心理物理:球员如何及时到达球场以抓住球
Peter McLeod1, Nick Reed, Zoltan Dienes
1Department of Experimental Psychology, University of Oxford, South Parks Road, Oxford OX1 3UD, UK. peter.mcleod@psy.ox.ac.uk
Nature
|November 25, 2003
概括
球员通过调整他们对球的视线高度和水平角度来捕捉球. 这一策略将成功拦截所需的加速减至最低.
科学领域:
- 生物力学 生物力学
- 神经科学是一个神经科学.
- 机器人技术 机器人技术 机器人技术
背景情况:
- 对象跟踪对于在动态环境中进行拦截至关重要.
- 人类和动物的运动涉及复杂的空间和时间计算.
- 了解拦截策略可以告知机器人控制系统.
研究的目的:
- 阐明人类用来捕捉移动物体的视觉指导策略.
- 在拦截过程中量化视线控制和运动调整之间的关系.
- 确定适用于生物和人工系统的最佳拦截原则.
主要方法:
- 在捕球任务中分析球员的视线方向和身体运动.
- 视觉反循环和运动控制的数学建模.
- 计算模拟用于在不同条件下测试拦截策略.
主要成果:
- 野外运动员保持水平视角与球的增加率不变.
- 视线升高角度以逐渐下降的速度增加.
- 这种策略尽量减少了野外运动员在拦截时所需的加速.
结论:
- 人类的拦截依赖于一种特定的,优化的视觉运动策略.
- 确定的战略平衡了空间和时间信息,以实现有效的捕捞.
- 这些发现对理解人类感知-行动合和设计自主系统有影响.
相关概念视频
Projectile Motion: Example
11.4K
The theory of projectile motion is very useful for players of several sports to improve their performance. For example, a javelin thrower needs to throw their javelin in such a way that it travels as far as possible. The javelin thrower takes a short run-up to increase the initial speed of the javelin. The range of a projectile is at its maximum at a 45° angle so javelin throwers try to angle their throw as close to 45° as possible.
When we speak of the range (R) of a projectile on...
When we speak of the range (R) of a projectile on...
11.4K
Force and Momentum
19.6K
Force and momentum are intimately related. Force acting over time can change momentum, and Newton's second law of motion can be stated in its most broadly applicable form in terms of momentum. Momentum can be applied to systems where the mass is changing, such as rockets, as well as to systems of constant mass. Also, momentum continues to be a key concept in the study of atomic and subatomic particles in quantum mechanics. One can consider systems with varying mass in some detail; however, the...
19.6K
Conservation of Linear Momentum for a System of Particles
715
In the dynamic realm of billiards, a fascinating interplay of forces governs the motion of cue balls and stationary balls. When the cue ball collides with a stationary ball, linear momentum is exchanged. The cue ball imparts a fraction of its linear momentum to the stationary ball, causing the cue ball to decelerate while initiating the motion of the stationary ball.
The impulsive force at play during this interaction is of extremely short duration, rendering its impulse negligible. When...
The impulsive force at play during this interaction is of extremely short duration, rendering its impulse negligible. When...
715
Principle of Angular Impulse and Momentum: Problem Solving
714
Consider a ball of mass m, attached to a massless rod of known length, subjected to a time-dependent torque. If the initial velocity of the mass is known, then the final velocity of the mass for time t can be determined using the principle of angular impulse and momentum.
Initially, a free-body diagram of the system is drawn to illustrate all the forces acting upon the system, providing a crucial understanding of the dynamics at play. Then, the principle of angular impulse and momentum is...
Initially, a free-body diagram of the system is drawn to illustrate all the forces acting upon the system, providing a crucial understanding of the dynamics at play. Then, the principle of angular impulse and momentum is...
714
Motion of a Projectile
4.0K
Projectile motion becomes evident when a player kicks the ball into the air. The launch angle, or the angle at which the ball is kicked, plays a crucial role in determining the trajectory of the projectile. As the ball soars through the air, influenced solely by gravity, its motion can be dissected into two independent velocity components: the horizontal and the vertical.
Horizontal motion, governed by the initial kick, maintains a constant velocity throughout the flight of the soccer ball.
Horizontal motion, governed by the initial kick, maintains a constant velocity throughout the flight of the soccer ball.
4.0K
Quadratic Models
373
Quadratic models are mathematical representations used to describe relationships in which the rate of change changes at a constant rate. These models appear in a wide variety of natural and engineered systems, especially those involving motion, forces, and optimization. One common application is analyzing the vertical motion of objects influenced by gravity, such as a ball thrown into the air.In such scenarios, the object's height changes over time in a curved pattern, rising to a maximum point...
373


