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从异常到本质性的科学革命?基于库恩科学哲学视角下的大脑内在活动

From Anomalies to Essential Scientific Revolution? Intrinsic Brain Activity in the Light of Kuhn's Philosophy of Science.

作者信息

Havlík Marek

机构信息

Department of Applied Neurosciences and Brain Imaging, National Institute of Mental Health Klecany, Czechia.

出版信息

Front Syst Neurosci. 2017 Feb 28;11:7. doi: 10.3389/fnsys.2017.00007. eCollection 2017.

Abstract

The first step toward a modern understanding of fMRI resting brain activity was made by Bharat Biswal in 1995. This surprising, and at first rejected, discovery is now associated with many resting state networks, notably the famous default mode network (DMN). Resting state activity and DMN significantly reassessed our traditional beliefs and conventions about the functioning of the brain. For the majority of the twentieth century, neuroscientists assumed that the brain is mainly the "reactive engine" to the environment operating mostly through stimulation. This "reactive convention" was very influential and convenient for the goals of twentieth century neuroscience-non-invasive functional localization based on stimulation. Largely unchallenged, "reactive convention" determined the direction of scientific research for a long time and became the "reactive paradigm" of the twentieth century. Resting state activity brought knowledge that was quite different of the "reactive paradigm." Current research of the DMN, probably the best known resting state network, leads to entirely new observations and conclusions, which were not achievable from the perspective of the "reactive paradigm." This shift from reactive activity to resting state activity of the brain is accompanied by an important question: "Can resting state activity be considered a scientific revolution and the new paradigm of neuroscience, or is it only significant for one branch of neuroscience, such as fMRI?"

摘要

1995年,巴拉特·比斯瓦尔迈出了对功能磁共振成像静息脑活动进行现代理解的第一步。这一令人惊讶且起初遭到拒绝的发现,如今与许多静息状态网络相关联,尤其是著名的默认模式网络(DMN)。静息状态活动和默认模式网络显著地重新评估了我们关于大脑功能的传统观念和惯例。在20世纪的大部分时间里,神经科学家认为大脑主要是对环境的“反应引擎”,主要通过刺激来运作。这种“反应惯例”对20世纪神经科学基于刺激的非侵入性功能定位目标极具影响力且方便实用。在很大程度上未受到挑战,“反应惯例”长期决定着科学研究的方向,并成为了20世纪的“反应范式”。静息状态活动带来了与“反应范式”截然不同的知识。目前对默认模式网络(可能是最知名的静息状态网络)的研究得出了全新的观察结果和结论,而从“反应范式”的角度来看是无法实现这些的。大脑从反应性活动向静息状态活动的这种转变伴随着一个重要问题:“静息状态活动能被视为一场科学革命和神经科学的新范式,还是仅仅对神经科学的一个分支(如功能磁共振成像)具有重要意义?”

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本文引用的文献

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Cajal and the Conceptual Weakness of Neural Sciences.卡哈尔与神经科学的概念弱点
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The brain's default mode network.大脑的默认模式网络。
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