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Bone Lesion clinical trials

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NCT ID: NCT05957926 Not yet recruiting - Bone Loss Clinical Trials

Hyaluronic Acid +Hydroxyapatite Vs Hydroxyapatite in Bone Regeneration

Start date: October 1, 2023
Phase: N/A
Study type: Interventional

Evaluation of the effect of hyaluronic acid with hydroxyapatite versus hydroxyapatite alone on bone regeneration following enucleation of mandibular odontogenic cyst.

NCT ID: NCT05738941 Not yet recruiting - Bone Lesion Clinical Trials

Interventional Radiology in Bony Lesions

Start date: March 1, 2025
Phase:
Study type: Observational

To explore the capability of the interventional radiology techniques in management of the painful bony lesions .

NCT ID: NCT04635137 Not yet recruiting - Bone Metastases Clinical Trials

Ablation and Cementoplasty for Painful Bone Lesions

Start date: June 2021
Phase: N/A
Study type: Interventional

The aim of this research study is to assess the effectiveness of combined ablation and cementoplasty in the treatment of spinal, pelvic, and extraspinal lesions causing pain resistant to conventional treatment at our centre. In particular, the investigator seek to verify the safety and efficacy for multiple primary tumor types and benign lesions as well as encompass multiple measurements of outcome, including visual analog scale (VAS) for pain, opioid and analgesic use, and overall performance scales, combined with cross-sectional imaging follow-up to assess tumor burden, to ascertain a comprehensive Canadian single-centre experience that has been lacking in previous studies.

NCT ID: NCT03106675 Not yet recruiting - Bone Metastases Clinical Trials

MR Imaging- Guided High Intensity Focused Ultrasound (HIFU) Therapy of Bone Metastases

Start date: May 15, 2017
Phase: N/A
Study type: Interventional

Bone metastasis give rise to major complications that lead to significant morbidity and impairment of life quality. The most common primary for bone metastasis is prostate, lung and breast carcinoma. These three have the highest cancer incidence in the USA with up to 85% prevalence of bone metastases at the time of death. Pain from these osseous lesions can be related to mechanical or chemical factors. Pressure effects on the periosteum or adjacent neural structures can cause local or radiating pain. Hemorrhage from local bone osteolysis by osteoclastic activity causes a local release of bradykinin, prostaglandins, histamine and substance P that can irritate the endosteal nerves as well as local nerves. The life expectancy of patients with osseous metastatic disease is variable but can be substantially longer for patients with multiple myeloma, breast or prostate cancer. Therefore, finding an effective local therapy that can improve patient quality of life and can be done at a single outpatient sitting would be beneficial. The current and emerging treatments for osseous metastases may be considered in several categories: radiotherapy, systemic chemotherapy (cytotoxic, hormonal and radionuclides), surgical stabilization and percutaneous tumor ablation. These treatments may be applied in isolation but also frequently in combination. MRI Guided High Intensity Focused Ultrasound (HIFU) is a completely non-invasive technology for thermal ablation. HIFU is capable of concentrating ultrasonic pressure waves to a specified region without any physical penetration of the body. The converging ultrasonic pressure wave is converted to thermal energy at the specific depth, resulting in local heating at the focus. Temperature elevation is proportional to the proton resonance frequency shift, therefore MR imaging provides accurate technique for target definition and energy deposition control. MRI guided Focused Ultrasound therapy is being performed in treatment of uterine leiomyomas (fibroids). Recently the method has gained both AMAR authorization and FDA approval, and CE approval for that indication. Clinical trials of HIFU in bone metastases have indicated that the method is safe and gives an effective reduction of patient pain. The short- and long-term effects on tumor volume and morphology do not seem to have been evaluated thus far. The primary objective of this trial is to evaluate effectiveness of MRI guided HIFU in the treatment of metastatic bone tumors