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假阳性与外星假说检验的挑战。

False Positives and the Challenge of Testing the Alien Hypothesis.

机构信息

School of Earth and Space Exploration, Arizona State University, Tempe, Arizona, USA.

Beyond Center for Fundamental Concepts in Science, Arizona State University, Tempe, Arizona, USA.

出版信息

Astrobiology. 2023 Nov;23(11):1189-1201. doi: 10.1089/ast.2023.0005.

Abstract

The origin of life and the detection of alien life have historically been treated as separate scientific research problems. However, they are not strictly independent. Here, we discuss the need for a better integration of the sciences of life detection and origins of life. Framing these dual problems within the formalism of Bayesian hypothesis testing, we demonstrate via simple examples how high confidence in life detection claims require either (1) a strong prior hypothesis about the existence of life in a particular alien environment, or conversely, (2) signatures of life that are not susceptible to false positives. As a case study, we discuss the role of priors and hypothesis testing in recent results reporting potential detection of life in the venusian atmosphere and in the icy plumes of Enceladus. While many current leading biosignature candidates are subject to false positives because they are not definitive of life, our analyses demonstrate why it is necessary to shift focus to candidate signatures that are definitive. This indicates a necessity to develop methods that lack substantial false positives, by using observables for life that rely on prior hypotheses with strong theoretical and empirical support in identifying defining features of life. Abstract theories developed in pursuit of understanding universal features of life are more likely to be definitive and to apply to life-as-we-don't-know-it. We discuss Molecular Assembly theory as an example of such an observable which is applicable to life detection within the solar system. In the absence of alien examples these are best validated in origin of life experiments, substantiating the need for better integration between origins of life and biosignature science research communities. This leads to a conclusion that extraordinary claims in astrobiology ( definitive detection of alien life) require extraordinary explanations, whereas the evidence itself could be quite ordinary.

摘要

生命的起源和外星生命的探测在历史上一直被视为两个独立的科学研究问题。然而,它们并不是严格独立的。在这里,我们讨论了需要更好地整合生命探测科学和生命起源科学。通过贝叶斯假设检验的形式主义,我们用简单的例子展示了,在生命探测主张中获得高度置信度需要(1)对特定外星环境中生命存在的强烈先验假设,或者(2)不易产生误报的生命特征。作为案例研究,我们讨论了在最近报告的金星大气和土卫二冰羽中潜在生命探测结果中,先验和假设检验的作用。虽然许多当前领先的生物特征候选者都容易产生误报,因为它们不能确定生命的存在,但我们的分析表明,为什么有必要将重点转移到那些能够确定生命的候选特征上。这表明需要开发缺乏大量误报的方法,使用依赖于具有强大理论和经验支持的先验假设的生命可观测物,来识别生命的定义特征。为了理解生命的普遍特征而开发的抽象理论更有可能具有确定性,并适用于我们目前还不知道的生命。我们讨论了分子组装理论作为这样一个可观测物的例子,它适用于太阳系内的生命探测。在没有外星例子的情况下,这些最好在生命起源实验中得到验证,这证实了在生命起源和生物特征科学研究社区之间更好地整合的必要性。这导致了一个结论,即天体生物学中的非凡主张(外星生命的明确探测)需要非凡的解释,而证据本身可能很普通。

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