Johannes M Sieberer, MSc, MS
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About
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Education & Training
- PhD
- Yale School of Engineering and Applied Science, Mechanical Engineering (In Progress) (2028)
- MS
- Yale University, Mechanical Engineering (2023)
- MSc
- MCI, Industrial Engineer & Management (2022)
- MSc
- MCI, Medical Technologies (2021)
- BSc
- MCI, Mechatronics - Electrical Engineering (2018)
Research
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Overview
Medical Research Interests
Elbow Joint; Patellofemoral Joint
ORCID
0000-0002-4191-3442
Research at a Glance
Yale Co-Authors
Frequent collaborators of Johannes M Sieberer's published research.
Publications Timeline
A big-picture view of Johannes M Sieberer's research output by year.
Research Interests
Research topics Johannes M Sieberer is interested in exploring.
John Fulkerson, MD
Steven Tommasini, PhD
Daniel Wiznia, MD
David Felson, MD, MPH
Alyssa Glennon
Christopher Schneble, MD
21Publications
83Citations
Patellofemoral Joint
Publications
Featured Publications
Analyzing Alignment Error in Tibial Tuberosity–Trochlear Groove Distance in Clinical Scans Using 2D and 3D Methods
Sieberer J, Park N, Rancu A, Desroches S, McDonald C, Manafzadeh A, Tommasini S, Wiznia D, Fulkerson J. Analyzing Alignment Error in Tibial Tuberosity–Trochlear Groove Distance in Clinical Scans Using 2D and 3D Methods. The American Journal Of Sports Medicine 2024, 52: 2996-3003. PMID: 39320426, DOI: 10.1177/03635465241279852.Peer-Reviewed Original ResearchCitationsAltmetricVisualization of Trochlear Dysplasia Using 3-Dimensional Curvature Analysis in Patients With Patellar Instability Facilitates Understanding and Improves the Reliability of the Entry Point to Trochlea Groove Angle
Sieberer J, Park N, Manafzadeh A, Desroches S, Brennan K, McDonald C, Tommasini S, Wiznia D, Fulkerson J. Visualization of Trochlear Dysplasia Using 3-Dimensional Curvature Analysis in Patients With Patellar Instability Facilitates Understanding and Improves the Reliability of the Entry Point to Trochlea Groove Angle. Arthroscopy Sports Medicine And Rehabilitation 2024, 7: 101010. PMID: 40041820, PMCID: PMC11873473, DOI: 10.1016/j.asmr.2024.101010.Peer-Reviewed Original ResearchCitations
2026
Adverse patellofemoral morphology and worsening osteoarthritis: an exploration of composite vs. single MRI outcomes
McGinley B, LaValley M, Sieberer J, Fulkerson J, Lynch J, Guermazi A, Roemer F, Lewis C, Segal N, Felson D, Investigators F. Adverse patellofemoral morphology and worsening osteoarthritis: an exploration of composite vs. single MRI outcomes. Osteoarthritis Imaging 2026, 6: 100383. DOI: 10.1016/j.ostima.2025.100383.Peer-Reviewed Original ResearchCitationsAltmetricA Multiplanar Reformatting Technique to Correct for Scanner Misalignment During Computed Tomography Measurement of Tibial Tuberosity‐Trochlear Groove Distance
Kim L, Sieberer J, Girardi K, Ansah‐Twum J, Schneble C, Wiznia D, Fulkerson J. A Multiplanar Reformatting Technique to Correct for Scanner Misalignment During Computed Tomography Measurement of Tibial Tuberosity‐Trochlear Groove Distance. Arthroscopy Techniques 2026 DOI: 10.1002/atn2.70073.Peer-Reviewed Original ResearchMeasures of Patellofemoral Morphology Predict the Risk of Local Cartilage Damage Progression: Response
Sieberer J, Fulkerson J. Measures of Patellofemoral Morphology Predict the Risk of Local Cartilage Damage Progression: Response. The American Journal Of Sports Medicine 2026, 54: np36-np37. PMID: 42085177, PMCID: PMC13144629, DOI: 10.1177/03635465261426984.Peer-Reviewed Original ResearchAssessing the accuracy of 3D assistive technologies for surgical guidance of osteosarcoma resections: a comparative laboratory study of mixed reality, patient-specific instruments and freehand approaches
Caceres-Alban J, Lindskog D, Sieberer J, Glennon A, Tommasini S. Assessing the accuracy of 3D assistive technologies for surgical guidance of osteosarcoma resections: a comparative laboratory study of mixed reality, patient-specific instruments and freehand approaches. Arthroplasty 2026, 8: 9. PMID: 41639909, PMCID: PMC12874771, DOI: 10.1186/s42836-026-00369-8.Peer-Reviewed Original ResearchAltmetric
2025
Breaking down tibial tuberosity to trochlear groove distance into two components to enable patient-specific treatment strategies
Sieberer J, Park N, Desroches S, Brennan K, Rancu A, McGinley B, Manafzadeh A, Segal N, Felson D, Tommasini S, Wiznia D, Fulkerson J. Breaking down tibial tuberosity to trochlear groove distance into two components to enable patient-specific treatment strategies. Journal Of ISAKOS Joint Disorders & Orthopaedic Sports Medicine 2025, 16: 101025. PMID: 41173215, PMCID: PMC12802969, DOI: 10.1016/j.jisako.2025.101025.Peer-Reviewed Original ResearchThis study investigates separating tibial tuberosity to trochlear groove (TT-TG) distance into rotational and translational components, showing rotational factors primarily drive differences in patellar instability patients.Measures of Patellofemoral Morphology Predict the Risk of Local Cartilage Damage Progression: A Yale/MOST Collaborative Study
Park N, Sieberer J, McGinley B, Manafzadeh A, Lynch J, Segal N, Lewis C, Guermazi A, Roemer F, Stefanik J, Felson D, Fulkerson J. Measures of Patellofemoral Morphology Predict the Risk of Local Cartilage Damage Progression: A Yale/MOST Collaborative Study. The American Journal Of Sports Medicine 2025, 53: 2881-2888. PMID: 40938089, PMCID: PMC12435904, DOI: 10.1177/03635465251367716.Peer-Reviewed Original ResearchCitationsAltmetricThree-Dimensional Tibial Tubercle Transfer Planning
Fulkerson J, Park N, Manafzadeh A, Glennon A, Allen C, Sieberer J. Three-Dimensional Tibial Tubercle Transfer Planning. Video Journal Of Sports Medicine 2025, 5: 26350254251342819. PMID: 41180173, PMCID: PMC12579149, DOI: 10.1177/26350254251342819.Peer-Reviewed Original ResearchCitationsAltmetricThe Patellofemoral Entry Point–Transition Point Angle: Digitalization and Reliability Analysis
Sieberer J, Park N, Desroches S, Manafzadeh A, Tommasini S, Wiznia D, Yu K, Fulkerson J. The Patellofemoral Entry Point–Transition Point Angle: Digitalization and Reliability Analysis. Orthopaedic Journal Of Sports Medicine 2025, 13: 23259671251343235. PMID: 40630506, PMCID: PMC12235091, DOI: 10.1177/23259671251343235.Peer-Reviewed Original ResearchCitationsAltmetric
Academic Achievements & Community Involvement
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Featured
honor Patellofemoral Research Excellence Award
06/10/2025International AwardISAKOS
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Locations
Biomechanics Lab
Lab
Farnam Memorial Building
310 Cedar Street
New Haven, CT 06510
Yale Biomechanics and Control Lab
Lab
17 Hillhouse Avenue, Fl 2
New Haven, CT 06511