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Only rationality and reciprocal feedback have positive associations with satisfaction.
This basic design — reciprocal feedback regulation of opposing enzymes — can be seen in other regulatory switches as well [9,10].
Digital has a stronger positive association than impersonal communication with dyadic contact, rationality, and reciprocal feedback, but a weaker positive association than impersonal with social interaction.
We develop a conceptual model and empirically investigate hypotheses linking personal face-to-face (F2F), digital, and impersonal communication to buyer and supplier contacts, rationality, social interaction, and reciprocal feedback, and these interactivity dimensions to relationship satisfaction.
The findings indicate that personal has a stronger positive association than digital communication with dyadic contact (buyer and supplier contacts), social interaction, and reciprocal feedback, but a weaker positive association than digital with rationality.
This study analyzes recurrent fractal neural networks (RFNNs), which utilize a self-similar or fractal branching structure of dendrites and downstream networks for phase-locking of reciprocal feedback loops: output from outer branch nodes of the network tree enters inner branch nodes of the dendritic tree in single neurons.
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The resulting framework, 'complex adaptive landscapes' (CAL), explicitly captures the reciprocal feedbacks and non-linear nature of interactions between components within and between system levels, and the consequent possibility of multiple functional states (alternate systems functioning).
Both of these perspectives are important and complementary within an eco-evolutionary framework (sensu Fussmann et al. 2007; Kinnison and Hairston 2007; Pelletier et al. 2009) that considers reciprocal feedbacks between evolutionary processes, genetic variation, individual performance, and ecological dynamics.
The transfer of the waves between connected nodes in complex coupled networks is strongly influenced by the presence of non-reciprocal feedback channels with uni-directional amplification.
Thus inputs to the shell may influence the core, which eventually influences dorsolateral striatal structures, channelling information via 'cascading' reciprocal and non-reciprocal feedback and feedforward loops to impact on final motor outcome.
We provide examples of their close interplay and reciprocal regulatory feedback loops with local and global effects on transcriptional programs.
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