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生物学合理性水平。

Levels of biological plausibility.

机构信息

University College London, Gower Street, London WC1E 6BT, UK.

出版信息

Philos Trans R Soc Lond B Biol Sci. 2021 Jan 4;376(1815):20190632. doi: 10.1098/rstb.2019.0632. Epub 2020 Nov 16.

DOI:10.1098/rstb.2019.0632
PMID:33190602
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7741037/
Abstract

Notions of mechanism, emergence, reduction and explanation are all tied to levels of analysis. I cover the relationship between lower and higher levels, suggest a level of mechanism approach for neuroscience in which the components of a mechanism can themselves be further decomposed and argue that scientists' goals are best realized by focusing on pragmatic concerns rather than on metaphysical claims about what is 'real'. Inexplicably, neuroscientists are enchanted by both reduction and emergence. A fascination with reduction is misplaced given that theory is neither sufficiently developed nor formal to allow it, whereas metaphysical claims of emergence bring physicalism into question. Moreover, neuroscience's existence as a discipline is owed to higher-level concepts that prove useful in practice. Claims of biological plausibility are shown to be incoherent from a level of mechanism view and more generally are vacuous. Instead, the relevant findings to address should be specified so that model selection procedures can adjudicate between competing accounts. Model selection can help reduce theoretical confusions and direct empirical investigations. Although measures themselves, such as behaviour, blood-oxygen-level-dependent (BOLD) and single-unit recordings, are not levels of analysis, like levels, no measure is fundamental and understanding how measures relate can hasten scientific progress. This article is part of the theme issue 'Key relationships between non-invasive functional neuroimaging and the underlying neuronal activity'.

摘要

机制、涌现、还原和解释等概念都与分析层次有关。我介绍了较低层次和较高层次之间的关系,提出了一种神经科学的机制方法层次,其中机制的组成部分本身可以进一步分解,并认为科学家的目标最好通过关注实际问题来实现,而不是关注关于什么是“真实”的形而上学主张。令人费解的是,神经科学家同时对还原论和涌现论着迷。鉴于理论还不够发达和形式化,无法进行还原,因此对还原的迷恋是没有根据的,而对涌现的形而上学主张则使物理主义受到质疑。此外,神经科学作为一门学科的存在归功于在实践中证明有用的高层次概念。从机制层面来看,生物学合理性的主张是不连贯的,更普遍的是空洞的。相反,应该具体说明相关的发现,以便模型选择程序可以在竞争的解释之间进行裁决。模型选择可以帮助减少理论上的混乱,并指导实证研究。尽管措施本身,如行为、血氧水平依赖(BOLD)和单细胞记录,不是分析层次,但与层次一样,没有一个措施是基本的,了解措施之间的关系可以加速科学进步。本文是主题为“非侵入性功能神经影像学与潜在神经元活动之间的关键关系”的一部分。

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