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相关概念视频

Muscles that Move the Arm01:31

Muscles that Move the Arm

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Nine muscles are involved in arm movements. Two of these, the pectoralis major and latissimus dorsi, originate from the axial skeleton and are called axial muscles. The other seven originate from the scapula and are called the scapular muscles.
The pectoralis major has two origins. Its clavicular head originates on the medial half of the clavicle. In contrast, the sternocostal head originates on the costal cartilages of ribs 1-6, the sternum, and the aponeurosis of the external oblique of the...
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Muscles of the Shoulder01:23

Muscles of the Shoulder

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The muscles surrounding the shoulder girdle, including the clavicle and scapula, primarily stabilize the scapula. This stable base allows other muscles to move the humerus effectively. Scapular movements often mirror those of the humerus and extend its range of motion. For instance, raising the arm above the head would not be feasible without simultaneous upward rotation of the scapula.
Anterior Thoracic Muscles
The anterior thoracic muscles include the serratus anterior, subclavius, and...
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Deformation in a Circular Shaft01:10

Deformation in a Circular Shaft

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One of the distinctive characteristics of circular shafts is their ability to maintain their cross-sectional integrity under torsion. In other words, each cross-section continues to exist as a flat, unaltered entity, simply rotating like a solid, rigid slab. To understand the distribution of shearing stress within such a shaft, consider a cylindrical section inside this circular shaft. This section has a length of L and a radius of R, with one end fixed. The radius of the cylindrical section is...
286
Plastic Deformation in Circular Shafts01:20

Plastic Deformation in Circular Shafts

187
When materials are subjected to forces that surpass their yield strength, they undergo a process known as plastic deformation. This results in a permanent alteration or strain in their structure. This concept can be specifically applied to circular shafts, where the deformation leads to a change in its shape. The precise evaluation of this plastic deformation requires understanding the stress distribution within the circular shaft, which is achieved by calculating the maximum shearing stress in...
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Stresses in a Shaft01:18

Stresses in a Shaft

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The shaft PQ is subjected to a twisting force when equal and opposite torques are applied on either side. A section that cuts perpendicular to the shaft's axis at any arbitrary point R is examined to understand this. When the free-body diagram of the QR segment is analyzed, it reveals the shearing forces exerted by the PR portion onto the QR segment as the shaft experiences twisting.
Applying equilibrium conditions to the QR segment establishes that the internal shearing forces within the...
373
Stress Concentrations in Circular Shafts01:18

Stress Concentrations in Circular Shafts

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Consider the elastic torsion formula, which applies to a circular shaft with a consistent cross-section. This formula assumes that the shaft's ends are loaded with rigid plates firmly attached. However, in many cases, torques are applied to the shaft through mechanisms like flange couplings or gears, which are connected by keys inserted into keyways. This application method modifies the stress distribution near the point of torque application, causing it to deviate from the distributions...
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Measurement of Dynamic Scapular Kinematics Using an Acromion Marker Cluster to Minimize Skin Movement Artifact
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脚角偏差对旋转器袖口肌机械压缩潜力的影响

Rebekah L Lawrence1,2, Laura B Richardson3, Hannah L Bilodeau3

  • 1Program in Physical Therapy, Washington University in St. Louis School of Medicine, St. Louis, Missouri, USA.

Orthopaedic journal of sports medicine
|March 4, 2024
PubMed
概括

减小骨上方旋转,降低了在手臂升高120°时旋转手套碰撞的风险. 脚运动的偏差显著影响旋转手套肌的近距离,为冲击综合征的临床决定提供了信息.

关键词:
动力学是动力学.机械冲击 机械冲击旋转器袖子的旋转器袖子肩膀骨 肩膀骨 是一个

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科学领域:

  • 肩关节的生物力学.
  • 肌肉骨模型和模拟.

背景情况:

  • 旋转手套疾病可能源于脚运动受损,导致压缩和退行.
  • 骨动力障碍与旋转手套病理的进展有关.

研究的目的:

  • 为了建模脚角偏差对旋转手套肌附近的影响.
  • 为了评估手臂绑架期间下和内部冲击的风险.

主要方法:

  • 使用了无症状和症状肩膀的3DCT模型.
  • 肩面向与旋转和倾斜的渐进偏差进行模拟.
  • 计算了旋转器袖口插入和撞击结构之间的最小距离.

主要成果:

  • 降低了向上的头巾旋转,降低了在120°升高处的旋转器袖口 - 脊髓距离.
  • 观察到肌靠近/心肌关节的显著增加,在较低的角度有偏差.

结论:

  • 骨的向上旋转在保持旋转的空间在较高的臂部高度上起着至关重要的作用.
  • 了解脚运动偏差对于管理旋转手腕病理和冲击综合征至关重要.