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Comprehension of computer code relies primarily on domain-general executive brain regions

机译:对计算机代码的理解主要依赖于领域的行政大脑地区

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摘要

Computer programming is a novel cognitive tool that has transformed modern society. What cognitive and neural mechanisms support this skill? Here, we used functional magnetic resonance imaging to investigate two candidate brain systems: the multiple demand (MD) system, typically recruited during math, logic, problem solving, and executive tasks, and the language system, typically recruited during linguistic processing. We examined MD and language system responses to code written in Python, a text-based programming language (Experiment 1) and in ScratchJr, a graphical programming language (Experiment 2); for both, we contrasted responses to code problems with responses to content-matched sentence problems. We found that the MD system exhibited strong bilateral responses to code in both experiments, whereas the language system responded strongly to sentence problems, but weakly or not at all to code problems. Thus, the MD system supports the use of novel cognitive tools even when the input is structurally similar to natural language.
机译:计算机编程是一种改变现代社会的新型认知工具。什么认知和神经机制支持这项技能?这里,我们使用功能磁共振成像来研究两个候选脑系统:通常在数学,逻辑,问题解决和执行任务期间招募的多个需求(MD)系统,以及语言系统,通常在语言处理期间招募。我们检查了MD和语言系统对Python编写的代码,基于文本的编程语言(实验1)和Scratchjr,一种图形编程语言(实验2);对于这两者来说,我们对对内容匹配的句子问题的响应来对比对代码问题的反应。我们发现MD系统在两项实验中表现出对代码的强烈双边响应,而语言系统则强烈响应句子问题,但弱或根本不符合代码问题。因此,MD系统即使当输入在结构上类似于自然语言时也支持新颖的认知工具。

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