Ryan, C., Stoltzfus, K. C., Horn, S., Chen, H., Louie, A. V., Lehrer, E. J., et al. (2022). Epidemiology of bone metastases. Bone, 158, 115783. https://doi.org/10.1016/j.bone.2020.115783
Van den Brande, R., Cornips, E. M., Peeters, M., Ost, P., Billiet, C., & Van de Kelft, E. (2022). Epidemiology of spinal metastases, metastatic epidural spinal cord compression and pathologic vertebral compression fractures in patients with solid tumors: A systematic review. Journal Bone Oncology, 35, 100446. https://doi.org/10.1016/j.jbo.2022.100446
Decroisette, C., Monnet, I., Berard, H., Quere, G., Le Caer, H., Bota, S., et al. (2011). Epidemiology and treatment costs of bone metastases from lung cancer: A French prospective, observational, multicenter study (GFPC 0601). Journal Thoracic Oncology Office Publication International Association Study Lung Cancer, 6, 576–582. https://doi.org/10.1097/JTO.0b013e318206a1e3
Barzilai, O., Laufer, I., Yamada, Y., Higginson, D. S., Schmitt, A. M., Lis, E., et al. (2017). Integrating evidence-based medicine for treatment of spinal metastases into a decision framework: Neurologic, oncologic, mechanicals stability, and systemic disease. Journal Clinical Oncology Office Journal American Society Clinical Oncology, 35, 2419–2427. https://doi.org/10.1200/JCO.2017.72.7362
Zamani-Siahkali, N., Mirshahvalad, S. A., Farbod, A., Divband, G., Pirich, C., Veit-Haibach, P., et al. (2024). SPECT/CT, PET/CT, and PET/MRI for response assessment of bone metastases. Seminars in Nuclear Medicine, S0001–2998(23), 00093–00094. https://doi.org/10.1053/j.semnuclmed.2023.11.005
Mirels, H. (1989). Metastatic disease in long bones. A proposed scoring system for diagnosing impending pathologic fractures. Clinical Orthopaedica, 249, 256–64.
Van der Linden, Y. M., Dijkstra, P. D. S., Kroon, H. M., Lok, J. J., Noordijk, E. M., Leer, J. W. H., et al. (2004). Comparative analysis of risk factors for pathological fracture with femoral metastases. Journal of Bone and Joint Surgery. British Volume, 86, 566–573.
Bilsky, M. H., Laufer, I., Fourney, D. R., Groff, M., Schmidt, M. H., Varga, P. P., et al. (2010). Reliability analysis of the epidural spinal cord compression scale. Journal of Neurosurgery. Spine, 13, 324–328. https://doi.org/10.3171/2010.3.SPINE09459
KD Harrington 1997 Orthopedic surgical management of skeletal complications of malignancy Cancer 80 1614 1627 https://doi.org/10.1002/(sici)1097-0142(19971015)80:8+<1614::aid-cncr12>3.3.co;2-0
Klekamp, J., & Samii, H. (1998). Surgical results for spinal metastases. Acta Neurochirurgica. Supplementum, 140, 957–967. https://doi.org/10.1007/s007010050199
Newman, W. C., Patel, A., Goldberg, J. L., & Bilsky, M. H. (2020). The importance of multidisciplinary care for spine metastases: Initial tumor management. Neuro-Oncology Practice, 7, i25-32. https://doi.org/10.1093/nop/npaa056
Article PubMed PubMed Central Google Scholar
Health Quality Ontario 2016Vertebral Augmentation involving vertebroplasty or kyphoplasty for cancer-related vertebral compression fractures: A systematic reviewOnt Health Technology Assessment Series 16 1 202
Garnon, J., Meylheuc, L., Cazzato, R. L., Dalili, D., Koch, G., Auloge, P., et al. (2019). Percutaneous extra-spinal cementoplasty in patients with cancer: A systematic review of procedural details and clinical outcomes. Diagnostic and Interventional Imaging, 100, 743–752. https://doi.org/10.1016/j.diii.2019.07.005
