• 제목/요약/키워드: Structure of muscle

검색결과 392건 처리시간 0.027초

경추 초음파 영상에서 흉쇄유돌근 추출 (Extraction of Sternocleidomastoid Muscle for Ultrasound Images of Cervical Vertebrae)

  • 김광백
    • 한국정보통신학회논문지
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    • 제15권11호
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    • pp.2321-2326
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    • 2011
  • 경추는 머리와 몸통을 이어주는 중요한 요충지이기 때문에 매우 중요한 기관이며 매우 복잡한 구조로 되어있다. 본 논문에서는 경추 초음파 영상에서 경추 부분에 존재하는 흉쇄유돌근을 자동으로 검출하는 방법을 제안한다. 경추 초음파 영상에서 촬영 정보나 눈금자 등의 필요 없는 부분을 제외한 ROI(Region of Interest)영상을 추출하고 Ends-In Search Stretching 알고리즘을 적용하여 명암 대비를 강조한다. Stretching된 영상에 20 이상의 명암도를 가지는 픽셀을 대상으로 평균 이진화를 적용한 후, 잡음을 제거한다. 잡음이 제거된 영상에 흉쇄유돌근을 둘러싸고 있는 근막의 위치 정보를 이용하여 근막을 추출한 후, 근막의 객체 수에 따라서 각기 다른 방법을 적용하여 근육을 추출한다. 근막 객체가 하나인 경우에는 위에서 아래로 탐색하여 1차 근육 영역을 추출하고, 오른쪽에서 왼쪽으로 탐색하여 2차 근육 영역을 추출한 후, 1차와 2차 근육 영상을 하나로 합쳐 최종 근육 영역을 추출한다. 근막 객체가 두 개인 경우에는 근막 객체의 상단과 하단까지의 영역을 모두 추출한 후, 근막 객체 영역을 제거하는 방법으로 근육 영역을 추출한다. 추출된 근육 영역 중에서 두께가 가장 두꺼운 부분을 근육의 두께로 측정한다. 본 논문에서 제안된 방법을 경추 초음파 영상 30장을 대상으로 실험하여 물리치료사가 분석한 결과, 제안된 방법이 흉쇄유돌근을 정확히 추출되는 것을 확인하였다.

처네(앞.뒤) 사용 방법이 보행 시 목, 허리 및 다리 근육 활성도와 족저압에 미치는 영향 (The Effects of Plantar foot Pressure and EMG Activation of Neck, Lumbar and Low Limbs by Using Carrier during Walking)

  • 이상열;장종성;이명희
    • 한국운동역학회지
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    • 제19권2호
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    • pp.237-244
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    • 2009
  • 본 연구는 처네를 사용하고 보행을 하는 동안 처네의 사용 방법에 따른 족저 압력의 변화와 목, 허리 및 다리 근육의 활성도를 알아 보기 위하여 실시하였으며 이를 위하여 족저 영역별 최고 압력과 근육 활성도를 중심으로 자료를 수집하여 분석하였다. 영아를 양육하고 있는 허리와 다리 및 목의 근골격계 문제가 없는 20명의 건강한 젊은 여성을 대상으로 전방 처네 사용, 후방 처네 사용, 일반 보행을 하는 동안 입각기 발의 영역별 족저 최고 압력과 목, 허리 및 다리 근육의 활성도를 측정하였다. 족저 압력의 측정은 RS-scan system을 이용하였으며, 근육 활성도는 ProComp InfinitiTM를 이용하였다. 처네 사용 방법에 따라 수집된 자료를 일원배치분산분석을 이용하여 분석하였다. 본 연구를 통하여 전방 처네 사용 시 허리 근육의 활성도와 엄지 발가락 영역의 압력이 유의하게 증가한다는 것을 알 수 있었고, 후방 처네 사용 시 목 근육의 활성도와 발허리 영역의 압력이 유의하게 증가하였다. 따라서 본 연구에서는 처네의 사용 방법이 발의 구조와 기능 그리고 근육 활성도에 영향을 미친다는 것을 확인 할 수 있었다.

