The minimally invasive revolution was a miracle for patients, but it came at a devastating cost to surgeons. For forty years, surgeons have been forced to look away from their hands, staring at external wall monitors. This reliance on remote displays has fueled an ergonomic crisis in the operating room, straining the surgeon's spine in the name of patient care. With advances in AI and ergonomic design, it's time to fix the geometry of the OR through intelligent visualization.

We are engineering a proprietary, medical-grade spatial visualization headset designed specifically for endourology and soft-tissue surgery, powered by advanced AI for enhanced performance.
Line-of-Sight Ergonomics: We're taking the monitor off the wall and placing it directly into the surgeon's natural line of sight, improving comfort and efficiency during long procedures.
Ultra Low-Latency Architecture: Bypassing standard operating systems to prevent the motion sickness common in consumer AR headsets, ensuring a seamless experience for the surgeon.
The Virtual Cockpit: Consolidating vital operative feeds into a single, sterile, hardware-agnostic display for sharper decision-making during procedures.

Founded by practicing surgeons. Built for the future of the OR. We are currently in stealth hardware development and actively engaging with select clinical partners, engineering talent, and early-stage Med-Tech incubators.

Dr. P.S. Eswar didn't set out to build a company. He set out to fix a problem that was breaking surgeons — one case at a time.
As a final-year MCh Urology resident, he spends long stretches of every endoscopic procedure doing something the operating room has quietly normalized: craning his neck sideways to watch a flat, 2D feed on a monitor bolted to the wall. Depth perception lost. Attention split across three or four screens. And, over a career, a spine that pays the price for it. Surgeons call it an occupational hazard. Dr. Eswar calls it a design failure.
That frustration became SAQRA Technologies — and UroXR1, a Surgical-grade AR visor built to put every surgical screen exactly where a surgeon's eyes already are.
Not a repurposed gaming headset. Not a diagnostic AI tool. A precision instrument, engineered from the ground up for the sterility, latency, and unforgiving pace of a real OR.
His long-term vision extends further still — a fully integrated, cord-free urology OR ecosystem, designed to improve efficiency, sterility, and outcomes for surgeons and patients alike.
Along the way, he's published 13 peer-reviewed papers, presented at various state and international conferences.
Today, he splits his time between his academic schedule and the workbench — leading UroXR1's clinical and product direction, and working with engineering partners at the XTIC Lab, IIT Madras, to take the device from prototype toward the OR it was built for.

UroXR1's engineering development is being carried out in collaboration with the Extended Reality and Simulation Technologies (XTIC) Lab at IIT Madras, under the guidance of Prof. M. Manivannan of the Department of Applied Mechanics and Biomedical Engineering.
Prof. Manivannan's lab brings deep expertise in human-machine interaction, biomedical instrumentation, and applied engineering research — a natural fit for the precision demands of a surgical-grade AR system. This partnership grounds UroXR1's technical development in rigorous, institution-backed engineering practice, with a direct path toward clinical validation and peer-reviewed publication.
Curious about our technology? Send us a message and we'll get back to you soon to talk through what we're building.
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