Background: Although the Neer and AO/OTA classifications have been widely accepted, observer reliability studies of these two classifications have questioned their reliability and reproducibility to date. We developed an entirely new classification, the Mitsuzawa classification, for dislocated and displaced proximal humeral fractures and tested all three classifications for their intra- and interobserver reliability.
Methods: Two experienced shoulder surgeons and two orthopedic residents independently evaluated the Xray (xR) values of 100 proximal humeral fractures (PHFs). The inclusion criteria for PHFs were (1) fracture-dislocation of the glenohumeral joint, (2) severely displaced fracture that required arthroplasty, such as hemi-arthroplasty or reverse shoulder arthroplasty, and (3) age > 18 years. Four reviewers classified all 100 fractures according to the Neer, AO/OTA, and Mitsuzawa classifications on two occasions. The intraobserver reliability was calculated using a Cohen κ statistic, while the interobserver reliability was calculated using a Fleiss κ statistic.
Results: The average intraobserver agreements for the Neer, AO/OTA, and Mitsuzawa classifications were 0.57 (moderate), 0.67 (substantial), and 0.77 (substantial), respectively. The average interobserver agreements for the Neer, AO/OTA, and Mitsuzawa classifications were 0.49 (moderate), 0.56 (moderate), and 0.73 (substantial), respectively. The most common fracture type in each classification was an anterior dislocated fracture with a greater tuberosity fragment, which corresponded to A3a (57 cases) in the Mitsuzawa classification.
Conclusions: The Mitsuzawa classification of PHF incorporates different perspectives regarding glenohumeral compatibility, assessment before and after shoulder dislocation reduction, and the degree of displacement of the proximal stump of the humeral shaft. Compared with the Neer and AO/OTA classifications, our new classification system adopted a user-friendly flowchart format and provided satisfactory intra- and interobserver reliability.
Level Of Evidence: Level IV.
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http://dx.doi.org/10.1186/s13018-024-05423-2 | DOI Listing |
J Orthop Surg Res
January 2025
Department of Orthopaedic Surgery, Kobe City Medical Center General Hospital, 2-1-1 Minatojima-minamimachi, Chuo-ku, Kobe, 650-0047, Japan.
Background: Although the Neer and AO/OTA classifications have been widely accepted, observer reliability studies of these two classifications have questioned their reliability and reproducibility to date. We developed an entirely new classification, the Mitsuzawa classification, for dislocated and displaced proximal humeral fractures and tested all three classifications for their intra- and interobserver reliability.
Methods: Two experienced shoulder surgeons and two orthopedic residents independently evaluated the Xray (xR) values of 100 proximal humeral fractures (PHFs).
Cureus
November 2024
Pulmonology and Critical Care, Government Medical College, Srinagar, Srinagar, IND.
Proximal humerus fractures are prevalent in older adults, particularly women, primarily due to osteoporosis and increased fall risk. These fractures often result from low-energy falls in elderly patients, while in younger individuals, they are more likely to occur with high-energy trauma, which may involve additional injuries to soft tissue and neurovascular structures. Proper anatomical understanding, including key structures and blood supply, is crucial for effective management and to prevent complications.
View Article and Find Full Text PDFJ Am Acad Orthop Surg
February 2025
From the Department of Orthopedic Surgery, Division of Orthopedic Trauma, NYU Langone Orthopedic Hospital, New York, NY.
Cureus
April 2024
Orthopaedics, Jawaharlal Nehru Medical College, Datta Meghe Institute of Higher Education & Research, Wardha, IND.
BMC Musculoskelet Disord
September 2023
Hannover Humerus Registry (HHR), Traumastiftung gGmbH Carl-Neuberg-Str. 1, 30625, Hannover, Germany.
Background: The aim of this study was to investigate (1) whether fracture pattern and age are associated with local bone quality (LBQ), and (2) whether a scoring system based on these variables is able to predict LBQ in proximal humerus fractures (PHF).
Materials And Methods: A retrospective study was performed of all acute PHF at a Level 2 trauma center with plain radiographs and CT between June 2009 and March 2022. Local bone quality was measured by using the deltoid tuberosity index (DTI).
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