Trofimova Irina
McMaster University, Hamilton, Ontario, Canada.
Nonlinear Dynamics Psychol Life Sci. 2017 Oct;21(4):441-474.
The Functional Constructivism (FC) paradigm is an alternative to behaviorism and considers behavior as being generated every time anew, based on an individual's capacities, environmental resources and demands. Walter Freeman's work provided us with evidence supporting the FC principles. In this paper we make parallels between gradual construction processes leading to the formation of individual behavior and habits, and evolutionary processes leading to the establishment of biological systems. Referencing evolutionary theory, several formal descriptors of such processes are proposed. These FC descriptors refer to the most universal aspects for constructing consistent structures: expansion of degrees of freedom, integration processes based on internal and external compatibility between systems and maintenance processes, all given in four different classes of systems: (a) Zone of Proximate Development (poorly defined) systems; (b) peer systems with emerging reproduction of multiple siblings; (c) systems with internalized integration of behavioral elements ('cruise controls'); and (d) systems capable of handling low-probability, not yet present events. The recursive dynamics within this set of descriptors acting on (traditional) downward, upward and horizontal directions of evolution, is conceptualized as diagonal evolution, or di-evolution. Two examples applying these FC descriptors to taxonomy are given: classification of the functionality of neuro-transmitters and temperament traits; classification of mental disorders. The paper is an early step towards finding a formal language describing universal tendencies in highly diverse, complex and multi-level transient systems known in ecology and biology as 'contingency cycles.'
功能建构主义(FC)范式是行为主义的一种替代方案,它认为行为是基于个体能力、环境资源和需求每次重新产生的。沃尔特·弗里曼的工作为我们提供了支持FC原则的证据。在本文中,我们将导致个体行为和习惯形成的渐进构建过程与导致生物系统建立的进化过程进行了类比。参考进化理论,提出了此类过程的几个形式描述符。这些FC描述符指的是构建一致结构的最普遍方面:自由度的扩展、基于系统内部和外部兼容性的整合过程以及维护过程,所有这些都在四类不同的系统中给出:(a)最近发展区(定义不明确)系统;(b)具有多个兄弟姐妹新兴繁殖的同伴系统;(c)具有行为元素内化整合(“巡航控制”)的系统;以及(d)能够处理低概率、尚未出现事件的系统。这组描述符内作用于(传统)进化的向下、向上和水平方向的递归动力学被概念化为对角线进化或双进化。给出了将这些FC描述符应用于分类学的两个例子:神经递质功能和气质特征的分类;精神障碍的分类。本文是朝着寻找一种形式语言迈出的早期步骤,这种形式语言描述了在生态学和生物学中被称为“偶然循环”的高度多样、复杂和多层次瞬态系统中的普遍趋势。