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PrecisionOS ernennt sechs renommierte orthopädische Chirurgen mit Spezialisierung auf Sportmedizin in den klinischen Beirat

Article Summary

21. Dezember 2021

Alle sechs Chirurgen genießen in ihrem Fachgebiet hohes Ansehen und waren oder sind derzeit in zahlreichen renommierten Organisationen und Gremien im Bereich der Sportmedizin tätig.

In This Article:

PrecisionOS Appoints Six Distinguished Orthopedic Surgeons Specializing in Sports Medicine to Clinical Advisory Board

VANCOUVER, British Columbia—December 21, 2021PrecisionOS® hat fünf prominente orthopädische Chirurgen, die sich auf Sportverletzungen spezialisiert haben, in ihr Clinical Advisory Board aufgenommen. PrecisionOS entwickelt Virtual Reality (VR)-Schulungen für Assistenzärzte, praktizierende Chirurgen und Vertreter von Medizinprodukten. Die Sportmediziner werden gemeinsam mit dem Unternehmen eine fortgeschrittene orthopädische arthroskopische Ausbildung in VR entwickeln.

“We are pushing the boundaries with our virtual reality development in arthroscopy. The opportunities to train and teach are infinite and we want to ensure that the learners have access to the highest quality of VR training,” explains Danny Goel, M.D., CEO, PrecisionOS. “I am honored to be surrounded by leaders in arthroscopy who share our passion for education.”

Alle fünf Chirurgen genießen in ihrem Fachgebiet hohes Ansehen und waren oder sind derzeit in zahlreichen renommierten Organisationen und Gremien im Bereich der Sportmedizin tätig.

PrecisionOS’ modules have been scientifically validated, peer reviewed and published in leading medical journals. The company’s VR platform has a validated assessment program (Precision Score™) that has been shown to provide an accurate picture of how trainees will perform specific surgical procedures in the live operating room.

Die fünf neuen Mitglieder sind:

Olufemi (Femi) Ayeni, MD, FRCSC, ist Professor und akademischer Leiter der orthopädischen Chirurgie an der McMaster University in Ontario. Ayeni ist eine führende Autorität auf dem Gebiet von Hüftverletzungen bei jungen Erwachsenen und seit mehr als vier Jahren als medizinischer Direktor für die Sportteams Hamilton Tiger-Cats und Forge FC tätig.

Amon T. Ferry, MD, ist orthopädischer Chirurg am Arizona Sports Medicine Center. Er konzentriert sich auf minimalinvasive Techniken und ist spezialisiert auf arthroskopische Eingriffe, einschließlich Rotatorenmanschettenrekonstruktion, Kniebandrekonstruktion und Schulterersatz. Derzeit ist Ferry Teamarzt für die Arizona Diamondbacks, Arizona Cardinals und Seattle Mariners.

Alan Getgood, MD, FRCS, ist außerordentlicher Professor an der Schulich School of Medicine & Dentistry an der Fowler Kennedy Sports Medicine Clinic. Er ist spezialisiert auf Erkrankungen des Kniegelenks, mit besonderem Fokus auf komplexe Bandrekonstruktionen und Gelenkerhalt. Er hat erfolgreich über 9 Millionen US-Dollar an begutachteten und von der Industrie finanzierten Zuschüssen erhalten, um sein präklinisches und klinisches Forschungsprogramm aufzubauen.

Laurie Hiemstra, MD, ist orthopädischer Chirurg, Banff Sport Medicine, Banff, Alberta, Kanada. Sie ist außerdem Associate Professor, Department of Surgery an der University of Calgary. Das Forschungsprogramm in Banff konzentriert sich auf Kniebandverletzungen, Prävention von Sekundärverletzungen, Rehabilitation und chirurgische Ergebnisse mit einem Schwerpunkt auf VKB-Verletzungen und -Rekonstruktionen sowie auf patellofemorale Instabilität.

Karen M. Sutton, MD, ist Associate Attending orthopädischer Chirurg am Hospital for Special Surgery (HSS) in New York City. Sutton ist ein staatlich anerkannter Sportmediziner mit chirurgischer Expertise in der Arthroskopie von Schulter, Knie und Hüfte Sport.

