椎脊柱位置的改变导致偏心肩部旋转强度的降低
Kevin Giordano1, Kyle Wasserberger2, Gretchen D Oliver3
1Physical Therapy, Orthopedics, Holy Cross Hospital, Ft. Lauderdale, United States.
International journal of sports medicine
|March 4, 2024
概括
运动员的头顶运动员.
科学领域:
- 运动医学 运动医学
- 生物力学 生物力学
- 整形外科 整形外科 整形外科
背景情况:
- 顶部运动员在非中性椎脊柱位置上经历了显著的肩膀需求.
- 奇特的肩膀力量对于在投/击中后减速手臂至关重要.
- 椎脊柱的位置改变可能会影响肩膀的强度和受伤风险.
研究的目的:
- 为了比较异常的肩膀旋转强度通过90°弧度.
- 评估中性和旋转椎位置之间的强度差异.
- 为了评估前额和肩膀平面的力量.
主要方法:
- 招募了52名健康参与者 (19M, 34F).
- 测量了异动力异心式肩部旋转强度.
- 测试发生在中性和旋转的椎位置,肩膀在前面和头骨平面上被绑架了90°.
主要成果:
- 在中性和旋转的椎位置之间发现了异常的外部和内部旋转强度的显著差异.
- 这些差异取决于运动平面 (正面与肩膀) 和肩膀旋转的程度.
- 对于外部和内部旋转,确定了具有显著强度差异的特定角度范围.
结论:
- 椎脊柱的位置显著地影响了空头运动员中异常的肩部旋转强度.
- 运动医学临床医生应考虑在功能性,非中性椎脊柱位置评估肩膀强度.
- 这种方法可以导致更准确的骨科评估和量身定制的康复计划.
相关概念视频
General Case of Eccentric Axial Loading
185
Unsymmetrical bending occurs when the bending moment applied to a structural member does not align with its principal axis. This misalignment leads to complex stress distributions and deflection patterns that differ from symmetrical bending, which are essential for designing structures to withstand different loading conditions.
Consider a member subjected to equal and opposite forces that are applied along a line that does not coincide with the member's neutral axis. In unsymmetrical...
Consider a member subjected to equal and opposite forces that are applied along a line that does not coincide with the member's neutral axis. In unsymmetrical...
185
Eccentric Axial Loading in a Plane of Symmetry
193
Eccentric axial loading occurs when an axial load is applied away from the centroidal axis of a structural member. This scenario is common in engineering, where structural elements may not be directly aligned due to various design or functional requirements.
193
Design of Columns under an Eccentric Load
523
Designing columns to withstand eccentric loads is a critical aspect of structural engineering, ensuring structures can support off-center loads without failure. This design process must account for the additional normal stresses introduced by eccentric loading, which can significantly influence a column's stress distribution and overall stability. An eccentric load applied to a column induces normal stresses that can be conceptualized as a combination of stresses due to an equivalent...
523
Eccentric Loading
373
Eccentric loading is a crucial concept in the study of structural engineering and mechanics, particularly when analyzing the stability and stress distribution in columns. Unlike centric loading, where the force is applied along the centroidal axis, causing uniform compression, eccentric loading occurs when a force is applied off-center. This off-center application introduces not only direct compressive stress but also bending stress, significantly influencing the column's behavior under...
373
Torsion of Noncircular Members
135
Circular shafts undergoing torsional stress maintain their cross-sectional integrity due to their axisymmetric nature. This symmetry ensures an even distribution of stress, allowing the shaft to withstand torsion without distorting. In contrast, square bars, lacking this axial symmetry, experience significant distortion across their cross-sections when subjected to torsion, with the exception of along their diagonals and at lines connecting midpoints. A detailed examination of a cubic element...
135
Deformation in a Circular Shaft
286
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


