Bone cements: review of their physiochemical and biochemical properties in percutaneous vertebroplasty.
Matthew J. Provenzano, Kieran Murphy, Lee H. Riley
Abstract
Matthew J. Provenzano, Kieran Murphy, Lee H. Riley
Abstract
Percutaneous vertebroplasty is an effective treatment for aggressive vertebral hemangiomas, osteoporotic vertebral compression fractures, spinal metastases, and myelomas. As percutaneous vertebroplasty is more commonly performed to treat various forms of back pain, new or modified cements are being used. This review examines the physiochemical and biomechanical properties of various bone cements and additives.
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Percutaneous vertebroplasty is an effective treatment for aggressive vertebral hemangiomas, osteoporotic vertebral compression fractures, spinal metastases, and myelomas. As percutaneous vertebroplasty is more commonly performed to treat various forms of back pain, new or modified cements are being used. This review examines the physiochemical and biomechanical properties of various bone cements and additives.
Key concepts: Percutaneous vertebroplasty, Medicine, Percutaneous, Radiology, Osteoporosis, Bone cement, Compression (physics), Vertebral body