Capture
Sequencing, CT and MRI, EEG, labs and wearables arrive in one encrypted patient graph within hours.
- WGS · 30×
- DICOM
- HL7 FHIR
Helixa models human biology from a single base pair to a beating heart, so care teams can see disease long before it becomes a symptom.
Every diagnosis starts in a molecule two nanometres wide. Helixa sequences, interprets and designs edits at base-pair resolution.
Two antiparallel strands, 2 nm wide, twisting once every 10.5 base pairs.
Four letters, 3.2 billion pairs. A always pairs with T, G with C.
A programmable enzyme scans the genome for one 20-letter address.
The strand is cut and repaired with the corrected sequence.
Thirty-seven trillion of them build a human. We model their machinery live, so a therapy can be tested on a digital cell before a real one.
A lipid bilayer under 10 nm thick that decides what gets in and out.
Stores the genome and the nucleolus, where ribosomes are assembled.
Convert nutrients into ATP, the chemical fuel of every process.
A folded membrane network that builds and folds proteins.
Tags, sorts and packages proteins for delivery.
We map viral surface proteins in hours, then design antibodies that bind exactly where the virus is vulnerable.
A roughly 100 nm particle wrapped in membrane stolen from its host.
Bind the ACE2 receptor to unlock entry into human cells.
Y-shaped proteins that lock onto spikes and block binding.
A coated virion can no longer infect and is cleared by immune cells.
Our nanocarriers travel roughly 100,000 km of vessels and release their payload only where the disease is.
About 25 trillion biconcave discs, each carrying 270 million hemoglobin molecules.
A single layer of cells regulating flow, clotting and inflammation.
Immune cells that roll along the vessel wall hunting infection.
Engineered particles that release drugs only at the diseased site.
Built from a single CT scan, each patient's heart twin simulates flow, pressure and electrical timing, beat by beat.
The body's largest artery, carrying oxygen-rich blood from the left ventricle.
Carries oxygen-poor blood from the right ventricle to the lungs.
Wrap the surface to feed the heart muscle itself.
Two atria receive blood; two ventricles pump it out.
The thickest wall of the heart, pumping blood to the whole body.
Helixa Neuro fuses MRI and EEG into a living map of the brain, localising seizures, strokes and tumours to the millimetre.
Planning, decisions, personality and voluntary movement.
Integrates touch, temperature, pain and spatial awareness.
Hearing, language comprehension and forming new memories.
The primary visual cortex, turning signals into sight.
Coordinates posture, balance and precise movement.
Controls breathing, heart rate and sleep cycles.
Four steps, one continuous model. What used to take a care team months now runs in days, and it gets sharper with every patient.
Sequencing, CT and MRI, EEG, labs and wearables arrive in one encrypted patient graph within hours.
Every scale of the patient is rebuilt as a living digital twin, from variant to cell state to organ mechanics.
Thousands of candidate therapies run against the twin overnight, ranked by efficacy and off-target risk.
Care teams get an explainable plan, and targeted therapeutics reach exactly the tissue that needs them.
Genomic, cellular and imaging data flow into a single model of each patient. Three products sit on top of it — each one validated, auditable and built to work inside existing clinical systems.
Whole-genome variant calling and interpretation with evidence traced to every classification.
Patient-specific organ twins built from routine imaging, simulating flow, pressure and electrical timing.
Design and route targeted nanocarriers that release their payload only at the diseased tissue.
See how Helixa fits your clinical workflows. A 30-minute walkthrough with our clinical science team, tailored to your specialty.