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引用次数: 0
摘要
鼓励生物学家将符号学纳入他们的研究很可能会被置若罔闻,因为他们已经通过一种公认的生命科学方法标准(这里称为 "并行工程"(APE))将符号学纳入了研究。生物符号学对生物学的最大贡献--生物学家将依赖的贡献--将是通过概念验证解释符号学--这里被定义为进行功能性解释努力的生物--如何能够在物理现象之外的任何东西中出现,从而提供一种更严格的替代 APE 的方法论。它将解释生物体最基本的能动性--它们为生存而斗争--从工效学(即可能的物理工作中出现的变化)的角度来看,这种变化导致工作(努力),而这种工作(功能)使化学系统(生命体)在对其工作空间(解释)做出符号学反应时继续工作。
Biosemiotics’ greatest potential contribution to biology
Encouraging biologists to factor semiotics into their research is likely to fall on deaf ears because they already factor it in through an accepted life science methodological standard here called Parallel Engineering (APE). Biosemiotics’ most significant contribution to biology – a contribution that biologists would come to depend upon – would be a more rigorous alternative methodology to APE through a proof-of-concept explanation for how semiotics – here defined as beings making functional interpretive effort – can emerge within nothing but physical phenomena. It would explain organisms’ most basic agency – their struggle for existence – ergodynamically (i.e., an emergent change in likely physical work) that results in work (effort) that works (functions) to keep a chemical system working (a being) in semiotic response to their workspace (interpretation).