Neuronal Learning Protocol
A structured sequence for attention, memory and execution: multisensory cue → focused attention → task encoding → reinforcement → measurement. The goal is not passive exposure; it is repeated, task-linked neural learning.
Mentalness is a synchronized multisensory neurotechnology platform designed to coordinate sensory stimulation, cognitive tasks, biosignals and AI personalization — supporting brain-health programs today and a disciplined path toward clinically validated digital therapy tomorrow.
Mentalness vision
Most products deliver content, stimulation or coaching in isolation. Mentalness is designed as a repeated learning loop: cue the brain, focus attention, execute a task, reinforce the response and measure the signal over time.
A structured sequence for attention, memory and execution: multisensory cue → focused attention → task encoding → reinforcement → measurement. The goal is not passive exposure; it is repeated, task-linked neural learning.
The SMM engine coordinates visual, auditory, tactile, olfactory, gustatory and cognitive-task events as one closed-loop protocol aligned with brain and body response.
A timing layer for gamma-frequency sensory stimuli, RF-enabled pathways, biosignal response and AI personalization at the temporal scale where attention and memory circuits operate.
Platform architecture
Mentalness is device-agnostic: XR headsets, haptic wearables, spatial audio, scent modules, RF components and biosensors can all become delivery channels for the same SMM protocol layer.
See full architecture
Programs
Stress recovery and emotional regulation supported by synchronized sensory cues, breathing guidance and HRV-informed recovery tracking.
Learn more →Attention and cognitive-performance training through structured tasks synchronized with multisensory stimulation and feedback.
Learn more →Healthy-aging and cognitive-resilience protocols calibrated for older adults, longevity clinics and premium brain-health environments.
Learn more →A staged validation pathway for MCI, cognitive deficits and neurorehabilitation using objective endpoints, safety metrics and adherence measures.
Learn more →
Scientific message
The Mentalness hypothesis is that repeated, synchronized learning may improve functional performance over time by aligning sensory input, cognitive elaboration, execution, feedback and repetition inside the timing window where neural strengthening is most likely to occur.
Read the scienceRoadmap
Population, protocol, device stack, safety/adherence plan and PI model.
30–50 subjects, 12 months, focused on safety, adherence, endpoint selection and signal detection.
EEG, HRV, MRI/fMRI, PET or plasma biomarkers, cognitive outcomes and functional measures.
Validated neuronal-learning product pathway for cognitive deficits and brain-health programs.
Scientific + technology resources
Mentalness brings together cognitive neuroscience led by Prof. Tomás Ortiz Alonso, healthcare AI and product leadership, clinical research collaborators and RF semiconductor expertise through Michael Leabman as CTO.
Meet the team