상완 신경총 손상후 주관절 근력 회복을 위한 광배근 전이술 (Latissimus Dorsi Transfer in Brachial Plexus Injury for the Elbow Flexion)

  • 한정수;정덕환;소재호
    • Archives of Reconstructive Microsurgery
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    • 제7권1호
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    • pp.35-40
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    • 1998
  • The incidence of brachial plexus injury is increasing because of the development of motor vehicle but the the results of treatment was reported poor due to its complex anatomical structure and changes of function and sensory during the recovery after trauma. But the results of treatment has been improved by the recently introduced high sensitive diagnostic method that can evaluate accurately the site and extent of the injury and treatment method. Restoration of the elbow flexion is the most important goal of treatment after brachial plexus injury and nerve graft, neurotization and muscle transfer were used for methods of treatment. From December 1992 to May 1994, the author performed 6 cases of latissimus dorsi transfer at the same side for the improvement of elbow flexion in the patients of brachial plexus injury. There were 5 cases of male, one case of female and average age was 22 years old. The causes of injury were traffic accident in 3 cases, gun shot injury, falldown and birth injury in each one case and in all cases, the type of injury were upper arm type. The average follow up period were 1 year 5 months ranging from 12 months to 4 years 5 months. In all cases, active elbow flexion was impossible before operation and average muscle power was grade I. We analysed the active range of motion, muscle power and the functional results. At the last follow up, range of active elbow flexion was average $124^{\circ}$ and flexion contracture was average 11 degrees and the average of muscle power was grade IV. In the functional analysis, there were two cases of excellent, three cases of good and 1 case of fair. There was no complications including wound infection, vascular compromise and donor site problem. The results of latissimus dorsi transfer for improvement elbow flexion in the patients of brachial plexus injury is one of the useful mettled for the restoration of elbow flexion.

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Lateral pterygoid muscle volume and migraine in patients with temporomandibular disorders

  • Lopes, Sergio Lucio Pereira De Castro;Costa, Andre Luiz Ferreira;Gamba, Thiago De Oliveira;Flores, Isadora Luana;Cruz, Adriana Dibo;Min, Li Li
    • Imaging Science in Dentistry
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    • 제45권1호
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    • pp.1-5
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    • 2015
  • Purpose: Lateral pterygoid muscle (LPM) plays an important role in jaw movement and has been implicated in Temporomandibular disorders (TMDs). Migraine has been described as a common symptom in patients with TMDs and may be related to muscle hyperactivity. This study aimed to compare LPM volume in individuals with and without migraine, using segmentation of the LPM in magnetic resonance (MR) imaging of the TMJ. Materials and Methods: Twenty patients with migraine and 20 volunteers without migraine underwent a clinical examination of the TMJ, according to the Research Diagnostic Criteria for TMDs. MR imaging was performed and the LPM was segmented using the ITK-SNAP 1.4.1 software, which calculates the volume of each segmented structure in voxels per cubic millimeter. The chi-squared test and the Fisher's exact test were used to relate the TMD variables obtained from the MR images and clinical examinations to the presence of migraine. Logistic binary regression was used to determine the importance of each factor for predicting the presence of a migraine headache. Results: Patients with TMDs and migraine tended to have hypertrophy of the LPM (58.7%). In addition, abnormal mandibular movements (61.2%) and disc displacement (70.0%) were found to be the most common signs in patients with TMDs and migraine. Conclusion: In patients with TMDs and simultaneous migraine, the LPM tends to be hypertrophic. LPM segmentation on MR imaging may be an alternative method to study this muscle in such patients because the hypertrophic LPM is not always palpable.

Molecular Characterization and Expression Analysis of Adrenergic Receptor Beta 2 (ADRB2) Gene before and after Exercise in the Horse

  • Cho, Hyun-Woo;Shin, Sangsu;Song, Ki-Duk;Park, Jeong-Woong;Choi, Jae-Young;Lee, Hak-Kyo;Cho, Byung-Wook
    • Asian-Australasian Journal of Animal Sciences
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    • 제28권5호
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    • pp.686-690
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    • 2015
  • The adrenergic receptor beta 2 (ADRB2) plays a role in various physiological responses of the muscle to exercise, such as contraction and relaxation. Given its important role in muscle function, we investigated the structure of the horse ADRB2 gene and its expression pattern after exercise to determine if it can serve as a putative biomarker for recovery. Evolutionary analyses using synonymous and non-synonymous mutation ratios, were compared with other species (human, chimpanzee, mouse, rat, cow, pig, chicken, dog, and cat), and revealed the occurrence of positive selection in the horse ADRB2 gene. In addition, expression analyses by quantitative polymerase chain reaction exhibited ubiquitous distribution of horse ADRB2 in various tissues including lung, skeletal muscle, kidney, thyroid, appendix, colon, spinal cord and heart, with the highest expression observed in the lung. The expression of ADRB2 in skeletal muscle was significantly up-regulated about four folds 30 minutes post-exercise compared to pre-exercise. The expression level of ADRB2 in leukocytes, which could be collected with convenience compared with other tissues in horse, increased until 60 min after exercise but decreased afterward until 120 min, suggesting the ADRB2 expression levels in leukocytes could be a useful biomarker to check the early recovery status of horse after exercise. In conclusion, we identified horse ADRB2 gene and analyzed expression profiles in various tissues. Additionally, analysis of ADBR2 gene expression in leukocytes could be a useful biomarker useful for evaluation of early recovery status after exercise in racing horses.

