• 제목/요약/키워드: spinal load

검색결과 42건 처리시간 0.024초

크?현상이 요추 운동분절내의 척추경악 교합에 미치는 영향 해석 (Analysis of the Creep Effect on the Dural-sac Occlusion in the Lumbar Spinal Motion Segment)

  • 김영은;조성윤
    • 대한의용생체공학회:의공학회지
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    • 제22권6호
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    • pp.551-557
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    • 2001
  • 크맆현상에 따른 척추경막의 교합 원인과 교합량을 유한요소 모델을 이용하여 정량적으로 구하였다. 교합량은 척추경막의 단면적 변화로 나타내었다. 500 N부터 6000 N가지 수직 방향으로의 축하중과 2 Nm에서 10 Nm 가지의 굴전. 신전 모멘트 변화에 따른 척추경막의 교합량을 구한 결과 2000 N이상에서의 하중에서만 척추경막의 교합이 발생하였다. 신전을 동반한 수직압축의 경우 교합량이 단순 압축에 비해 더 크게 나타났다. 2 kN의 압축력이 8 Nm의 신전 모멘트와 함께 작용되었을 경우 7.4%. 10 Nm의 모멘트와 함께 작용하였을 경우에는 10.5%의 교합량이 발생했다 크릴에 따른 교합량의 변화는 신전시 가장 크게 나타났으며 10 Nm의 모멘트가 작용될 경우에서 6.7%의 교합량과 2.4%의 체적 감소가 계산되었다. 교합현상은 주로 황색인대의 이완과 추간판의 팽륜에 의해 발생되었으며 신전시에는 황색인대가 교합의 주원인이 되었다. 굴전으로 인한 교합현상은 발생되지 않았다.

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앉는 면의 각도가 정상성인의 심부 복근과 다리근육 두께에 미치는 영향 (The Effect of Seating Surface Angle on the Deep Abdominal Muscle and Lower Limb Muscle Thickness in Normal Adults)

  • 하성영;김경;임상철
    • 대한통합의학회지
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    • 제10권3호
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    • pp.131-140
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    • 2022
  • Purpose : Although many studies have explored the effect of seating side angles on the spinal curve and surrounding muscles during seating, only a few studies have investigated the effect of different seating face angles on different lower limb and deep trunk muscles. Therefore, this study investigated the effects of seating surface angles (0 degrees, 10 degree anterior, and 10 degree rear) on lower extremity and deep trunk muscles in healthy adults. Methods : Thirty people were asked to sit once on each seating surface three times during the day, and their muscle thicknesses were measured by ultrasound while sitting. The method of sitting was the same when sitting on the three seating surfaces. Results : From the comparison results of the muscle thicknesses according to the seating surface angles, a significant difference existed in the muscle thicknesses of the vastus medialis, vastus medialis oblique, vastus intermedius, soleus and gastrocnemius (p<.05). However, no significant difference was found in the transversus abdominis, internal obliques, rectus femoris and vastus lateralis (p>.05). Conclusion : Our findings revealed that the lower back load decreases, the leg load increases, and the legs specific muscles are affected as the body tilts forward when sitting on the seating surface inclined forward. Therefore, it is possible to suggest a forwardly inclined seating surface that reduces lower back loads and utilizes the posture-maintaining muscles of the legs when sitting in a person with a poor sitting posture or lower back pain at ordinary times.

