
Precision OS
Precision OS is a provider of virtual reality orthopedic surgical education and pre-operative planning software.
Date | Investors | Amount | Round |
---|---|---|---|
- | investor | €0.0 | round |
investor | €0.0 | round | |
investor | €0.0 | round | |
* | N/A | $1.5m | Grant |
Total Funding | 000k |
USD | 2019 | 2020 | 2021 | 2022 | 2023 |
---|---|---|---|---|---|
Revenues | 0000 | 0000 | 0000 | 0000 | 0000 |
% growth | - | 111 % | 7 % | 44 % | - |
EBITDA | 0000 | 0000 | 0000 | 0000 | 0000 |
Profit | 0000 | 0000 | 0000 | 0000 | 0000 |
EV | 0000 | 0000 | 0000 | 0000 | 0000 |
EV / revenue | 00.0x | 00.0x | 00.0x | 00.0x | 00.0x |
EV / EBITDA | 00.0x | 00.0x | 00.0x | 00.0x | 00.0x |
R&D budget | 0000 | 0000 | 0000 | 0000 | 0000 |
Source: Dealroom estimates
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PrecisionOS Technologies specializes in providing immersive Virtual Reality (VR) surgical training solutions designed to enhance the precision and accessibility of surgical education. The company serves medical institutions and medical device companies, operating within the healthcare and medical technology markets. PrecisionOS's business model revolves around offering scalable and cost-effective VR training modules that can be accessed on-demand, anywhere, and anytime. This approach helps to speed up device adoption and improve surgical confidence and readiness. The company generates revenue through the sale of its VR training solutions to medical institutions and device manufacturers, who benefit from the high-fidelity simulations that augment existing bioskills training. PrecisionOS's clients include prestigious institutions such as Oral Roberts University, Sacre Coeur, Humber River Hospital, Geisinger, Washington University in St. Louis, University Hospitals Cleveland Medical Center, UCONN, Lenox Hill, MedStar, Yale, Toronto Western, and British Columbia. The company's solutions address the fragmented nature of traditional surgical training and the limitations imposed by duty hour restrictions, providing a more effective and scalable alternative.
Keywords: VR surgical training, medical education, immersive experiences, scalable solutions, cost-effective training, device adoption, surgical precision, healthcare technology, high-fidelity simulations, medical institutions.