在外骨架辅助和虚拟抓取期间的抓取力动力学
概括
握力动力学揭示了传感运动控制. 手部外骨架和神经康复中的虚拟现实适应用户模型,提高治疗的有效性.
科学领域:
- 神经科学是一个神经科学.
- 生物力学 生物力学
- 康复工程 康复工程 康复工程
背景情况:
- 握力动态对于评估感觉运动控制和神经条件至关重要.
- 握力概况可以用于神经康复中的评估和生物反培训.
- 与传统方法相比,先进的神经康复技术,如外骨架辅助抓取和虚拟现实可能会改变感觉运动控制和抓取力特征.
研究的目的:
- 为了研究外骨架辅助抓握过程中抓握力概况的变化.
- 为了检查抓住不同重量的虚拟物体时的抓地力动态.
- 评估传感运动控制在高级神经康复环境中的适应性.
主要方法:
- 可行性研究涉及六名健康参与者.
- 在使用手外骨和不使用手外骨的抓任务中分析抓力概况.
- 评估抓地力适应虚拟物体重量.
主要成果:
- 一个轻量级,兼容的手外骨架协助抓握,而不会改变核心抓握力动力学.
- 参与者迅速适应未知的虚拟重量,使用高效的握力.
- 预测超越力产生,匹配虚拟对象的惯力.
结论:
- 先进的神经康复方法的使用者适应并利用现有的内部前模型来掌握.
- 对握力动态的洞察力可以提高神经康复工具的设计和有效性,如手外骨架.
- 研究结果表明,神经康复技术的可用性和康复功能有所改善.
相关概念视频
Static and Kinetic Frictional Force
16.0K
One of the simpler characteristics of sliding friction is that it is parallel to the contact surfaces between systems, and is always in a direction that opposes the motion or attempted motion of the systems relative to each other. If two systems are in contact and moving relative to one another, then the friction between them is called kinetic friction. For example, kinetic friction slows a hockey puck sliding on ice.
However, if two systems are in contact and are stationary relative to one...
However, if two systems are in contact and are stationary relative to one...
16.0K
Frictional Forces on Screws
1.2K
Screws are characterized by a helical ridge known as a thread wrapped around a cylindrical shaft. They are commonly used as fasteners to hold objects together or to transmit power and motion in machines. One type of screw that is particularly useful for transmitting power is the square-threaded screw.
A jack with a square-threaded screw is a mechanical device used to lift heavy loads by applying a force at its handle. When the force is applied, the screw turns, raising the load. The screw can...
A jack with a square-threaded screw is a mechanical device used to lift heavy loads by applying a force at its handle. When the force is applied, the screw turns, raising the load. The screw can...
1.2K
Frictional Force
8.1K
When a body is in motion, it encounters resistance because the body interacts with its surroundings. This resistance is known as friction, a common yet complex force whose behavior is still not completely understood. Friction opposes relative motion between systems in contact, but also allows us to move. Friction arises in part due to the roughness of surfaces in contact. For one object to move along a surface, it must rise to where the peaks of the surface can skip along the bottom of the...
8.1K
Three-Dimensional Force System
2.0K
In mechanical engineering, a three-dimensional force system is a system of forces acting in three dimensions, with forces applied along the x, y, and z coordinate axes. The three-dimensional force system is an important concept in mechanical engineering, as it allows engineers to understand and analyze the behavior of objects and structures in three dimensions. By understanding the forces acting on a system, engineers can design more efficient and effective mechanical systems that can withstand...
2.0K
Frictional Forces on Flat Belts
926
Flat belts are commonly used in various industrial applications for transmitting power from one pulley to another. When a flat belt is wrapped around a set of pulleys, it experiences different tensions at the driving pulley ends due to the friction between the belt and pulley surface. When the pulley moves in a counterclockwise direction, the tension T2 on the opposite side of the pulley where the belt is moving away from is higher than the tension T1 on the side where the belt is moving...
926
Three-Dimensional Force System:Problem Solving
674
A three-dimensional force system refers to a scenario in which three forces act simultaneously in three different directions. This type of problem is commonly encountered in physics and engineering, where it is necessary to calculate the resultant force on the system, which can then be used to predict or analyze the behavior of the object or structure under consideration.
To solve a three-dimensional force system, first resolve each force into its respective scalar components. Do this using...
To solve a three-dimensional force system, first resolve each force into its respective scalar components. Do this using...
674