요추 추체의 골 -재형성에 대한 준분자 동력학적 접근 방법 (Analysis of Bone-Remodeling Process Using Quasi-molecular Dynamics)

  • 김영은;최훈희
    • 대한의용생체공학회:의공학회지
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    • 제24권5호
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    • pp.447-451
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    • 2003
  • 준분자 동력학 기법을 적용한 새로운 골-재형성 해석 방법을 제안 하였다. 본 연구에서는 기존의 연구에서 고려하지 못 하였던 해변골 내의 유체 압력이 골-재형성에 미치는 영향 까지를 고려한 해석 모델이 제안 되었다. 골-재형성의 대상 모델로 추체 시상면상의 2-D 모델을 개발 하였으며, 약 2kN의 수직 압축력에 해당되는 1.8564mm의 일정 변위 조건에 따른 모델내의 준분자들의 재배치 과정을 해석 하였다. 수렴된 피질골 및 해면골 모델의 준 분자의 형상은 실제 추체의 모양과 일치된 형태를 보이고 있었으며 계산된 수핵 압력 변화도 기존의 in-Vitro 실험 결과와 비교적 일치 하여 본 모델의 타당성을 입증 할 수 있었다.

예상 부하와 갑작스런 부하에 따른 정상 성인의 복직근과 요부 척추기립근의 근활성도 차이 (Comparison of Rectus Abdominalis and Erector Spine Muscle Activities during Expected and Unexpected Sudden Loadings in Young Healthy Adults)

  • 국중석;김재헌;이준형;박부애;박다솜;유혜인
    • 대한물리치료과학회지
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    • 제18권4호
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    • pp.65-72
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    • 2011
  • The purpose of this study was to investigate the responses of the trunk muscle during expected and unexpected sudden loadings of the hands on the sagittal plane. Twenty, young healthy adults(male 10, female 10) were participated to two different loading conditions : expected and unexpected sudden loadings. Different weights were dropped in hand : 5lb, 6lb, 7lb for male, and 3lb, 4lb, 5lb for female. EMG activity of rectus abdominalis and erector spine muscle were collected. Rectus abdominalis and lumbar erector spine muscle activity significantly increased in unexpected sudden loadings than expected sudden loadings(p<.05). This results indicate that co-contraction of abdominal and back muscle contribute for dynamic spinal stability during expected or unexpected activities of daily living. Preparatory adjustments can be made which reduce the postural perturbation to sudden load and prevent low back injuries.

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Effects of NOS Inhibitors on Arthritis and Arthritic Pain in Rats

  • Min, Sun-Seek
    • The Korean Journal of Physiology and Pharmacology
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    • 제11권6호
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    • pp.253-257
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    • 2007
  • Among the arthritis symptoms, chronic pain is the most serious, and it can profoundly affect the quality of human life. Unfortunately, the mechanism of development in arthritis and arthritic pain has not yet been precisely elucidated. Accumulating evidence indicates that nitric oxide (NO) plays a pivotal role in nociceptive processing in the spinal cord. However, the modulation mechanism of NO in the peripheral site of arthritis and arthritic pain has not been clarified. Therefore, I determined in the present study which nitric oxide synthase (NOS) was involved in the induction of arthritis and arthritic pain. Monoarthritis was induced by intra-articular injection of carrageenan (2%, $50{\mu}l$) into rats, and resulted in the reduction of weight load on the injected leg, increase of knee joint diameter and inflammatory response. Pre-treatment of rats with L-N6-(1-iminoethyl)-lysine (L-NIL, $500{\mu}g$, in $50{\mu}l$), an inhibitor of inducible NOS (iNOS), partially prevented the induction of pain-related behavior and partially reduced inflammatory response in the synovial membrane in the knee joint. These results suggest that iNOS in the knee joint may play an important role in the induction of pain-related behavior and inflammation, and that NO produced by iNOS may be associated with nociceptive signaling in the peripheral site.

