Reddy J Shashi Kiran, Pereira Contzen
Bangalore 560064, India. E-mails:
Mumbai 400 099, India. E-mails:
J Integr Neurosci. 2017;16(s1):S27-S36. doi: 10.3233/JIN-170064.
Microorganisms demonstrate conscious-like intelligent behaviour, and this form of consciousness may have emerged from a quantum mediated mechanism as observed in cytoskeletal structures like the microtubules present in nerve cells which apparently have the architecture to quantum compute. This paper hypothesises the emergence of proto-consciousness in primitive cytoskeletal systems found in the microbial kingdoms of archaea, bacteria and eukarya. To explain this, we make use of the Subject-Object Model (SOM) of consciousness which evaluates the rise of the degree of consciousness to conscious behaviour in these systems supporting the hypothesis of emergence and propagation of conscious behaviour during the pre-Cambrian part of Earth's evolutionary history. Consciousness as proto-consciousness or sentience computed via primitive cytoskeletal structures substantiates as a driver for the intelligence observed in the microbial world during this period ranging from single-cellular to collective intelligence as a means to adapt and survive. The growth in complexity of intelligence, cytoskeletal system and adaptive behaviours are key to evolution, and thus supports the progression of the Lamarckian theory of evolution driven by quantum mediated proto-consciousness to consciousness as described in the SOM of consciousness.
微生物表现出类似意识的智能行为,这种意识形式可能源自一种量子介导机制,正如在神经细胞中存在的微管等细胞骨架结构中所观察到的那样,这些结构显然具备进行量子计算的架构。本文假设在古菌、细菌和真核生物等微生物界发现的原始细胞骨架系统中存在原意识的出现。为了解释这一点,我们利用意识的主体 - 客体模型(SOM)来评估这些系统中意识程度向有意识行为的提升,支持了在地球进化历史的前寒武纪时期有意识行为出现和传播的假设。通过原始细胞骨架结构计算得出的作为原意识或感知的意识,在此期间作为驱动微生物世界中所观察到的智能的因素得到证实,这种智能从单细胞智能到集体智能,是一种适应和生存的手段。智能、细胞骨架系统和适应性行为的复杂性增长是进化的关键,因此支持了由量子介导的原意识驱动到意识的拉马克进化理论的发展,如意识的SOM中所描述的那样。