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相关概念视频

Higher Mental Functions of Brain: Learning and Memory01:26

Higher Mental Functions of Brain: Learning and Memory

Memory is one of the most vital higher mental functions of the brain. Memory is closely related to learning because it enables us to retain information and experiences from our past to use them in our present life. It also helps us to remember facts, events, and skills, such as riding a bike or swimming. There are two types of memory — declarative memory, which involves memorizing facts or events, and procedural memory, which enables us to remember how to do something like writing or playing an...
Introduction to Learning01:18

Introduction to Learning

Learning is the process of acquiring knowledge or skills through practice or experience, leading to long-lasting behavioral changes. This acquisition occurs through interaction with the environment and requires practice or experience. For instance, mastering a skill such as surfing requires considerable practice and experience, highlighting the essential role of repeated interactions with the environment in learning.
In contrast to learned behaviors, unlearned behaviors such as crying, sexual...
Associative Learning01:27

Associative Learning

Associative learning is a fundamental concept in behavioral psychology, wherein a connection is established between two stimuli or events, leading to a learned response. This process is critical in understanding how behaviors are acquired and modified. Conditioning, the mechanism through which associations are formed, can be divided into two main types: classical conditioning and operant conditioning, each elucidating different aspects of associative learning.
Classical conditioning, also known...
Cognitive Learning01:21

Cognitive Learning

Cognitive learning is based on purposive behavior, incidental learning, and insight learning.
E. C. Tolman's theory of purposive behavior emphasizes that much behavior is goal-directed. He argued that to understand behavior, we must look at the entire sequence of actions leading to a goal. For instance, high school students study hard, not just due to past reinforcement but also to achieve the goal of getting into a good college.
Tolman introduced the idea that behavior is influenced by...
Purposive Learning01:22

Purposive Learning

E. C. Tolman emphasized the purposiveness of behavior — the idea that much of our behavior is goal-directed. For instance, employees who aim for a promotion work diligently to meet their targets. Tolman argued that when classical conditioning and operant conditioning occur, the organism acquires certain expectations. In classical conditioning, a child might fear a dog because they expect it to bite. In operant conditioning, a person might consistently work overtime because they expect a bonus...
Observational Learning01:12

Observational Learning

Albert Bandura's observational learning, also known as imitation or modeling, occurs when a person observes and imitates another's behavior. It is a quicker process than operant conditioning. A well-known example is the Bobo doll study, where children who saw an adult acting aggressively towards the doll were more likely to act aggressively when left alone, compared to those who observed a nonaggressive adult. Many psychologists view observational learning as a form of latent learning because...

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相关实验视频

Updated: Jun 20, 2026

Experience is Instrumental in Tuning a Link Between Language and Cognition: Evidence from 6- to 7- Month-Old Infants' Object Categorization
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在自由移动的中学习对象-在-上下文序列.

S Abbaspoor1,2, K Rahman1,2, W Zinke1,2

  • 1Department of Psychological Sciences, Vanderbilt University, Nashville, United States.

bioRxiv : the preprint server for biology
|January 3, 2024
PubMed
概括

子在一个新的3D环境中表现出灵活的学习,展示了复杂的条件规则的快速获取. 这种"学习学习"突出了自然环境中的认知灵活性.

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科学领域:

  • 认知神经科学 认知神经科学
  • 灵长类动物的行为
  • 比较心理学比较心理学

背景情况:

  • 灵长类动物的认知依赖于环境相互作用影响的灵活学习.
  • 实验室研究往往限制了环境线索和积极感知,阻碍了对认知灵活性的研究.
  • 了解自然环境中的灵活学习对于推进认知科学至关重要.

研究的目的:

  • 开发和验证一个3D外,用于研究自由移动的的灵活学习.
  • 调查灵长类动物在综合,多感官环境中的学习能力和灵活性.
  • 分析与学习和"学习学习"相关的运动动态的变化.

主要方法:

  • 为子建造了一个3D围,并安装了墙上的触摸屏.
  • 设计了一项任务,要求在屏幕上基于时空规则的顺序对象选择.
  • 利用无标记追踪和惯性测量来分析3D位置和运动动态.

主要成果:

  • 两只成功地学会了多个有条件的项目-上下文关联 (超过50个和80个独特的备忘录).
  • 学习发生得很快,没有明显的能力限制.
  • 头部运动模式随着学习而演变,表明"学习学习"和自适应运动控制.

结论:

  • 这种方法使得研究灵活的灵活认知能够在受控但自然的环境中研究灵长类动物.
  • 这一发现表明子具有强大而灵活的学习能力.
  • 该设置将电生理学研究的特征与展示定位认知的任务协调一致.