对反应时间分布的顺序效应:跨范式的共同点和差异.
1Department of Psychology, University of Freiburg, DE.
Journal of cognition
|September 9, 2024
概括
响应时间 (RT) 任务中的顺序效应在不同的实验范式中显示了相似之处. 这些RT序列效应背后的一些认知过程是共享的,而另一些则是范式特定的.
科学领域:
- 认知心理学 认知心理学
- 实验心理学 实验心理学
- 神经科学是一个神经科学.
背景情况:
- 在认知任务中的响应时间 (RT) 受先前的试验特征的影响.
- 序列效应通常在单个范式内进行研究,限制了跨范式的比较.
- 顺序效应的理论解释显示了跨范式的相似性.
研究的目的:
- 系统地比较不同认知范式的顺序效应.
- 为了研究潜在的连续效应的共享和范式特定的认知过程.
- 确定视觉搜索,双选择RT,干扰和任务交换中的顺序效应之间的关系.
主要方法:
- 进行了一项实验,比较视觉搜索,双选择RT,干扰和任务交换范式的顺序效应.
- 采用方法来最大限度地提高跨范式的刺激和反应相似性.
- 使用描述性 (前高斯式) 和以过程为导向 (扩散模型) 的方法分析了RT分布.
主要成果:
- 在跨范式的顺序效应中观察到显著的经验相似性和差异.
- 在不同的条件下,在单个范式内发现了序列效应的变化.
- 确定了不同范式对的顺序效应之间的不同程度的相似性.
结论:
- 一些驱动顺序效应的认知过程是跨范式共享的.
- 其他潜在的连续效应的认知过程似乎是范式特定的.
- 这表明了序列处理中一般和特定机制的复杂相互作用.
相关概念视频
Reaction Rate
The rate of reaction is the change in the amount of a reactant or product per unit time. Reaction rates are therefore determined by measuring the time dependence of some property that can be related to reactant or product amounts. Rates of reactions that consume or produce gaseous substances, for example, are conveniently determined by measuring changes in volume or pressure.
The mathematical representation of the change in the concentration of reactants and products, over time, is the rate...
The mathematical representation of the change in the concentration of reactants and products, over time, is the rate...
The Integrated Rate Law: The Dependence of Concentration on Time
While the differential rate law relates the rate and concentrations of reactants, a second form of rate law called the integrated rate law relates concentrations of reactants and time. Integrated rate laws can be used to determine the amount of reactant or product present after a period of time or to estimate the time required for a reaction to proceed to a certain extent. For example, an integrated rate law helps determine the length of time a radioactive material must be stored for its...
Temperature Dependence on Reaction Rate
The Collision Theory
Atoms, molecules, or ions must collide before they can react with each other. Atoms must be close together to form chemical bonds. This premise is the basis for a theory that explains many observations regarding chemical kinetics, including factors affecting reaction rates.
The collision theory is based on the postulates that (i) the reaction rate is proportional to the rate of reactant collisions, (ii) the reacting species collide in an orientation allowing contact between...
Atoms, molecules, or ions must collide before they can react with each other. Atoms must be close together to form chemical bonds. This premise is the basis for a theory that explains many observations regarding chemical kinetics, including factors affecting reaction rates.
The collision theory is based on the postulates that (i) the reaction rate is proportional to the rate of reactant collisions, (ii) the reacting species collide in an orientation allowing contact between...
Rate Law and Reaction Order
The rate of a reaction is affected by the concentrations of reactants. Rate laws (differential rate laws) or rate equations are mathematical expressions describing the relationship between the rate of a chemical reaction and the concentration of its reactants.
For example, in a generic reaction aA + bB ⟶ products, where a and b are stoichiometric coefficients, the rate law can be written as:
rate = k[A]m[B]n
[A] and [B] represent the molar concentrations of reactants, and k is the rate...
For example, in a generic reaction aA + bB ⟶ products, where a and b are stoichiometric coefficients, the rate law can be written as:
rate = k[A]m[B]n
[A] and [B] represent the molar concentrations of reactants, and k is the rate...
Consecutive Reactions
Consecutive reactions involve a sequence where the product of a preceding reaction becomes the reactant for the subsequent one. In a simple scheme, A transforms into B, which further reacts to form C, with rate constants k1 and k2, respectively. This concept is evident in the radioactive decay series. Assuming an initial state with only A present, the conservation of matter leads to three coupled differential equations, determining the concentrations of A, B, and C over time.The rate of change...
Fast Reactions
Fast reactions occurring in times shorter than the time needed to mix reactants pose a unique challenge for investigation. In a liquid-phase continuous-flow system, reactants A and B are swiftly pushed into the mixing chamber, where mixing occurs within 1 ms. The reaction mixture then flows through an observation tube, and one measures light absorption to determine species concentrations at various points of the tube. This method is most appropriate when relatively large volumes of reactants...