Jovan Laskovski, MD., ist Hüftarthroskopie in Akron, Ohio. Er ist spezialisiert auf Hüftarthroskopie mit einem Schwerpunkt sowohl auf der Hüfterhaltung als auch auf der arthroskopischen/endoskopischen Behandlung von extraartikulären Erkrankungen. Er war Master Instructor für die Arthroskopie Association of North America und ist in der International Society for Hip Arthroskopie aktiv und hält Vorträge in Nordamerika, Südamerika, Asien, Australien und Europa. Er ist auch der Leiter des Residenzprogramms, Crystal Clinic Orthopedic Center

Über PrecisionOS

PrecisionOS wurde in Zusammenarbeit mit Ausbildern klinischer orthopädischer Chirurgen und einer Expertengruppe von XR-Entwicklern (Virtual Reality, Augmented Reality und Mixed Reality) gegründet, um Simulationstrainings für praktizierende Chirurgen, Assistenzärzte und Vertreter von chirurgischen Geräten zu erstellen. Teilnehmer, die PrecisionOS-Module verwenden, engagieren sich allein oder in Zusammenarbeit mit anderen Auszubildenden auf der ganzen Welt in einer realistischen Betriebsumgebung, testen ihr Wissen und ihren Wunsch, alternative Ansätze auszuprobieren, erhalten lehrreiches Feedback und wiederholen Verfahren bis zum Erreichen der Kenntnisse. Mit InVision(TM), einem patientenspezifischen Planungstool, expandiert das Unternehmen in die Bereitstellung von Produkten der nächsten Generation für präoperative Chirurgie und Simulationstraining und -ausbildung.

PrecisionOS is based in Vancouver, BC, with collaborative affiliations with more than 40 major medical institutions in the U.S. and Canada. The company’s software is being used in more than 40 countries and 600 cities globally. For more information please visit www.precisionostech.com

Medienkontakt: 

Elaine Murphy; 818.613.1951; emurphypr@outlook.com 

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Über PrecisionOS

PrecisionOS is a leader in virtual reality-enabled surgical education. Trusted by top academic medical centers, health systems, and professional societies worldwide, the company delivers an immersive, scalable training ecosystem designed by surgeons for residents and the next generation of healthcare professionals. By combining high-fidelity VR cadaver labs with on-the-go access via the Approaches mobile module and AI-driven performance reporting, PrecisionOS ensures surgeons are ready for the OR, today.

Häufig gestellte Fragen

Is there a step-by-step "Quick Start" guide for residents?

Yes—The Onboarding Course is your fastest path to proficiency. It walks you through account syncing, procedure selection, and your first virtual rehearsal step-by-step, ensuring you are “OR Ready” before you pick up the controllers.

Action: Follow the guided video path to standardize your learning experience.

Yes. PrecisionOS is compatible with Meta Quest 3, and 3s. If you already own a headset, you simply need to download the PrecisionOS Launcher from the App Store and sign in with your institution email and membership credentials.

Action: Download the launcher and log in.

Your Individual Membership is a month-to-month subscription ($99/mo) designed for residents who want 24/7 access to surgical rehearsal without a long-term contract.  Reach out for information about an institutional membership.

Action: Your card is billed every 30 days from the date of signup.

Hospital networks will often require a MAC address for device white-listing. You can find this in your Meta Quest headset settings under About > MAC Address.

Action: Reach out to provide your IT department with the MAC address found in your headset settings.

Both the headset firmware and the PrecisionOS app must be up to date to prevent technical glitches. Go to Settings > Software Update on your Quest and check the Launcher for app updates.

Action: Enable “Auto-updates” in your headset settings.

About The Author

Bild von Danny P. Goel, MD

Danny P. Goel, MD

Is the CEO of PrecisionOS and is a practicing surgeon and surgical educator. Dr. Goel currently practices in the Vancouver, B.C. area and also serves on the University of British Columbia’s Faculty of Medicine in the Department of Orthopedic Surgery.

He received his medical degree from the University of Manitoba, pursued his residency training in orthopedic surgery at the University of Calgary, and completed fellowship training in shoulder surgery at the University of Western Ontario and Harvard University.

Goel has co-authored more than 30 publications, and is widely sought as a presenter on surgical techniques.

21 Months of Automated VR Data

MAJOR ACADEMIC ORTHOPAEDIC RESIDENCY PROGRAM

How self-directed VR practice fills the seams of the clinical day and produces measurable learning trajectories—completely automatically.

