从计算架构的角度看大脑有机体的道德可考量性

J. Lomax Boyd
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引用次数: 0

摘要

配备复杂细胞结构和来自虚拟环境的闭环反馈的人脑器官,可以让人们深入了解认知的神经机制。然而,具有某些认知能力的有机体可能也值得从道德角度加以考虑。有人提出了一种预防性方法来解决这些伦理问题,即把重点放在一个认识论问题上,即有机体是否拥有与人类大脑相似的神经结构来实现与道德相关的能力。批评者以哲学、科学和实践为由质疑这种相似性方法,但却没有合适的替代方法。在此,我将介绍一种架构方法,它能根据系统中的信息流模式推断出大脑有机体中类似认知处理的潜力。然后,类有机体所获得的计算架构类型将为理论上可以支持和实证研究的认知能力类型提供信息。本文讨论了这种方法对大脑有机体的道德可考量性的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Moral considerability of brain organoids from the perspective of computational architecture
Human brain organoids equipped with complex cytoarchitecture and closed-loop feedback from virtual environments could provide insights into neural mechanisms underlying cognition. Yet organoids with certain cognitive capacities might also merit moral consideration. A precautionary approach has been proposed to address these ethical concerns by focusing on the epistemological question of whether organoids possess neural structures for morally-relevant capacities that bear resemblance to those found in human brains. Critics challenge this similarity approach on philosophical, scientific, and practical grounds but do so without a suitable alternative. Here, I introduce an architectural approach that infers the potential for cognitive-like processing in brain organoids based on the pattern of information flow through the system. The kind of computational architecture acquired by an organoid then informs the kind of cognitive capacities that could, theoretically, be supported and empirically investigated. The implications of this approach for the moral considerability of brain organoids are discussed.
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