arXiv:2509.02924cs.MMcs.AI2025-09

用脑类器官神经信号生成多感官生态,探索非人类认知下的共情与共生。

Simulacra Naturae: Generative Ecosystem driven by Agent-Based Simulations and Brain Organoid Collective Intelligence

  • 将脑类器官神经活动转化为生成式生态系统的驱动信号
  • 通过实时系统实现生物信号与算法行为的共创造性耦合
  • 适合关注跨物种共情、生成艺术与生物计算的创作者与观众

Simulacra Naturae 是一项数据驱动的媒体装置,通过生物计算、物质生态与生成系统的交织,探索集体关怀。该作品将实验室培育的脑类器官(brain organoids)预录神经活动转化为包含生成视觉、空间音频、活体植物及人造陶艺品的多感官环境。这些生物信号通过实时系统,调控受自然系统(如白蚁群落、黏菌)启发的代理行为。并非直接作为控制输入,脑类器官活动被视作共创力量,引导生成生态的生长、形态与氛围。装置包含嵌入电磁阀的计算生成陶印,产生物理声波共振,配合地面投影层的实时生成式AI视觉与热带活体植物,构建由非人类认知塑造的感官场域。通过将抽象数据扎根于生命材料与具身体验,该作品重新定义可视化为一种去中心化的人类主体、开启混合计算系统中伦理、共情与生态调谐的新可能。

原文摘要 · Abstract (English)

Simulacra Naturae is a data-driven media installation that explores collective care through the entanglement of biological computation, material ecologies, and generative systems. The work translates pre-recorded neural activity from brain organoids, lab-grown three-dimensional clusters of neurons, into a multi-sensory environment composed of generative visuals, spatial audio, living plants, and fabricated clay artifacts. These biosignals, streamed through a real-time system, modulate emergent agent behaviors inspired by natural systems such as termite colonies and slime molds. Rather than using biosignals as direct control inputs, Simulacra Naturae treats organoid activity as a co-creative force, allowing neural rhythms to guide the growth, form, and atmosphere of a generative ecosystem. The installation features computationally fabricated clay prints embedded with solenoids, adding physical sound resonances to the generative surround composition. The spatial environment, filled with live tropical plants and a floor-level projection layer featuring real-time generative AI visuals, invites participants into a sensory field shaped by nonhuman cognition. By grounding abstract data in living materials and embodied experience, Simulacra Naturae reimagines visualization as a practice of care, one that decentralizes human agency and opens new spaces for ethics, empathy, and ecological attunement within hybrid computational systems.

生成艺术脑类器官多感官体验生物计算

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