배추흰나비 (Pieris rapae L.)의 미세구조(微細構造)에 관한 연구(硏究) I . 배관(背管)의 미세구조(微細構造) (Ultrastructural Studies on the Cabbage Butterfly, Pieris rapae L. I . Fine Structure on the Dorsal Vessel)

  • 김창환;김우갑;이근옥
    • Applied Microscopy
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    • 제15권1호
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    • pp.71-85
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    • 1985
  • The ultrastructure on the dorsal vessel of 5-day-old cabbage butterfly, Pieris rapae L., was carried out using the transmission and scanning electron microscope. The results are as follows. 1) The aorta. The aorta is simple tubular type and consists of the inner and outer membrane of the myocardium and thick myocardium is located between them. However the inner membrane with $0.26{\mu}m$ thickness and outer membrane with $0.08{\mu}m$ are composed of fibrous materials, the former is composed of low and high densed fibrous materials and the latter appears homogeneous layer. The myocardium consists of typical striated muscles. The sarcomere with $1.6{\mu}m$ length and in cross section, each thick filaments are surrounded by $7{\sim}8$ thin filaments. The intercalated disc is joining the end of the two muscle cells, desmosomes and septate junctions are appeared between the neighboring muscle cells. 2) The heart. The heart composing of myocardium enclosed by its inner and outer membrane as the aorta has a series of well formed segmental chamber. The arrangement of myofilaments, cell adhensions and membrane elements are observed as same as at the aorta. The inner membrane of the heart is deeply invaginated into the myocardium than the outer membrane and a lot of well developed mitochondria with rod shape are aggregated in the folds. The longitudinally and transversely oriented tubule system formed by invagnation of the sarcolemma into the muscle bundle is built up dyad with the sarcoplasmic reticulum as the aorta. The slit is formed by deeply invagination of the inner membrane of myocadium toward the muscle layer and then the inner and outer membrane of myocardium are fused. Therefore, the ostium is formed between the myocardium and situated at the lateral side of the myocardium.

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Intelligent Phase Plane Switching Control of Pneumatic Artificial Muscle Manipulators with Magneto-Rheological Brake

  • Thanh, Tu Diep Cong;Ahn, Kyoung-Kwan
    • 제어로봇시스템학회:학술대회논문집
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    • 제어로봇시스템학회 2005년도 ICCAS
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    • pp.1983-1989
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    • 2005
  • Industrial robots are powerful, extremely accurate multi-jointed systems, but they are heavy and highly rigid because of their mechanical structure and motorization. Therefore, sharing the robot working space with its environment is problematic. A novel pneumatic artificial muscle actuator (PAM actuator) has been regarded during the recent decades as an interesting alternative to hydraulic and electric actuators. Its main advantages are high strength and high power/weight ratio, low cost, compactness, ease of maintenance, cleanliness, readily available and cheap power source, inherent safety and mobility assistance to humans performing tasks. The PAM is undoubtedly the most promising artificial muscle for the actuation of new types of industrial robots such as Rubber Actuator and PAM manipulators. However, some limitations still exist, such as the air compressibility and the lack of damping ability of the actuator bring the dynamic delay of the pressure response and cause the oscillatory motion. In addition, the nonlinearities in the PAM manipulator still limit the controllability. Therefore, it is not easy to realize motion with high accuracy and high speed and with respect to various external inertia loads in order to realize a human-friendly therapy robot To overcome these problems a novel controller, which harmonizes a phase plane switching control method with conventional PID controller and the adaptabilities of neural network, is newly proposed. In order to realize satisfactory control performance a variable damper - Magneto-Rheological Brake (MRB) is equipped to the joint of the manipulator. Superb mixture of conventional PID controller and a phase plane switching control using neural network brings us a novel controller. This proposed controller is appropriate for a kind of plants with nonlinearity uncertainties and disturbances. The experiments were carried out in practical PAM manipulator and the effectiveness of the proposed control algorithm was demonstrated through experiments, which had proved that the stability of the manipulator can be improved greatly in a high gain control by using MRB with phase plane switching control using neural network and without regard for the changes of external inertia loads.

