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Phylogenetically distant animals sleep: why do sleep researchers care? 系统发育遥远的动物睡眠:睡眠研究人员为何关心这个问题?
IF 2.5 1区 哲学 Q1 HISTORY & PHILOSOPHY OF SCIENCE Pub Date : 2023-12-29 DOI: 10.1007/s10539-023-09938-6
William Bechtel

Abstract

Philosophers examining mechanistic explanations in biology have identified heuristic strategies scientists use in discovering mechanisms. This paper examines the heuristic strategy of investigating phylogenetically distant model organisms, using research on sleep in fruit flies as an example. At the time sleep was discovered in flies in 2000 next to nothing was known about mechanisms regulating sleep in flies and what they could reveal about those in us. One relatively straightforward line of research focused on homologous genes in flies and humans, using those in flies to understand what roles their homologs played in controlling sleep in us. But other research focused on a higher level of organization—the neural networks involved in homeostatic and circadian control of sleep. This raises a puzzle—given that fly and vertebrate brains are organized very differently, how could sleep regulation in flies serve as an informative model of vertebrate sleep? I argue that the basic design of mechanisms such as those regulating sleep can be conserved even as the composition of the mechanism changes and that researchers can hope to use the designs deciphered in flies as heuristic models for understanding sleep in humans.

摘要 哲学家在研究生物学中的机理解释时,发现了科学家在发现机理时使用的启发式策略。本文以果蝇睡眠研究为例,探讨了研究系统发育遥远的模式生物的启发式策略。2000 年在果蝇中发现睡眠时,人们对果蝇的睡眠调节机制及其对人类睡眠调节机制的启示几乎一无所知。其中一个相对直接的研究方向是研究果蝇和人类的同源基因,利用果蝇中的同源基因来了解它们在控制人类睡眠中的作用。但其他研究则侧重于更高层次的组织--参与睡眠平衡和昼夜节律控制的神经网络。这就产生了一个难题--既然苍蝇和脊椎动物大脑的组织结构截然不同,那么苍蝇的睡眠调节如何能作为脊椎动物睡眠的信息模型呢?我认为,即使调节睡眠等机制的组成发生了变化,这些机制的基本设计也可以保持不变,研究人员有望利用在苍蝇中破译的设计作为启发式模型来理解人类的睡眠。
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引用次数: 0
Epistemic enhancement, pastism, and fossil anomalies in paleontology and ichnology 古生物学和昆虫学中的认识论强化、过去论和化石异常现象
IF 2.5 1区 哲学 Q1 HISTORY & PHILOSOPHY OF SCIENCE Pub Date : 2023-12-19 DOI: 10.1007/s10539-023-09937-7
Ali Mirza

This paper presents explication on how paleontologists reconstruct the past using fossils when good modern analogues are not available. I call these pastist methods to differentiate them from presentist methods in which such analogues are available. I do so by presenting two fossil cases: the problematica and graphoglyptids. I describe a forgotten heuristic, “analogue chaining,” that involves jumping from fossil anomaly to fossil anomaly using one to make sense of the other in successive fashion, using the relations between fossils to guide reconstruction. I relate this to the philosophy of historical sciences in four ways. First, that methods like analogue chaining have a “linearity” meaning that there are limited ways in which to learn about specimens using analogues. Second, that they are intrinsically difficult to notice, i.e. invisible. Third, that linearity and invisibility put pressure on some accounts of optimism about historical sciences. Fourth, our cases provide novel forms of optimism based on epistemic enhancement: the phenomena that some questions regarding an event are better answered millions of years after its occurrence.

本文阐述了在没有很好的现代类似物时,古生物学家如何利用化石重建过去。我将这些方法称为过去式方法,以区别于有类似物的现在式方法。为此,我介绍了两个化石案例:问题类和石龙子类。我描述了一种被遗忘的启发式方法--"类比链",即从一个化石异常跳到另一个化石异常,利用化石之间的关系来指导重建工作。我从四个方面将其与历史科学哲学联系起来。首先,类比链等方法具有 "线性",这意味着使用类比方法了解标本的途径有限。第二,从本质上讲,它们很难被注意到,即看不见。第三,线性和不可见性给一些对历史科学持乐观态度的人带来了压力。第四,我们的案例提供了基于认识论提升的新形式的乐观主义:在事件发生数百万年后,一些与事件相关的问题可以得到更好的解答。
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引用次数: 0
Molecular-biological machines: a defense 分子生物学机器:防御
IF 2.5 1区 哲学 Q1 HISTORY & PHILOSOPHY OF SCIENCE Pub Date : 2023-09-09 DOI: 10.1007/s10539-023-09915-z
Arnon Levy
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引用次数: 0
Humans, the Norm-Breakers 人类,打破常规的人
IF 2.5 1区 哲学 Q1 HISTORY & PHILOSOPHY OF SCIENCE Pub Date : 2023-08-29 DOI: 10.1007/s10539-023-09918-w
Kristin Andrews
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引用次数: 0
What if worms were sentient? Insights into subjective experience from the Caenorhabditis elegans connectome 如果蠕虫有知觉呢?秀丽隐杆线虫连接体的主观体验
IF 2.5 1区 哲学 Q1 HISTORY & PHILOSOPHY OF SCIENCE Pub Date : 2023-08-23 DOI: 10.1007/s10539-023-09924-y
Oressia H. Zalucki, Deborah J. Brown, B. Key
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引用次数: 0
DNA barcoding and the changing ontological commitments of taxonomy DNA条形码与分类学不断变化的本体论承诺
IF 2.5 1区 哲学 Q1 HISTORY & PHILOSOPHY OF SCIENCE Pub Date : 2023-08-01 DOI: 10.1007/s10539-023-09916-y
James W. E. Lowe, D. Ingram
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引用次数: 0
An even better ape? Comments on a better ape 一只更好的猿猴?评论一个更好的猿
IF 2.5 1区 哲学 Q1 HISTORY & PHILOSOPHY OF SCIENCE Pub Date : 2023-08-01 DOI: 10.1007/s10539-023-09919-9
Jay Odenbaugh
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引用次数: 0
A more thought-ful ape? 一只思考能力更强的猿?
IF 2.5 1区 哲学 Q1 HISTORY & PHILOSOPHY OF SCIENCE Pub Date : 2023-08-01 DOI: 10.1007/s10539-023-09921-1
Mara Bollard
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引用次数: 0
Response to critics 对批评的回应
IF 2.5 1区 哲学 Q1 HISTORY & PHILOSOPHY OF SCIENCE Pub Date : 2023-08-01 DOI: 10.1007/s10539-023-09923-z
Victor Kumar, Richmond Campbell
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引用次数: 0
Moral progress for better apes 更好的猿类的道德进步
IF 2.5 1区 哲学 Q1 HISTORY & PHILOSOPHY OF SCIENCE Pub Date : 2023-08-01 DOI: 10.1007/s10539-023-09920-2
Joshua May
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引用次数: 0
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