Technology
Dedicated to making brain health a global priority through objective neurodiagnostics.

Used by the world's leading healthcare institutions
Mapping functional brain networks for precise and accurate clinical insights
The technological pillars behind Delphi-MD
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Focused High Resolution Magnetic Stimulation
Precise, non-invasive magnetic pulses safely stimulate specific cortical targets to activate underlying functional brain networks.
Read the Brain Signals
High-resolution electrophysiological sensors capture the brain’s direct response over the next 300 milliseconds, revealing how effectively the activated network responds and communicates.
Algorithmic Analysis
Advanced computational models translate complex neural data into clear, objective brain-function metrics to support informed clinical decision-making.
Better care starts
with better insight
Even the most advanced treatment or clinical intervention can only help when the underlying problem is recognized and understood.
In brain health, structural information alone may not reveal how the brain is actually functioning. Objective insight into functional brain networks can help clinicians identify meaningful changes earlier and add critical information when making decisions about care.
Because before you can decide what to do, you need to understand how the brain is functioning.
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The Delphi-MD System
Discover how our unique integration of advanced hardware and intelligent algorithms enables objective, point-of-care brain health assessments.
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Direct focus activation and real-time brain measurement
Delphi-MD™ seamlessly integrates Transcranial Magnetic Stimulation (TMS) with high-resolution EEG, enabling focused stimulation of specific cortical targets and objective, real-time measurement of the brain’s direct response.
Objective Brain Function Assessment for any clinical setting
Designed for everyday clinical environments, our non-invasive system is compact and fast. It empowers healthcare providers to perform comprehensive, objective neurological assessments directly where the patient is treated.

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From Brain Signals to Clinical Insight
Advanced computational algorithms translate complex electrophysiological data into objective measures of brain function, helping clinicians make more informed decisions about patient care.
Regulatory clearance and quality certification





