揭开习惯形成的奥秘
Unraveling the mysteries of habit formation

原始链接: https://www.kyoto-u.ac.jp/en/research-news/2026-07-28

京都大学的研究人员开发了一种研究小鼠习惯形成的新训练方法,揭示了习惯并非简单的重复动作。通过追踪从目标导向行为到自动行为的转变,研究团队确定了控制这一过程的两个不同神经回路。 第一个回路连接前扣带皮层和后压部皮层,它通过在转变过程中减弱活动来决定一种行为是否成为习惯。第二个回路连接外侧眶额皮层和纹状体中心,负责控制习惯执行的强度。通过操纵这些通路,研究人员成功影响了习惯性行为的形成和频率。 这项研究挑战了“习惯仅是原始动作复制”的传统观点,并强调了习惯执行频率存在显著的个体差异。这些发现为理解为何个体间的习惯存在差异提供了重要见解,并为未来的研究奠定了基础。研究团队希望这一理解最终能帮助人们养成有益的日常习惯,并改善对强迫性行为和相关障碍的治疗。

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原文

Researchers

Overview

Kyoto, Japan -- Habit formation describes the repeated performance of a behavior until it becomes routine: in other words, the shift from deliberate to automatic decision-making. This concept is often invoked as a way to improve one's life by making a routine of beneficial activities that can otherwise feel tedious, such as cleaning, studying, and regular exercise.

That repeating the same behavior is essential for forming a habit has become well-established, but whether a habit develops as an exact replication of the original behavior, or if the behavior itself gradually changes as it becomes a habit, remains unclear. Because habit formation takes a long time, comparing behavioral and neural changes within the same subject before and after a habit develops has been difficult. To overcome this challenge, a team of researchers at Kyoto University developed a new training method that achieves rapid habit formation in mice, allowing them to track these transitions directly.

"Habits are one of the brain's most mysterious functions, and we often struggle to control them even though they are our own actions," says co-corresponding author Nozomi Asaoka. "By uncovering how habits work, we may eventually find ways to take control of them rather than letting them control us."

Just like how humans develop habits, the team first trained subject mice to use goal-directed strategies, followed by an additional four-days of training designed to facilitate the adoption of habitual strategies. With this two-stage training approach, the researchers were able to assess the transition from goal-directed to habitual behavior in the brains of individual mice.

The team discovered that two distinct neural circuits manage completely different aspects of habits. The first circuit, with neurons projecting from the anterior cingulate cortex to the retrosplenial cortex, determines whether a behavior becomes a habit, with its connections weakening during the transition. Crucially, the second circuit, from the lateral orbitofrontal cortex to the central striatum, controls how much the habit is executed, explaining individual differences. In this second circuit, habit-formed mice with strong neural responses maintained high behavioral execution levels, while those with weaker responses showed reduced execution. By artificially manipulating these pathways, the team was able to selectively promote habit formation or alter execution levels, proving the distinct roles of these two brain circuits.

One key finding is that the habit formation process is much more complex than the traditional view that repetition simply replicates an action into a habit in its original form. In particular, the team demonstrated that even after a habit successfully forms, there are significant individual differences in the frequency and volume of that behavior.

"Our study has uncovered previously overlooked control mechanisms involved in habit formation, showing what determines how strongly a habit is carried out and helping explain why habits differ from person to person," says team leader Yasunori Hayashi.

The team plans to expand their investigations to find out what drives these individual differences in habit intensity, hoping that better understanding may help us acquire more beneficial habits and improve treatment for problematic habits linked to conditions such as obsessive-compulsive disorder.

Individual differences exist in whether the frequency of habitual behavior is "maintained" or "reduced".
Using the "two-stage training" method to shift the decision-making strategy of mice from goal-directed to habitual (left > right), a variety of changes (individual differences) were observed, ranging from individuals that maintained their frequency of behavior to those whose level decreased (top <> bottom).
(KyotoU / Nozomi Asaoka)
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