Custom Sensors.
Continuous Recording.
Real Discovery.
Neureflect builds custom sensors, edge processing, and analysis as one system. The platform is designed to turn continuous, high-frequency multimodal recordings into structured biological insights across research, clinical, veterinary, and wellness applications.
15+
Sensor & Camera Modalities
1024 Hz
Multi-Channel Sampling
Full-Stack
Hardware & Analysis
Sub-1g
Sensor Footprint
Hardware, Data, and Analysis as One System
Custom sensors capture high-frequency, continuous, multimodal biological data. Edge processing and advanced analysis turn those recordings into structured outputs. New applications build on a working core.
Custom Hardware
Neureflect designs its own sensor arrays, microcontrollers, recording platforms, and analysis software. The entire stack is built in-house, co-developed with Syrinx Industrial Electronics B.V., a Netherlands-based electronics manufacturer with 30+ years in custom electronics solutions.
Multimodal Data Capture
Synchronized physiological, behavioral, environmental, and video data streams. Blood flow, heart rate, respiratory rate, movement, temperature, skin impedance, sound, and exhaled gases.
Advanced Analysis
AI models for sensor reconstruction, classification, clustering, and subject-specific state detection. Models train on each subject's own data and run on-device, so analysis works without a network connection.
Deployment Flexibility
Deployed as collars, sleep masks, armbands, environmental sensors, and video systems for lab, clinical, and field use.
Privacy by Architecture
Processing happens on the device first. Data that moves to a hub or server is tokenized and stripped of identifying information before it leaves the local system.
The Interocept System
Interocept runs every connected device through one interface and opens recording and analysis to a language model through a built-in MCP server, under permissioned control. Edge-first execution keeps models, data, and decisions local. See the platform.
Where the Platform Can Be Applied
The same platform can be configured for different species, environments, and measurement problems. Each is a potential application that builds on a working core.
Pharmaceutical Research
Preclinical and translational programs with custom study hardware, continuous multimodal recording, and advanced analysis for biomarker exploration.
Medical Monitoring
Sleep, pain, migraine, seizure, cardiovascular, and recovery monitoring with objective longitudinal data collected outside clinic visits.
Animal Health
Wearable monitoring for pain, behavior, recovery, and chronic conditions in companion animals. The same platform can scale to larger animals including horses, racing, and livestock applications.
Infant & Sleep Monitoring
Non-invasive sleep staging and health monitoring using continuous physiological recording without traditional EEG.
Sports & Field Monitoring
Physiological state tracking during training, recovery, and demanding operational environments where connectivity and reliability matter as much as data quality.
Platform-Enabled Discoveries
A sub-1 g microchip. Six subjects. Weeks of continuous data. Three peer-reviewed publications in high-quality journals.
Traditional neuroscience relies on large cohorts, invasive surgery, and anesthesia, each adding noise and limiting what can be observed. Neureflect's minimally invasive microchip records brain blood flow, heart rate, respiration, and motion continuously in freely behaving subjects for weeks to months.
Cortical Spreading Depression
First demonstration that CSD triggers more easily during sleep than wakefulness, and that the brain's response under anesthesia is 10× larger than in awake subjects. A finding invisible to anesthesia-based protocols.
Caffeine & Circadian Rhythms
Chronic caffeine shifts the rest-active cycle by up to 2 hours and paradoxically increases brain blood flow during sleep while reducing it during wakefulness, with implications for neuroprotection research.
Automatic Sleep Staging
REM vs. NREM detected automatically without invasive EEG, using characteristic blood-volume patterns and movement data alone.
Each subject served as its own control across sleep, wake, drug, and washout conditions. High statistical power was achieved with only six subjects, a fraction of traditional study requirements.
Preclinical and Translational Applications
Remote, high-throughput, stress-free monitoring of neurovascular coupling, HRV, and sleep architecture supports preclinical drug development programs. Physiological signatures of efficacy or toxicity can be identified in real time, with fewer subjects and richer data. Modular, non-invasive sensor configurations extend the same platform toward human and veterinary monitoring.
Aframian K, Yousef Yengej D, Nwaobi S, Raman S, Faas GC, Charles A. Effects of chronic caffeine on patterns of brain blood flow and behavior throughout the sleep-wake cycle in freely behaving mice. PNAS Nexus. 2023;2:pgad303.
Yousef Yengej DN, Ferando I, Kechechyan G, et al. Continuous long-term recording and triggering of brain neurovascular activity and behaviour in freely moving rodents. J Physiol. 2021;599:4545–4559.
Yousef Yengej D, Nwaobi SE, Ferando I, Kechechyan G, Charles A, Faas GC. Different characteristics of cortical spreading depression in the sleep and wake states. Headache. 2022;62:577–587.
Contact Neureflect
For professional inquiries related to research collaboration, custom hardware, or program-specific analysis.