在健康个体中,动态平衡功能的特征
Zhiqiang Qi1,2,3,4,5, Xiang Mao1,2,3,4,5, Ran Ji1,2,3,4,5
1Department of Otorhinolaryngology Head and Neck Surgery, Tianjin First Central Hospital, School of Medicine, Nankai University, Tianjin, China.
Acta oto-laryngologica
|September 24, 2025
概括
与年轻人相比,老年人表现出较差的动态平衡,反应较慢,适应能力较低. 这项研究提供了关键的基线数据与年龄相关的平衡功能使用计算机化动态位学.
科学领域:
- 老年学是指老年学的学科.
- 生物力学 生物力学
- 神经科学是一个神经科学.
背景情况:
- 准确诊断和治疗平衡功能障碍需要所有年龄段的全人口平衡数据.
- 关于特定年龄的平衡特征的数据有限,这阻碍了有效的临床干预.
研究的目的:
- 评估不同年龄组的健康个体的动态平衡功能.
- 通过使用标准化平衡测试,收集各种年龄人口统计学基线绩效数据.
主要方法:
- 100名健康受试者参加了计算机化动态位图 (CDP).
- 使用感官组织测试 (SOT),运动控制测试 (MCT),适应测试 (ADT) 和稳定性极限 (LOS) 评估平衡.
主要成果:
- 随着难度的增加,SOT得分下降;MCT在年轻人中显示下肢姿势延迟.
- 在ADT中发现,在脚伸展期间,跨年龄组的摇摆能量存在显著差异.
- 与老年人相比,LOS测试表明年轻人反应时间更快,但运动速度更快.
结论:
- 老年人表现出较差的动态平衡,恢复速度较慢,运动适应能力降低.
- 老年人需要更长的反应时间来保持平衡,突出了与年龄相关的功能衰退.
更多相关视频
相关概念视频
Equilibrium and Balance
6.3K
The inner ear assumes dual functionalities of auditory perception and equilibrium maintenance. The vestibule is the organ responsible for balance. This organ contains mechanoreceptors, specifically hair cells, endowed with stereocilia, which aid in deciphering information regarding the position and motion of our heads. Two intrinsic components, the utricle and saccule, help perceive head position, while the semicircular canals track head movement. Neurological messages initiated in the...
6.3K
Static Equilibrium - I
18.6K
A rigid body is said to be in dynamic equilibrium when both its linear and angular acceleration are zero, relative to an inertial frame of reference. This means that a body in equilibrium can be moving, but only when its linear and angular velocities are constant. A rigid body is said to be in static equilibrium when it is at rest in the selected frame of reference. The distinction between static equilibrium (e.g., a state of rest) and dynamic equilibrium (e.g, a state of uniform motion) is...
18.6K
Static Equilibrium - II
9.8K
Static equilibrium is a special case in mechanics that is very important in everyday life. It occurs when the net force and the net torque on an object or system are both zero. This means that both the linear and angular accelerations are zero. Thus, the object is at rest, or its center of mass is moving at a constant velocity. However, this does not mean that no forces are acting on the object within the system. In fact, there are very few scenarios on Earth in which no forces are acting upon...
9.8K
Stability of Equilibrium Configuration: Problem Solving
988
The stability of equilibrium configurations is an important concept in physics, engineering, and other related fields. In simple terms, it refers to the tendency of an object or system to return to its equilibrium position after being disturbed. The stability of an equilibrium configuration can be analyzed by considering the potential energy function of the system and examining its behavior near the equilibrium point.
Problem-solving in the context of the stability of equilibrium configuration...
Problem-solving in the context of the stability of equilibrium configuration...
988
Homeostatic Imbalance
32.3K
Homeostasis is the maintenance of a stable internal environment within the body, which is crucial for the proper functioning of cells, tissues, organs, and organ systems. The body has various control mechanisms that work together to regulate various physiological parameters such as temperature, blood pressure, pH balance, and fluid balance, to name a few. These control mechanisms are based on feedback loops that can be either positive or negative.
However, sometimes these feedback loops fail,...
However, sometimes these feedback loops fail,...
32.3K
Energy Diagrams - I
5.6K
The dynamics of a mechanical system can be easily understood by interpreting a potential energy diagram. Since energy is a scalar quantity, the interpretation of the dynamics of the system becomes even simpler.
Take the example of a skater on a parabolic ramp. The potential energy at different points along the ramp will be proportional to the height of the ramp, which varies quadratically with the horizontal position on the ramp. As the skater moves down the ramp from the highest position,...
Take the example of a skater on a parabolic ramp. The potential energy at different points along the ramp will be proportional to the height of the ramp, which varies quadratically with the horizontal position on the ramp. As the skater moves down the ramp from the highest position,...
5.6K


