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Review Article| Volume 54, ISSUE 1, P101-108, January 2023

Management of Scapular Tumors

Published:October 25, 2022DOI:https://doi.org/10.1016/j.ocl.2022.08.009

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      References

        • Miniato M.A.
        • Mudreac A.
        • Borger J.
        Anatomy, Thorax, Scapula.
        in: StatPearls. Treasure Island, FL2022
        • Cowan P.T.
        • Mudreac A.
        • Varacallo M.
        Anatomy, Back, Scapula.
        in: StatPearls. Treasure ,Island, FL2022
        • Liston R.
        Ossified aneurysmal tumor of the subscapular artery.
        Eduil Med J. 1820; 16: 66-70
        • De Nancrede C.B.I.
        End results after total excision of the scapula for sarcoma: with statistical tables.
        Ann Surg. 1909; 50: 1-22
        • Malawer M.M.
        Tumors of the shoulder girdle. Technique of resection and description of a surgical classification.
        Orthop Clin North Am. 1991; 22: 7-35
        • Linberg B.E.
        Interscapulo-thoracic resection for malignant tumors of the shoulder joint region.
        Clin Orthop Relat Res. 1928; 1999: 3-7
        • Marcove R.C.
        • Lewis M.M.
        • Huvos A.G.
        En bloc upper humeral interscapulo-thoracic resection. The Tikhoff-Linberg procedure.
        Clin Orthop Relat Res. 1977; 124: 219-228
        • Bickels J.
        • Wittig J.C.
        • Kollender Y.
        • et al.
        Limb-sparing resections of the shoulder girdle.
        J Am Coll Surg. 2002; 194: 422-435
        • O'Connor M.I.
        • Sim F.H.
        • Chao E.Y.
        Limb salvage for neoplasms of the shoulder girdle. Intermediate reconstructive and functional results.
        J Bone Joint Surg Am. 1996; 78: 1872-1888
        • Kaiser C.L.
        • Yeung C.M.
        • Raskin K.
        • et al.
        Tumors of the scapula: a retrospective analysis identifying predictors of malignancy.
        Surg Oncol. 2020; 32: 18-22
        • Mankin H.J.
        • Mankin C.J.
        • Simon M.A.
        The hazards of the biopsy, revisited. Members of the Musculoskeletal Tumor Society.
        J Bone Joint Surg Am. 1996; 78: 656-663
        • Johnson J.D.
        • Rainer W.G.
        • Rose P.S.
        • et al.
        Utility of bone scintigraphy and PET-CT in the surgical staging of skeletal chondrosarcoma.
        Anticancer Res. 2020; 40: 5735-5738
        • Gulia A.
        • Kurisunkal V.
        • Puri A.
        • et al.
        Is skeletal imaging essential in the staging workup for conventional chondrosarcoma?.
        Clin Orthop Relat Res. 2020; 478: 2480-2484
        • Cesari M.
        • Righi A.
        • Colangeli M.
        • et al.
        Bone marrow biopsy in the initial staging of Ewing sarcoma: experience from a single institution.
        Pediatr Blood Cancer. 2019; 66e27653
        • Kasalak O.
        • Glaudemans A.
        • Overbosch J.
        • et al.
        Can FDG-PET/CT replace blind bone marrow biopsy of the posterior iliac crest in Ewing sarcoma?.
        Skeletal Radiol. 2018; 47: 363-367
        • Leavey P.J.
        • Laack N.N.
        • Krailo M.D.
        • et al.
        Phase III trial adding vincristine-topotecan-cyclophosphamide to the initial treatment of patients with nonmetastatic Ewing sarcoma: a Children's Oncology Group report.
        J Clin Oncol. 2021; 39: 4029-4038
        • Womer R.B.
        • West D.C.
        • Krailo M.D.
        • et al.
        Randomized controlled trial of interval-compressed chemotherapy for the treatment of localized Ewing sarcoma: a report from the Children's Oncology Group.
        J Clin Oncol. 2012; 30: 4148-4154
        • Strauss S.J.
        • Frezza A.M.
        • Abecassis N.
        • et al.
        Bone sarcomas: ESMO-EURACAN-GENTURIS-ERN PaedCan Clinical Practice Guideline for diagnosis, treatment and follow-up.
        Ann Oncol. 2021; 32: 1520-1536
        • Gronchi A.
        • Miah A.B.
        • Dei Tos A.P.
        • et al.
        Soft tissue and visceral sarcomas: ESMO-EURACAN-GENTURIS Clinical Practice Guidelines for diagnosis, treatment and follow-up.
        Ann Oncol. 2021; 32: 1348-1365
        • Pervaiz N.
        • Colterjohn N.
        • Farrokhyar F.
        • et al.
        A systematic meta-analysis of randomized controlled trials of adjuvant chemotherapy for localized resectable soft-tissue sarcoma.
        Cancer. 2008; 113: 573-581
        • Enneking W.
        • Dunham W.
        • Gebhardt M.
        • et al.
        A system for the classification of skeletal resections.