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다양한 다리 꼬기 자세가 요통환자의 체간근 활성도에 미치는 영향 (The Change of Muscle Activities of Trunk Muscles during Various Leg-Crossing Positions in Low Back Pain Patients)

  • 김태호;서현규;공원태
    • The Journal of Korean Physical Therapy
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    • 제19권5호
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    • pp.1-10
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    • 2007
  • Purpose: Leg-crossing sitting is very common for men and woman. No solid evidence exists for either a beneficial or a detrimental effect of this posture. This study investigated the change of activities of trunk muscles between the normal group and the low back pain group during various leg-crossing positions. Methods: The subjects were consisted of 10 subjects who don't have low back pain and 10 subjects who have low back pain. In this study, we used electromyography(EMG) to evaluate the activities of both the trunk muscles (rectus abdominis, external oblique, internal oblique, and multifidus) during various leg-crossing positions (up-right, leg-crossing, tailor-crossing, and ankle-crossing). We analyzed the data by using repeated one way ANOVA. Results: In normal group, there were increased in EMG activities of trunk muscles, but no significant differences during leg-crossing positions. In back pain group, there were increased in EMG activities of right external oblique, left. internal oblique, and both multifidus muscles in leg-crossing and tailor-crossing position, but no significant differences during leg-crossing positions. There was no significant difference of muscle activity of trunk muscles between the back pain group and the normal group. Conclusion: We suggest that low back pain people who have weak muscles of rectus abdominis, external and internal oblique are often experienced in leg-crossing posture than normal. To compensate this unstability of trunk, leg-crossing posture is substituted passive structure for activities of active muscle.

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1, 4-Dihydropyridine 칼슘길항제가 유두근의 정상활동전압 및 Ca-dependent, Slow Channel Mediated Action Potential에 미치는 영향 (The Effects of 1, 4-Dihydropyridine Calcium Antagonists on the Normal and Ca-dependent, Slow Channel Mediated Action Potentials in the Guinea Pig's Papillary Muscle)

  • 김민형;장석종
    • The Korean Journal of Physiology
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    • 제22권2호
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    • pp.207-218
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    • 1988
  • Effects of 1, 4-dihydropyridine compounds, such as nifedipine, nisoldipine, nitrendipine, and nimodipine which were calcium antagonists on the normal and Ca-dependent, slow channel mediated action potentials in the guinea pig's papillary muscle were investigated. The glass microelectrode was impaled into a papillary muscle cell for measurements of potential changes with the simultaneous tracing of isometric contraction. The concentration of Ca antagonists were 1 mg/l (nifedipine and nisoldipine), 2 mg/l (nitrendipine and nimodipine), which showed the maximal inhibition of isometric contraction (above 90%) and simultaneous effects on the normal action potentials and only the halves of those concentrations were sufficient to observe the effects on the calcium action potentials. The data for analysis were only chosen when the microelectrode was maintained in a cell throughout the experiments. 1, 4-Dihydropyridine compounds decreased the action potential duration but did not affect the resting membrane potential, overshoot, and upstroke velocity of the normal action potentials with the decrease in the isometric contraction. And with the decrease in the area and amplitude of isometric contraction, the area, amplitude, upstroke velocity and duration of Ca action potential was decreased. But the differences in the effects of the Ca antagonists were not observed. Therefore it is inferred that the changes in normal and Ca action potential induced by the 1, 4-dihydropyridine compounds with a common chemical structure would be caused by the slow inward Ca-current, not by a fast Na-current.

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비탄력 테이핑이 슬개대퇴관절 통증증후군 환자의 슬개건 통증과 슬관절부 근력, 보행에 미치는 영향 비교 (Comparison of the Effects of Non-elastic Taping on Patellar tendon Pain, Knee Muscle Strength and Gait in Patients with Patellofemoral Joint Pain Syndrome)

  • 정상모;정영준;안승원
    • 대한정형도수물리치료학회지
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    • 제25권2호
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    • pp.39-46
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    • 2019
  • Background: Ground repulsion or impact on the ground during daily activities, sports, or occupational activities may cause injury to the knee when walking. Non-elastic taping is effective in treating these problems in previous studies. Non-elastic taping strengthens the structure of the soft tissues of the injured knee joint to maintain constant tension, improves muscle rearrangement and function, and improves proprioception. Based on previous studies, we intended to see the therapeutic changes of non-elastic taping in patients with patellofemoral joint pain syndrome. Methods: The non-elastic taping application method was applied to the patient three times for five hours for one week. Non-elastic taping was applied to the patellar tendon with little space above the skin segment of the patellar femur, with both sides fixed by taping. Muscle strength and gait change were evaluated with non-elastc taping. Results: The knee flexion, extension strength and gait evaluation of the knee joint with inelastic taping showed significant differences after treatment. There was a significant difference in the comparison between the two groups after the treatment method was applied (p<.05). Conclusion: As a result, this study confirms that the non-elastic taping method applied for the treatment of patellar femoral joint pain syndrome is effective in the treatment.