如何(不)证明无意识引物:克服事后数据选择、低功率和频数统计等问题

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Timo Stein , Simon van Gaal , Johannes J. Fahrenfort
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引用次数: 0

摘要

研究意识的一种广泛使用的科学方法是将有意识操作与无意识操作进行对比。然而,在确定无意识意识方面的挑战导致了关于无意识过程的程度和存在的争论。我们收集了关于无意识语义引物的实验数据,通过操纵引物呈现的持续时间来突出分析方法在将引物效应归因于无意识加工方面的关键作用。我们证明,事后数据选择、低统计功率和频数统计测试等常见做法会错误地支持无意识引物的说法。相反,采用最佳实践,如直接性能-意识对比、贝叶斯测试和提高统计能力,则可以避免此类错误结论。过去的许多实验,包括我们自己的实验,都没有达到这些标准,从而使人们对以前关于无意识加工的说法产生怀疑。实施这些强有力的实践将增强我们对无意识加工的理解,并揭示意识的功能和神经机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
How (not) to demonstrate unconscious priming: Overcoming issues with post-hoc data selection, low power, and frequentist statistics

One widely used scientific approach to studying consciousness involves contrasting conscious operations with unconscious ones. However, challenges in establishing the absence of conscious awareness have led to debates about the extent and existence of unconscious processes. We collected experimental data on unconscious semantic priming, manipulating prime presentation duration to highlight the critical role of the analysis approach in attributing priming effects to unconscious processing. We demonstrate that common practices like post-hoc data selection, low statistical power, and frequentist statistical testing can erroneously support claims of unconscious priming. Conversely, adopting best practices like direct performance-awareness contrasts, Bayesian tests, and increased statistical power can prevent such erroneous conclusions. Many past experiments, including our own, fail to meet these standards, casting doubt on previous claims about unconscious processing. Implementing these robust practices will enhance our understanding of unconscious processing and shed light on the functions and neural mechanisms of consciousness.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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