenius capitis among three-time intervals (at the time of general resting, work and after intervention) in the three intervention groups (neck stabilization exercise group, Swiss ball exercise group, and ordinary rest group). There were no significant differences in the changes of fatigue of sternocleidomastoid muscle among all three intervention groups at the time of general resting, work and after intervention (p>.05). Although there was no significant difference in the changes in the fatigue of upper trapezius and splenius capitis muscles between the intervention groups at the time of general resting and work (p>.05), there was the significant difference between the three intervention groups at the time of work and after intervention (p>.05). This study suggest that Swiss ball exercise is more effective in reducing the muscular fatigue of the neck and shoulder at a turtleneck posture than neck stabilization exercise.

Diagnostic Imaging Features of Concomitant Flexor Enthesopathy in a Dog

  • Kim, Ye-Jin;Cho, Hyun-Ju;Hong, Sae-Byel;Kim, Kwang-Min;Choi, Ho-Jung;Lee, Young-Won
    • Journal of Veterinary Clinics
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    • v.37 no.1
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    • pp.46-49
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    • 2020
  • Flexor enthesopathy is an important cause of elbow lameness in dogs. Flexor enthesopathy is divided into primary and concomitant forms deciding the treatment. The imaging characteristics in affected dogs are irregular medial humeral epicondyles, spur, calcified bodies adjacent to medial humeral epicondyle, thickened and contrast enhancement of the affected muscles. In this report, the radiography, computed tomography (CT), and magnetic resonance imaging (MRI) were performed for right forelimb lameness of a 3-year-old dog. The irregular sclerotic changes and spur of the medial humeral epicondyles were shown with calcified bodies on radiography. Thickened flexor muscles in right forelimb and fragmented coronoid processes of both elbows were observed on CT. On MRI, high signal intensity of the bilaterally thickened flexor muscles with contrast enhancement was detected. Based on these results, concomitant flexor enthesopathy with fragmented medial coronoid process of bilateral elbows was diagnosed in this dog.