兴奋可能不是任何令人兴奋的事情
Karen E Smith1, Kristina Woodard1, Seth D Pollak1
1University of Wisconsin - Madison.
概括
兴奋,心理学中的一个概念,是审查它的生理起源和应用到人类的行为和情绪. 它在当前理论中的一致性和有用性仍然值得怀疑.
科学领域:
- 心理学 心理学 心理学
- 神经科学是一个神经科学.
- 生理学 生理学 生理学
背景情况:
- 兴奋,被概念化为非特定激活,历史上与人类行为有关,包括情绪,学习和记忆.
- 尽管它被广泛使用,激发的概念面临着关于模两可和混合的经验支持的批评,特别是在情感研究中.
- 当代心理学理论往往保留了兴奋,但没有充分解决这些概念问题.
研究的目的:
- 批判性地检查兴奋的构造.
- 追踪术语从生理学的演变到其在心理学中的应用,特别是关于情绪的发展.
- 评估当前唤醒在理解人类行为的一致性和实用性.
主要方法:
- 关于生理学中兴奋的起源的文献综述.
- 在心理学研究中对兴奋概念的翻译和应用的分析,重点是情感.
- 对构造的一致性和有用性的批判性评估.
主要成果:
- 兴奋的概念起源于生理激活状态.
- 它在心理学中的应用,特别是对情绪的应用,一直是不一致和有问题的.
- 支持唤起在情感中的作用的证据是混合的,概念的模糊性仍然存在.
结论:
- 兴奋的构造,尽管具有历史意义,但提出了重大的概念挑战.
- 它目前在理解人类行为和情绪方面的应用缺乏一致性和明确的实用性.
- 在心理学科学中,需要进一步细化或重新评估兴奋结构.
相关概念视频
Optimal Arousal Theory
705
The optimal arousal theory suggests that performance is maximized when an individual experiences a moderate level of arousal. This theory is closely tied to the Yerkes-Dodson law, which illustrates an inverted U-shaped relationship between arousal and performance. The law, formulated by psychologists Robert Yerkes and John Dodson, implies an ideal arousal level for optimal performance, and deviations from this level can lead to declines in effectiveness.
Inverted U-Shaped Performance Curve
The...
Inverted U-Shaped Performance Curve
The...
705
Sympathetic Activation
6.6K
The sympathetic division can influence tissues and organs by releasing norepinephrine at peripheral synapses and distributing epinephrine and norepinephrine through the bloodstream. In times of crisis or stress, sympathetic activation occurs, which is regulated by sympathetic centers in the hypothalamus. As a result, sympathetic activation prepares the body for physical exertion, rapid ATP production, and heightened alertness, allowing individuals to respond effectively to challenging or...
6.6K
Physiology of Emotion
3.1K
The physiology of emotions is a multifaceted process involving the autonomic nervous system, brain structures, hormones, and neurotransmitters. This intricate interplay dictates how emotions manifest in the body and influence behavior.
Autonomic Nervous System
The autonomic nervous system (ANS) plays a critical role in emotional responses by regulating involuntary physiological functions. It consists of two main components: the sympathetic and parasympathetic systems. The sympathetic system...
Autonomic Nervous System
The autonomic nervous system (ANS) plays a critical role in emotional responses by regulating involuntary physiological functions. It consists of two main components: the sympathetic and parasympathetic systems. The sympathetic system...
3.1K
Sympathetic Signaling
2.1K
Sympathetic signaling, a vital part of the autonomic nervous system, plays a crucial role in mobilizing the body's resources in response to stress or emergencies. It involves the transmission of nerve impulses from sympathetic preganglionic fibers to postganglionic fibers. This results in the release of specific neurotransmitters and activation of adrenergic receptors.
Sympathetic preganglionic fibers release the neurotransmitter acetylcholine (ACh) onto the ganglionic neurons in the...
Sympathetic preganglionic fibers release the neurotransmitter acetylcholine (ACh) onto the ganglionic neurons in the...
2.1K
Adrenergic Agonists: Indirect-Acting Agents
2.5K
Indirect-acting adrenergic agonists potentiate the effects of endogenous catecholamines through different mechanisms without directly binding to adrenoceptors.
One mechanism involves depleting stored catecholamines by displacing them from synaptic vesicles. These agents, known as "displacers," are transported into vesicles at the expense of noradrenaline. Examples include amphetamine and tyramine, which lack a catechol moiety, resulting in prolonged action, improved oral...
One mechanism involves depleting stored catecholamines by displacing them from synaptic vesicles. These agents, known as "displacers," are transported into vesicles at the expense of noradrenaline. Examples include amphetamine and tyramine, which lack a catechol moiety, resulting in prolonged action, improved oral...
2.5K
Drugs Acting on Autonomic Ganglia: Stimulants
2.0K
Ganglionic stimulants activate NM nicotinic receptors in autonomic ganglia, falling into two categories: nicotine mimetics [e.g., lobeline, dimethylpiperazine, tetramethylammonium] and muscarinic receptor agonists [e.g., muscarine, methacholine]. The first category's action is rapid and blocked by nicotinic receptor antagonists, while the second category's action is delayed and blocked by atropine-like agents. Nicotine, an alkaloid, affects the heart rate by stimulating...
2.0K