Mehta, T. I., Heiberger, C., Kazi, S., Brown, M., Weissman, S., Hong, K., et al. (2020). Effectiveness of radiofrequency ablation in the treatment of painful osseous metastases: A correlation meta-analysis with machine learning cluster identification. Journal Vascular Interventional Radiology JVIR, 31, 1753–1762. https://doi.org/10.1016/j.jvir.2020.08.002
Levy, J., David, E., Hopkins, T., Morris, J., Tran, N. D., Farid, H., et al. (2023). Radiofrequency ablation provides rapid and durable pain relief for the palliative treatment of lytic bone metastases independent of radiation therapy: Final results from the OsteoCool Tumor Ablation Post-Market Study. Cardiovascular and Interventional Radiology, 46, 600–609. https://doi.org/10.1007/s00270-023-03417-x
Article PubMed PubMed Central Google Scholar
Ferrer-Mileo, L., Luque Blanco, A. I., & González-Barboteo, J. (2018). Efficacy of cryoablation to control cancer pain: A systematic review. Pain Practice Office Journal World Institute Pain, 18, 1083–1098. https://doi.org/10.1111/papr.12707
Di Staso, M., Gravina, G. L., Zugaro, L., Bonfili, P., Gregori, L., Franzese, P., et al. (2015). Treatment of solitary painful osseous metastases with radiotherapy, cryoablation or combined therapy: Propensity matching analysis in 175 patients. PLoS ONE, 10, e0129021. https://doi.org/10.1371/journal.pone.0129021
Article PubMed PubMed Central Google Scholar
Facchini, G., Di Tullio, P., Battaglia, M., Bartalena, T., Tetta, C., Errani, C., et al. (2016). Palliative embolization for metastases of the spine. Europaea Journal Orthopaedica Surgery Traumatologica Orthopaedica Traumatologica, 26, 247–252. https://doi.org/10.1007/s00590-015-1726-y
Rossi, G., Mavrogenis, A. F., Rimondi, E., Braccaioli, L., Calabrò, T., & Ruggieri, P. (2011). Selective embolization with N-butyl cyanoacrylate for metastatic bone disease. Journal Vascular Interventional Radiology JVIR, 22, 462–470. https://doi.org/10.1016/j.jvir.2010.12.023
Deschamps, F., Tselikas, L., Yevich, S., Bonnet, B., Roux, C., Kobe, A., et al. (1990). Electrochemotherapy in radiotherapy-resistant epidural spinal cord compression in metastatic cancer patients. Europaea Journal Cancer Oxford England, 2023(186), 62–68. https://doi.org/10.1016/j.ejca.2023.03.012
Rich, S. E., Chow, R., Raman, S., Liang Zeng, K., Lutz, S., Lam, H., et al. (2018). Update of the systematic review of palliative radiation therapy fractionation for bone metastases. Radiotherapy Oncology Journal Europaea Society Therapy Radiology Oncology, 126, 547–557. https://doi.org/10.1016/j.radonc.2018.01.003
Lee, C. C., Soon, Y. Y., Cheo, T., Vellayappan, B., & Tey, J. (2022). Stereotactic body radiation therapy versus conventional external beam radiation therapy for painful bone metastases: A systematic review and meta-analysis of randomized trials. Critical Reviews in Oncology Hematology, 178, 103775. https://doi.org/10.1016/j.critrevonc.2022.103775
Mercier, C., Billiet, C., Joye, I., Meijnders, P., Nevens, D., Ost, P., et al. (2023). OC-0267 Long-term results of an SBRT dose-escalation trial for bone and lymph node metastases (NCT03486431). Radiotherapy and Oncology, 182, S203–S204. https://doi.org/10.1016/S0167-8140(23)08562-6
Ryu, S., Deshmukh, S., Timmerman, R. D., Movsas, B., Gerszten, P., Yin, F.-F., et al. (2023). Stereotactic radiosurgery vs conventional radiotherapy for localized vertebral metastases of the spine: Phase 3 results of NRG Oncology/RTOG 0631 Randomized Clinical Trial. JAMA Oncology, 9, 800–807. https://doi.org/10.1001/jamaoncol.2023.0356
