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Nonlinear Dynamics, Psychology, and Life Sciences|January 1, 2022
From Persian Calligraphy to Fractal Networks of Retinal CellsSaba MoslehiFrontiers in Physiology|July 11, 2022
Investigating Fractal Analysis as a Diagnostic Tool That Probes the Connectivity of Hippocampal NeuronsConor Rowland, Bruce Harland, Julian H Smith, et al.Frontiers in Network Physiology|March 17, 2023
Neuron arbor geometry is sensitive to the limited-range fractal properties of their dendritesConor Rowland, Julian H Smith, Saba Moslehi, et al.Advances in Neurobiology|March 12, 2024
Fractal Fluency: Processing of Fractal Stimuli Across Sight, Sound, and TouchRichard P Taylor, Catherine Viengkham, Julian H Smith, et al.Bioengineering (Basel, Switzerland)|August 29, 2024
Evolution of Retinal Neuron Fractality When Interfacing with Carbon Nanotube ElectrodesAiden P Dillon, Saba Moslehi, Bret Brouse, et al.Nonlinear Dynamics, Psychology, and Life Sciences|December 20, 2019
Relaxing Floors: Fractal Fluency in the Built EnvironmentJulian Smith, Conor Rowland, Saba Moslehi, et al.Scientific Reports|October 20, 2022
Comparison of fractal and grid electrodes for studying the effects of spatial confinement on dissociated retinal neuronal and glial behaviorSaba Moslehi, Conor Rowland, Julian H Smith, et al.Plos One|April 6, 2022
Controlled assembly of retinal cells on fractal and Euclidean electrodesSaba Moslehi, Conor Rowland, Julian H Smith, et al.Frontiers in Psychology|September 6, 2021
Aesthetics and Psychological Effects of Fractal Based DesignKelly E Robles, Michelle Roberts, Catherine Viengkham, et al.Micromachines|June 3, 2020
The Roles of an Aluminum Underlayer in the Biocompatibility and Mechanical Integrity of Vertically Aligned Carbon Nanotubes for Interfacing with Retinal NeuronsWilliam J Watterson, Saba Moslehi, Conor Rowland, et al.Pageof 1