        Chir Organi Mov. 1990; 75: 217-240
        • Elhassan B.T.
        • Wagner E.R.
        • Kany J.
        Latissimus dorsi transfer for irreparable subscapularis tear.
        J Shoulder Elbow Surg. 2020; 29: 2128-2134
        • Elhassan B.T.
        • Sanchez-Sotelo J.
        • Wagner E.R.
        Outcome of arthroscopically assisted lower trapezius transfer to reconstruct massive irreparable posterior-superior rotator cuff tears.
        J Shoulder Elbow Surg. 2020; 29: 2135-2142
        • Schwab J.H.
        • Athanasian E.A.
        • Morris C.D.
        • et al.
        Function correlates with deltoid preservation in patients having scapular replacement.
        Clin Orthop Relat Res. 2006; 452: 225-230
        • Damron T.A.
        • Rock M.G.
        • O'Connor M.I.
        • et al.
        Functional laboratory assessment after oncologic shoulder joint resections.
        Clin Orthop Relat Res. 1998; 348: 124-134
        • Griffin A.M.
        • Shaheen M.
        • Bell R.S.
        • et al.
        Oncologic and functional outcome of scapular chondrosarcoma.
        Ann Surg Oncol. 2008; 15: 2250-2256
        • Houdek M.T.
        • Bukowski B.R.
        • Athey A.G.
        • et al.
        Comparison of reconstructive techniques following oncologic intraarticular resection of proximal humerus.
        J Surg Oncol. 2021; 123: 133-140
        • Wellings E.P.
        • Mallett K.E.
        • Parkes C.W.
        • et al.
        Impact of tumour stage on the surgical outcomes of scapular chondrosarcoma.
        Int Orthop. 2022; 46: 1175-1180
        • Pritsch T.
        • Bickels J.
        • Wu C.C.
        • et al.
        Is scapular endoprosthesis functionally superior to humeral suspension?.
        Clin Orthop Relat Res. 2007; 456: 188-195
        • Schoch B.
        • Shives T.
        • Elhassan B.
        Subtotal scapulectomy with scapulothoracic fusion and local tendon transfer for management of chondrosarcoma.
        J Am Acad Orthop Surg. 2016; 24: 405-409
        • Scorianz M.
        • Houdek M.T.
        • Sherman C.E.
        • et al.
        Survival, tumor recurrence, and function following shoulder girdle limb salvage at 24 to 35 years of follow-up.
        Orthopedics. 2019; 42: e514-e520
        • Braig Z.V.
        • Tagliero A.J.
        • Rose P.S.
        • et al.
        Humeral stress shielding following cemented endoprosthetic reconstruction: an under-reported complication?.
        J Surg Oncol. 2021; 123: 505-509
        • Grossi S.
        • D'Arienzo A.
        • Sacchetti F.
        • et al.
        One-step reconstruction with custom-made 3d-printed scapular prosthesis after partial or total scapulectomy.
        Surg Technol Int. 2020; 36: 341-346
        • Savvidou O.D.
        • Zampeli F.
        • Georgopoulos G.
        • et al.
        Total scapulectomy and shoulder reconstruction using a scapular prosthesis and constrained reverse shoulder arthroplasty.
        Orthopedics. 2018; 41: e888-e893
        • Beltrami G.
        • Ristori G.
        • Scoccianti G.
        • et al.
        Latissimus dorsi rotational flap combined with a custom-made scapular prosthesis after oncological surgical resection: a report of two patients.
        BMC Cancer. 2018; 18: 1003
        • Matsumoto J.S.
        • Morris J.M.
        • Rose P.S.
        3-dimensional printed anatomic models as planning aids in complex oncology surgery.
        JAMA Oncol. 2016; 2: 1121-1122
        • England P.
        • Hong Z.
        • Rhea L.
        • et al.
        Does advanced imaging have a role in detecting local recurrence of soft-tissue sarcoma?.
        Clin Orthop Relat Res. 2020; 478: 2812-2820
        • Cipriano C.
        • Griffin A.M.
        • Ferguson P.C.
        • et al.
        Developing an evidence-based follow-up schedule for bone sarcomas based on local recurrence and metastatic progression.
        Clin Orthop Relat Res. 2017; 475: 830-838
        • Pant R.
        • Yasko A.W.
        • Lewis V.O.
        • et al.
        Chondrosarcoma of the scapula: long-term oncologic outcome.
        Cancer. 2005; 104: 149-158
        • Nota S.P.
        • Russchen M.J.
        • Raskin K.A.
        • et al.
        Functional and oncological outcome after surgical resection of the scapula and clavicle for primary chondrosarcoma.
        Musculoskelet Surg. 2017; 101: 67-73
        • Schneiderbauer M.M.
        • Blanchard C.
        • Gullerud R.
        • et al.
        Scapular chondrosarcomas have high rates of local recurrence and metastasis.
        Clin Orthop Relat Res. 2004; 426: 232-238