Article PubMed PubMed Central Google Scholar
Guninski, R. S., Cuccia, F., Alongi, F., Andratschke, N., Belka, C., Bellut, D., et al. (2023). Efficacy and safety of SBRT for spine metastases: A systematic review and meta-analysis for preparation of an ESTRO practice guideline. Radiotherapy Oncology Journal Europaea Society Therapy Radiology Oncology, 190, 109969. https://doi.org/10.1016/j.radonc.2023.109969
Guckenberger, M., Andratschke, N., Belka, C., Bellut, D., Cuccia, F., Dahele, M., et al. (2023). ESTRO clinical practice guideline: Stereotactic body radiotherapy for spine metastases. Radiotherapy Oncology Journal Europaea Society Therapy Radiology Oncology, 190, 109966. https://doi.org/10.1016/j.radonc.2023.109966
Alcorn, S., Cortés, Á. A., Bradfield, L., Brennan, M., Dennis, K., Diaz, D. A., et al. (2024). External beam radiation therapy for palliation of symptomatic bone metastases: An ASTRO Clinical Practice Guideline. Practical Radiation Oncology, S1879–8500(24), 00099–00107. https://doi.org/10.1016/j.prro.2024.04.018
Sprave, T., Verma, V., Förster, R., Schlampp, I., Bruckner, T., Bostel, T., et al. (2018). Randomized phase II trial evaluating pain response in patients with spinal metastases following stereotactic body radiotherapy versus three-dimensional conformal radiotherapy. Radiotherapy and Oncology, 128, 274–282. https://doi.org/10.1016/j.radonc.2018.04.030
Nguyen, Q.-N., Chun, S. G., Chow, E., Komaki, R., Liao, Z., Zacharia, R., et al. (2019). Single-fraction stereotactic vs conventional multifraction radiotherapy for pain relief in patients with predominantly nonspine bone metastases: A randomized phase 2 trial. JAMA Oncology, 5, 872–878. https://doi.org/10.1001/jamaoncol.2019.0192
Article PubMed PubMed Central Google Scholar
Pielkenrood, B. J., van der Velden, J. M., van der Linden, Y. M., Bartels, M. M. T., Kasperts, N., Verhoeff, J. J. C., et al. (2021). Pain response after stereotactic body radiation therapy versus conventional radiation therapy in patients with bone metastases—A phase 2 randomized controlled trial within a prospective cohort. International Journal Radiation Oncology, 110, 358–367. https://doi.org/10.1016/j.ijrobp.2020.11.060
Sahgal, A., Myrehaug, S. D., Siva, S., Masucci, G. L., Maralani, P. J., Brundage, M., et al. (2021). Stereotactic body radiotherapy versus conventional external beam radiotherapy in patients with painful spinal metastases: An open-label, multicentre, randomised, controlled, phase 2/3 trial. The lancet Oncology, 22, 1023–1033. https://doi.org/10.1016/S1470-2045(21)00196-0
Mercier, C.(2023). Single fraction SBRT vs 3D-CRT for painful bone metastases: A singleblind phase 3 RCT (NCT03831243). ESTRO Annu Meet 2023.
Gillespie, E. F., Yang, J. C., Mathis, N. J., Marine, C. B., White, C., Zhang, Z., et al. (2024). Prophylactic radiation therapy versus standard of care for patients with high-risk asymptomatic bone metastases: A multicenter, randomized phase II clinical trial. Journal of Clinical Oncology, 42, 38–46. https://doi.org/10.1200/JCO.23.00753
Nadler, M., & Pauls, M. (2017). Shoulder orthoses for the prevention and reduction of hemiplegic shoulder pain and subluxation: Systematic review. Clinical Rehabilitation, 31, 444–453. https://doi.org/10.1177/0269215516648753
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