Executive Summary:

Over a 21-month period, 30 orthopaedic residents integrated immersive VR into their training curriculum. With a simple, weekly requirement for residents to practice in headset, the platform seamlessly captured over 88,000 structured data points across 2,566 practice sessions. The resulting data proved that when residents have access to high-fidelity, frictionless simulation and are motivated, they will hone their skills and demonstrate clear performance improvements.

Frictionless Adoption: Practice doesn't compete with clinical time. The data revealed that 45% of all sessions happened organically during lunch breaks or on weekends.

Comprehensive Coverage: Usage wasn't limited to a single subspecialty. Residents attempted 61 distinct cases across 27 procedure modules, proving active engagement from Foundations & Anatomy to Complex Trauma.

Measurable Improvement: The platform didn't just track usage; it tracked skill acquisition. Across 288 scored playthroughs, longitudinal data showed a clear performance signal, with residents demonstrating an average positive learning delta of +0.36 over time.

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Own Your Progress.

Download the PrecisionOS mobile app to access Delphi’s insight reports and turn every VR session into a springboard for future success.

Step #1

State Your Intent

Tell Delphi, your AI Attending Mentor, what you are looking to practice.

Step #2

Get Practice Recommendations

Based on your request, Delphi will suggest personalized VR apps and Video training.

Step #3

Queue Apps In VR

Tap Add to Queue and the VR app will be waiting for you in headset.

Step #4

Learn From Experts

Access the video library for expert-led Virtual Grand Rounds and discover surgical pearls from industry leaders and device experts.

Step #4

Practice With A Plan

Go through the recommended VR apps to gain the skills and repetition needed for success. 

Step #5

Review Performance Insights

After your VR session, review your personalized performance insight on your phone to maximine your OR success. 

Smiling businessman in blue suit and tie against gray background.

Dr. Andrew Maeso

Orthopedic resident

From Uncertainty to Execution

“You already have a plan, now you’re just executing it.”

The Story: Bridging the "Intern Gap"

Dr. Andrew Maeso recognizes the steep reality of residency: “As an intern, you are thrown into the fire.” For him, the hurdle wasn’t just the surgery—it was the invisible mechanics (positioning, X-ray angles, and workflow) that move too fast to learn in a high-pressure OR.

The Solution: Access Over Policy

By bringing the PrecisionOS ecosystem home, Dr. Maeso replaced passive YouTube watching with active mental rehearsal. This allowed him to arrive in the OR with the “steps” already hard-coded into his muscle memory.

The Game Changer: Personal headsets issued for at-home, 24/7 training.

Clinical Focus: Mastery of Antegrade Femoral Nails and Shoulder Arthroscopy.

Program Growth: Experience led to secured funding for all incoming residents.

Smiling man wearing glasses and checkered shirt in an office setting.

Roberto Oliveira

Founder

Over his 25 years in the gaming industry, Roberto Oliveira has been known for bringing stunning realism and high fidelity to interactive experiences.

He combines an art director’s artistic vision with solid business leadership, including experience in building art teams, creative team management, project planning, project management and business development.

Over the years, his talents have been showcased in projects for major publishers including Sony, Activision, Disney and Electronic Arts.

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Dr. Ryan Lohre

MGH Staff Surgeon

From Resident to MGH Staff Surgeon

“Prepare like it matters. Because in the OR—it does.”

The Story: The Currency of Trust

Dr. Ryan Lohre’s trajectory changed during a complex pediatric case that had already seen two failed attempts by tenured surgeons. While textbooks offered the theory, Dr. Lohre used VR to master the 3D spatial intelligence required to build a mental model of the deformity and navigate C-arm imagery in real-time.

The Solution: The 18-Minute Sandbox

The night before surgery, Dr. Lohre rehearsed the procedure four times in VR from his own home. This high-fidelity rehearsal allowed him to arrive in the OR functioning at 80-90% proficiency, compared to the typical 10-20% for a resident facing a new, complex procedure.

The Game Changer: 18 minutes of at-home VR prep for a complex pediatric case.

Clinical Focus: Spatial intelligence for C-arm interpretation and screw trajectory.

Program Growth: Transitioned from trainee to Staff Surgeon at Mass General.

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Dr. Barry McDonough

Program Director

Teaching with Surgical Efficiency

“I let the junior resident do more than ever before—and still finished on time.”