부하유무에 따른 수영운동이 중추신경계 손상 흰쥐의 혈청 BDNF 농도 및 행동변화에 미치는 영향 (The Effect of the Swimming Exercise by Load on Concentration of BDNF in Serum and Behavioral Change of CNS Injury in the Rats)

  • 하미숙;형인혁
    • 한국콘텐츠학회논문지
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    • 제9권12호
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    • pp.391-399
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    • 2009
  • 본 연구의 목적은 중추신경계 손상의 쥐에 운동강도에 따른 신경계 회복을 알아보기 위해 부하수영과 무부하수영이 혈청 BDNF 농도와 행동학적 변화에 어떠한 영향을 미치는가를 확인하고자 하였다. 실험동물로는 Sprague-Dawley 수컷 흰쥐를 사용하였으며, Ketamine을 복강 내에 주사하여 마취한 뒤 제 1-2요추의 척수에 6-OHDA를 $100{\mu}{\ell}$ 주입하여 척수손상을 유발시켰다. 척수 손상으로 유발된 행동학적 변화를 알아보기 위해 BBB와 경사판 검사를 기록하였다. 혈청 BDNF는 수술 후 14일에 혈액을 채취해 흡광도를 측정하였다. 척수 손상 후 무부하군에서는 행동변화가 대조군에 비해 유의하게 증가하였고, 혈청 BDNF 농도는 다른 군에 비해 무부하군에서 증가하였다. 이러한 결과로 보아 저강도 수영운동을 중추신경 손상 후 초기에 적용하면 신경조직의 회복에 영향을 주리라 생각된다.

피혁제조 공정 중 토글 작업에서 요통과 관련된 요추 부하의 생체역학적 분석과 개선 방안 (Biomechanical Analysis on Dynamic Back Loading Related with Low Back Disorders with Toggle Tasks in Leather Industry Low back)

  • 김규상;홍창우;이동경
    • 한국산업보건학회지
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    • 제18권3호
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    • pp.239-247
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    • 2008
  • Low back disorders (LBDs) have been the most common musculoskeletal problem in Korean workplaces. It affects many workers, and is associated with high costs to many companies as well as the individual, which can negatively influence even the quality of life of workers. The _evaluation of low back disorder risk associated with manual materials handling tasks can be performed using variety of ergonomic assessment tools such as National Institute for Occupational Safety and Health (NIOSH) Revised Lifting Equation (NLE), the Washington Administrative Code 296-62-0517 (WAC), the Snook Tables etc. But most of these tools provide limited information for choosing the most appropriate assessment method for a particular job and in finding out advantage and disadvantage of the methods, and few have been assessed for their predictive ability. The focus of this study was to _evaluate spinal loads in real time with lifting and pulling heavy cow leathers in variety of postures. Data for estimating mean trunk motions were collected as employees did their work at the job site, using the Lumbar Motion Monitor. Eight employees (2 males, 6 females) were selected in this study, in which the load weight and the vertical start and destination heights of the activity remained constant throughout the task. Variance components (three dimensional spaces) of mean trunk kinematic measures were estimated in a hierarchical design. They were used to compute velocity and acceleration of multiple employees performing the same task and to repetitive movements within a task. Therefore, a results of this study could be used as a quantitative, objective measure to design the workplace so that the risk of occupationally related low back disorder should be minimized.

뇌졸중 후 편마비 환자의 체위변화에 따른 척수운동신경원 흥분성 변화 (Changes in the Spinal Motor Neuron Excitability Depending on Postural Changes in Post Stoke Hemiplegics)

  • 박영현;김용남;김수현;오석;최지호;김태열
    • The Journal of Korean Physical Therapy
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    • 제22권4호
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    • pp.15-20
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    • 2010
  • Purpose: The purpose of this study was to measure changes in the H-reflex and V wave under loading conditions (e.g. prone and standing position) and to investigate whether postural change would affect the H-reflex and V wave in post stroke hemiplegic patients. Methods: Thirty persons with hemiplegia resulting from stroke (20 males, 10 females) participated in this study. Electromyography (EMG) was used to electrically stimulate and record the soleus H-reflexes and V waves under various loading conditions. The normality of the distribution of each variable (H latency, $H_{max}/M_{max}$ ratio, $V_{max}/M_{max}$ ratio) was tested using the Kolmogorov-Smirnov test. The means of normally distributed continuous data were assessed by independent t-test (${\alpha}$=0.05). Results: There were statistically significant differences in $H_{max}/M_{max}$ ratio (p<0.01), $V_{max}/M_{max}$ ratio (p<0.01), H latency (p<0.01) among the prone and standing position. Conclusion: We found that the H-reflex and V wave in standing position was more active to weight bearing load than prone position.

