Capital cost
An O‑arm™ II runs about A$850,000 (≈US$560K); a mobile intraoperative CT like Airo® ranges up to A$1.2M, before the navigation platform is added.3
See All AI generates sliceable, high‑resolution 3D volumes from four standard fluoroscopic images, on the C‑arms already installed in roughly 150,000 operating rooms worldwide. No intraoperative CT. No CT radiation burden. No million‑dollar machine.
Image‑guided surgery improves accuracy, but the price of admission is an intraoperative CT platform. Most of the world's operating rooms will never have one.
An O‑arm™ II runs about A$850,000 (≈US$560K); a mobile intraoperative CT like Airo® ranges up to A$1.2M, before the navigation platform is added.3
In pediatric spine fusion, intraoperative CT navigation averaged 1.48 mSv effective dose versus 0.34 mSv with C‑arm fluoroscopy.4 A single spinal CT delivers over 3,100% more radiation than a standard fluoroscopy image.1
Intraoperative CT means moving an 816 kg (1,800 lb) gantry plus a navigation tower in and out of sterile ORs.5 The C‑arm is already there.
Only well‑funded hospitals can justify the spend. Rural clinics, community hospitals, and most of the world operate without 3D guidance at all.2
See All AI is pioneering a breakthrough in medical imaging, harnessing AI and deep learning to elevate what's possible in diagnostic and intraoperative 3D volumetric imaging.2
From four intraoperative fluoroscopic X‑rays, the platform reconstructs a high‑resolution volume, sliceable in 1 mm cross‑sections across multiple planes, with fidelity comparable to CT. It eliminates the need for pre‑operative CTs, MRIs, or additional intraoperative imaging systems.1
A proprietary visible‑light machine vision camera tracks surgical instruments with sub‑millimeter accuracy, without markers, emitters, or the direct line‑of‑sight that infrared navigation systems require.1
The human eye is most sensitive to green light, the most vivid and detailed color we perceive. Our computer vision is designed to emulate that sensitivity to enhance 3D vision.2
Incumbent 3D navigation bundles imaging hardware, tracking hardware, and software into a seven‑figure ecosystem. We replace the hardware with software.
| Dimension | See All AI | Intraoperative CT navigation |
|---|---|---|
| Imaging source | The standard C‑arm already in the OR; 3D reconstructed from a four‑shot fluoro workflow | Dedicated cone‑beam or fan‑beam CT gantry brought into the OR |
| Patient radiation | Standard fluoroscopy‑level exposure; a spinal CT delivers 3,100%+ more than a fluoro image [1] | CT‑class dose; 1.48 vs 0.34 mSv measured against fluoro in spine fusion [4] |
| Capital cost | Software‑first platform on existing equipment | ≈US$560K (O‑arm™ II) to A$1.2M (Airo®), plus navigation platform [3] |
| Added OR footprint | A visible‑light camera | 816 kg (1,800 lb) gantry, optional 350 lb column, navigation tower [5] |
| Instrument tracking | Track All™ visible‑light vision, sub‑millimeter, no markers or line‑of‑sight [1] | Infrared cameras with reflective marker arrays requiring constant line‑of‑sight |
| Pre‑operative imaging | Designed to eliminate pre‑op CT/MRI for navigation [1] | Typically registered to pre‑operative CT or an intraoperative spin |
| Addressable install base | ≈150,000 fluoroscopy units worldwide [1] | Limited to hospitals that can fund a seven‑figure imaging suite |
Imagine a world where patients everywhere can be treated with the highest‑quality technology, where physicians at leading institutions, in rural clinics, urban hospitals and remote communities are empowered with tools to See All.2
An open, software‑based approach to imaging instead of expensive hardware or closed ecosystems, in the words of our CEO. Software scales; gantries don't.1
Intraoperative CT sells to the top of the hospital pyramid. A software platform on existing C‑arms addresses the ≈150,000‑unit installed base the incumbents can't touch.1
3D image‑guided navigation that reduces complexity, radiation, operating room time, and cost.1
Our founder invented the O‑arm™ at Breakaway Imaging and led Mobius Imaging, developer of the Airo® system, the two platforms this technology now leapfrogs.1
Founder & Chief Innovation Officer
Founded Breakaway Imaging, where he invented the O‑arm™ intraoperative imaging system, and led Mobius Imaging, developer of Airo®.1
Chief Executive Officer
Veteran medtech executive; former President & CEO of spine company K2M.6
Chief Medical Officer
Surgeon‑in‑Chief Emeritus, Hospital for Special Surgery, New York City.1
$33M raised. Three foundational patents with allowable subject matter. A team that built this market once already. Based in Nashua, New Hampshire.
Prefer email? Write to info@seeall.ai
Regulatory status: See All AI's technologies are in the development phase and have not yet received FDA clearance. These technologies are not intended for clinical use until appropriate regulatory approvals are obtained.2 Comparative figures on this page are drawn from the published sources listed below; they describe third‑party systems and independent studies, not cleared claims about See All AI products.