Full Arch Intelligence
ARCHX AI will automatically align your scan files in a few clicks, then automatically design the Provisional and Final Teeth — based on the tooth library selected in the Digital Wax-Up Phase.
The Problem
The full-arch design process is still largely manual — scan alignment, wax-up matching, provisional design — all done by hand, case by case. It's time for predictable results.
A skilled technician spends most of a working day importing scans, aligning coordinate systems, and designing a provisional by hand. Every case starts from zero — no intelligence carries over from the last one.
When scan alignment is off — even slightly — it propagates through the entire design. The provisional doesn't fit. The bite is wrong. The patient is back in the chair, the lab is doing unpaid rework, and confidence erodes.
On $800–$2,500 cases, a single remake collapses the margin. At volume, inconsistent outcomes aren't just expensive — they're unsustainable. Clinicians and labs deserve a process they can count on every time.
Clinical Workflow
ARCHX AI is built around the full clinical reality of All-on-X — not a simplified version of it. The platform ingests data from every phase and learns the relationships between them.
Intraoral scans or impressions are taken and pre-op photos captured. A design technician builds a digital wax-up — the patient's ideal smile and occlusion. The doctor approves this design. It becomes the blueprint that everything downstream must match.
With the patient numbed, 1–4 fiducial markers are screwed directly into bone — creating a fixed coordinate reference between pre- and post-surgery anatomy. A full intraoral scan and bite registration is captured and sent to the design team before surgery begins.
Remaining teeth are extracted, and bone is modified based on the prosthetic design for an FP1, FP2, or FP3 treatment plan.
Photogrammetry captures the exact spatial position and angulation of every implant with sub-millimeter accuracy — far exceeding intraoral scanning. Proprietary scan caps are attached to each implant, and a new intraoral scan captures the changed tissue and palate anatomy.
Today a technician manually aligns fiducial markers from pre-surgery scans to the photogrammetry and tissue scans taken after implant placement — then hand-modifies the approved wax-up to fit the actual post-surgery VDO and jaw relation. Any error here means a wrong bite. ARCHX AI automates this entire step: registering all coordinate systems and adapting the wax-up algorithmically.
The finalized provisional STL is sent to the office for 3D printing in biocompatible resin — Onyx Tough 2 / SprintRay or equivalent. Seated, screws torqued down. With accurate alignment, bite adjustments are minimal. With AI, the goal is near-zero chairside adjustment.
The Technology
Geometric deep learning (PointNet / MeshCNN) processes raw STL mesh data — not flattened images. The model understands the 3D geometry of bone, tissue, and implant positions natively.
Fiducial markers are treated as fixed reference anchors. The AI solves the rigid-body registration problem between pre- and post-surgery coordinate frames automatically — eliminating the #1 source of bite errors.
Each submitted case — paired input scans plus completed provisional output — is a training example. The model improves continuously. Early clinical advisors who contribute data are building the moat.
AI generates the provisional design. Your technician reviews, adjusts, and approves before printing. The platform accelerates expert work — it doesn't replace clinical judgment.
Compatible Systems
Designed to integrate with the photogrammetry systems, intraoral scanners, and CAD tools already in your practice or lab. No rip-and-replace.
Submit cases and track your workflow through the ARCHX AI secure clinician portal.
Access Clinician Portal →Early Access
Join the waitlist to get early access, contribute cases to train the AI, and secure your Clinical Advisory Board equity position. Founding members receive the highest equity tier — and the most influence over how this platform is built.
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