Moving medicine from speculation to calculation. PhiCor uses the mathematical constants of nature to decode human physiology and empower doctors with aerospace-grade precision.
dP/dt = (Q - P/R) / CWindkessel ModelSV = SV_max × (1 - e^(-k × EDV))Frank-StarlingGFR = Kf × (PGC - PBS - πGC)Glomerular FiltrationIn aerospace, we don't "assume" a rocket will reach orbit; we solve for it using precise mathematical laws. In medicine, doctors are often forced to rely on high-level assumptions and generalized speculations.
Assumptions are slow. Math is instant.
PhiCor replaces speculation with Physiological Equations. We believe the human body is a mathematical system that follows universal laws. By applying the same level of precision used in deep-space exploration to the hospital bedside, we eliminate the "trial and error" of traditional diagnosis.
Aerospace-grade precision for medicine
PhiCor (pronounced "Fai-core")
The name PhiCor represents the fusion of the two most important elements in our work
The "Golden Ratio"
A mathematical constant found throughout nature—from the chambers of the heart to the structure of DNA. It is the blueprint of biological efficiency.
Latin for Heart & Core
The mission to reach the core of human health by using the math of nature. We don't just analyze patterns; we solve the equation of the patient.
Every tool designed to reduce diagnostic uncertainty, accelerate clinical decisions, and improve patient outcomes
Physiological Modeling
Visualize how each organ system responds to disease in real-time. Understand the mathematical trajectory of your patient's condition before symptoms manifest.
Clinical Value
Differential Diagnosis
Transform clinical notes into actionable diagnoses. PhiCor synthesizes symptoms, labs, and imaging to deliver ranked differentials with evidence-based reasoning.
Clinical Value
Pharmacological Intelligence
Access comprehensive drug profiles with dosing, interactions, and organ-specific effects. Make prescribing decisions with complete pharmacological context.
Clinical Value
Nutritional Intelligence
Mathematical modeling of how food affects your body. Analyze meals with AI vision, map nutrients to organ parameters, and design personalized diets with quantified health outcomes.
Clinical Value
Disease Profiles
Drug Monographs
Food Analyses
Nutrient Profiles
Mathematical Models
From data integration to clinical decision support in four precision-engineered steps
PhiCor connects to the hospital's Electronic Medical Record (EMR). It securely extracts multi-dimensional data, from vitals and labs to medication history.
Our algorithms apply the Φ Constant—the mathematical blueprint of nature—to every organ system. We generate a high-fidelity "Digital Twin" of the patient's unique physiology.
We run real-time simulations to see how the patient's equations change. We solve for the impact of new medications or environmental stressors before they manifest clinically.
Doctors receive a clear, mathematical visualization of the patient's condition. By "solving" the equation, the clinical team can choose the path of highest probability for recovery.
Expected Healthcare Impact
Faster Diagnosis
Earlier Detection
Model Accuracy
Scalable to All
PhiCor uses real medical data with validated mathematical models of human physiology. Not speculation — real equations modeling real organ systems.
Simulate how diseases affect 46+ organ systems using validated mathematical equations - see real-time parameter changes.
Input clinical findings or free text and get ranked differential diagnoses with evidence-based guidelines and ICD-10 codes.
42+ validated scoring systems (CHA₂DS₂-VASc, MELD, SOFA, GCS) linked to diseases for instant risk stratification.
Explore 107+ drugs with real pharmacokinetic modeling, mechanism of action, and clinical effect predictions.
Analyze 0+ foods mathematically - see exactly how each nutrient affects specific body parameters like blood pressure (-2 mmHg), glucose (+5 mg/dL), and more.
Experience our digital physiology platform. Browse 1977+ diseases, explore mathematical models, and see how conditions affect organ parameters.
What you'll discover