The Mechanical Effect of Rod Contouring on Rod-Screw System Strength in Spine Fixation

  • Acar, Nihat;Karakasli, Ahmet;Karaarslan, Ahmet A.;Ozcanhan, Mehmet Hilal;Ertem, Fatih;Erduran, Mehmet
    • Journal of Korean Neurosurgical Society
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    • 제59권5호
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    • pp.425-429
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    • 2016
  • Objective : Rod-screw fixation systems are widely used for spinal instrumentation. Although many biomechanical studies on rod-screw systems have been carried out, but the effects of rod contouring on the construct strength is still not very well defined in the literature. This work examines the mechanical impact of straight, $20^{\circ}$ kyphotic, and $20^{\circ}$ lordotic rod contouring on rod-screw fixation systems, by forming a corpectomy model. Methods : The corpectomy groups were prepared using ultra-high molecular weight polyethylene samples. Non-destructive loads were applied during flexion/extension and torsion testing. Spine-loading conditions were simulated by load subjections of 100 N with a velocity of $5mm\;min^{-1}$, to ensure 8.4-Nm moment. For torsional loading, the corpectomy models were subjected to rotational displacement of $0.5^{\circ}\;s^{-1}$ to an end point of $5.0^{\circ}$, in a torsion testing machine. Results : Under both flexion and extension loading conditions the stiffness values for the lordotic rod-screw system were the highest. Under torsional loading conditions, the lordotic rod-screw system exhibited the highest torsional rigidity. Conclusion : We concluded that the lordotic rod-screw system was the most rigid among the systems tested and the risk of rod and screw failure is much higher in the kyphotic rod-screw systems. Further biomechanical studies should be attempted to compare between different rod kyphotic angles to minimize the kyphotic rod failure rate and to offer a more stable and rigid rod-screw construct models for surgical application in the kyphotic vertebrae.

수동 휠체어 추진 속도에 따른 상지 관절 생체역학적 영향 분석 (Upper Extremity Biomechanics of Manual Wheelchair Propulsion at Different Speeds)

  • 황선홍
    • 대한의용생체공학회:의공학회지
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    • 제43권4호
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    • pp.241-250
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    • 2022
  • It is known that chronic pain and injury of upper limb joint tissue in manual wheelchair users is usually caused by muscle imbalance, and the propulsion speed is reported to increase this muscle imbalance. In this study, kinematic variables, electromyography, and ultrasonographic images of the upper limb were measured and analyzed at two different propulsion speeds to provide a quantitative basis for the risk of upper extremity joint injury. Eleven patients with spinal cord injury for the experimental group (GE) and 27 healthy adults for the control group (GC) participated in this study. Joint angles and electromyography were measured while subjects performed self-selected comfortable and fast-speed wheelchair propulsion. Ultrasound images were recorded before and after each propulsion task to measure the acromiohumeral distance (AHD). The range of motion of the shoulder (14.35 deg in GE; 20.24 deg in GC) and elbow (5.25 deg in GE; 2.57 deg in GC) joints were significantly decreased (p<0.001). Muscle activation levels of the anterior deltoid, posterior deltoid, biceps brachii, and triceps brachii increased at fast propulsion. Specifically, triceps brachii showed a significant increase in muscle activation at fast propulsion. AHD decreased at fast propulsion. Moreover, the AHD of GE was already narrowed by about 60% compared to the GC from the pre-tests. Increased load on wheelchair propulsion, such as fast propulsion, is considered to cause upper limb joint impingement and soft tissue injury due to overuse of the extensor muscles in a narrow joint space. It is expected that the results of this study can be a quantitative and objective basis for training and rehabilitation for manual wheelchair users to prevent joint pain and damage.