The Story: Reclaiming the OR

While at West Virginia University (WVU), Dr. Barry McDonough faced a universal challenge: balancing resident education with strict OR efficiency. By the time residents step into the OR, foundational skills like camera handling and triangulation should be second nature—not a distraction that slows down the case.

The Solution: Independent Preparation

Residents were assigned just 10 minutes of asynchronous VR training per week. This allowed them to master the “invisible” basics of arthroscopy on their own time. With an average of 17 sessions completed during the pilot, residents arrived with a mental roadmap that translated into immediate technical fluency.

The Game Changer: Asynchronous prep—residents train independently at home.

Clinical Focus: Mastery of triangulation, scope control, and anchor placement.

Program Growth: Model expanded across trauma, spine, and upper extremity.

Man in blue suit with glasses smiling in front of bookshelf.

Dr. Charlie Spieser

Orthopedic Resident

Mastering the Visuo-Spatial Gap

“VR practice shifts questioning from case generalizations to technique refinement.”

The Story: From Application to Confidence

Charlie Spieser highlights a universal resident hurdle: the high-stress transition from “book knowledge” to real-world execution. Early in training, the fear of making irreversible decisions can lead to hesitation. To bridge this gap, Charlie utilized VR as a daily resource for kinetic learning and anatomical association.

The Solution: Refining Spatial Intelligence

Unlike textbooks or passive videos, PrecisionOS allowed Charlie to practice high-stakes approaches—such as the anterior total hip—in a guided, 3D environment. This repetition provided a “safe sandbox” to identify why errors occurred, building the visuo-spatial confidence required to navigate complex anatomy before ever entering the OR.

The Game Changer: Daily Integration—normalized as an expected program resource.

Clinical Focus: Anterior Total Hip and Deltopectoral surgical approaches.

Program Growth: Nuanced Mentorship—shifting focus to specific faculty preferences.

Orthopaedic virtual reality training for junior residents in surgery.

Immersive Virtual Reality Training for a Junior Orthopaedic Surgery Resident

Andres D Maeso, DO, Michael R McDermott, DO, Jerrod A Steimle, DO

How consistent iVR training accelerates technical fluency and attending trust for first-year residents.

Executive Summary: This case study follows a first-year resident’s integration of immersive VR (iVR) into their surgical curriculum. By dedicating consistent training time to virtual modules, the resident was able to master procedural steps and receive real-time feedback in a risk-free environment before ever stepping into the operating room. The study highlights that this deliberate practice led to a “noticeable improvement in overall efficiency” and significantly increased the attending’s trust and confidence in the resident’s intraoperative capabilities.

Source Attribution: Immersive Virtual Reality Training for a Junior Orthopaedic Surgery Resident, Journal of Orthopaedic Experience & Innovation (2025).

Muscle Memory Development: The repetitive nature of immersive VR (iVR) training, combined with constant real-time feedback, allows technical surgical steps to become deep-seated muscle memory.

Measurable Efficiency Gains: Residents utilizing the platform observe a "noticeable improvement" in overall efficiency and technical proficiency when performing complex orthopedic procedures.

Accelerated Attending Trust: Preoperative rehearsal in a virtual environment significantly increases attending surgeon confidence, directly leading to increased autonomy for the resident in the operating room.

Professional man in business attire for PrecisionOS.

Danny P. Goel, MD

Geschäftsführer

A practicing surgeon and surgical educator, Dr. Goel currently practices in the Vancouver, B.C. area and also serves on the University of British Columbia’s Faculty of Medicine in the Department of Orthopedic Surgery.

He received his medical degree from the University of Manitoba, pursued his residency training in orthopedic surgery at the University of Calgary, and completed fellowship training in shoulder surgery at the University of Western Ontario and Harvard University.

Goel has co-authored more than 30 publications, and is widely sought as a presenter on surgical techniques.

Professional man smiling in a blue shirt for PrecisionOS About Us page.

Colin O'Connor

Founder

Colin O’Connor brings a proven track record as a business leader and entrepreneur, as well as expertise at developing cutting-edge technology to create immersive, high-fidelity experiences.

He has overseen and played key leadership roles in the highest echelons of the video game industry, founding companies and taking more than 16 top-tier titles to market.

He has worked at the forefront in innovating new rendering technologies in the areas of lighting, motion, particle graphics and shading that bring unprecedented realism to interactive experiences.

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