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Bone Neoplasms clinical trials

View clinical trials related to Bone Neoplasms.

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NCT ID: NCT03188926 Completed - Surgery Clinical Trials

Surgical Treatment of Long Bone Metastases

MTC
Start date: January 4, 2016
Phase:
Study type: Observational [Patient Registry]

To provide treatment guidelines for patients with long bone metastatic disease based on observational study and to propose an algorithm to guide orthopedic surgeons in decision-making for these patient.

NCT ID: NCT03160274 Recruiting - Pheochromocytoma Clinical Trials

Genetic Analysis of Pheochromocytomas, Paragangliomas and Associated Conditions

Start date: October 19, 2005
Phase:
Study type: Observational [Patient Registry]

Pheochromocytomas and paragangliomas are neural crest-derived tumors of the nervous system that are often inherited and genetically heterogeneous. Genetic screening is recommended for patients and their relatives, and can guide clinical decisions. However, a mutation is not found in all cases. The aims of this proposal are to: 1) to map gene(s) involved in pheochromocytoma, and 2) identify genotype-phenotype correlations in patients with pheochromocytoma/paraganglioma of various genetic origins.

NCT ID: NCT03134261 Recruiting - Clinical trials for Prostate Cancer Metastatic to Bone

Diagnostic Imaging of Bone Metastases in Prostate Cancer Patients

DIMAB
Start date: April 2014
Phase: N/A
Study type: Interventional

An improved diagnosis of bone metastases in prostate cancer patients can have a significant impact on treatment strategy and probably survival as well. The primary purpose of the project is to determine the diagnostic accuracy of bone SPECT-CT, choline-PET-CT, PSMA-PET-CT, NaF-PET-CT and Whole-body MRI in the diagnosis of bone metastases in prostate cancer patients.

NCT ID: NCT03129672 Recruiting - Bone Neoplasm Clinical Trials

Distal Tibia Sarcoma Treatment Using Allograft Arthrodesis of the Ankle

Start date: May 20, 2014
Phase:
Study type: Observational

The study show the clinical results of limb salvage for primary malignant bone tumor of the distal tibia using block excision of the tumor and reconstruction with allograft arthrodesis with different methods of fixation (plates or intramedullary nail system)

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

NCT ID: NCT03093909 Recruiting - Clinical trials for Malignant Neoplasms of Female Genital Organs

Study of Aerosol Gemcitabine in Patients With Solid Tumors and Pulmonary Metastases

Start date: November 22, 2017
Phase: Phase 1
Study type: Interventional

Any time the words "you," "your," "I," or "me" appear, it is meant to apply to the potential participant. The goal of this clinical research study is to find the highest tolerable dose of gemcitabine that can be given by inhalation (breathing it as a mist) to patients with solid tumors that have spread to the lungs from other parts of the body. The safety and side effects of this drug will also be studied. This is an investigational study. Gemcitabine is FDA approved and commercially available for the treatment of pancreatic and lung cancer, and other solid tumors. Its administration by inhalation is investigational. The study doctor can explain how the study drug is designed to work. Up to 44 participants will be enrolled in this study. All will take part at MD Anderson.

NCT ID: NCT03072186 Completed - Neoplasms Clinical Trials

Proposal for Intraoperative Administration of Intravenous Indocyanine Green to Evaluate Position of the Optic Canal, Position of the Internal Carotid Arteries, Tumor Vascularization, and Vessel Encasement in Endoscopic Endonasal Cranial Base Surgery

ICG2
Start date: November 6, 2017
Phase: N/A
Study type: Interventional

This study is being done to demonstrate the feasibility of using a nasal endoscope to perform intraoperative angiography of surgical field, with the goals to evaluate anatomical landmarks and tumor characteristics during skull base surgery and publish a technical note.

NCT ID: NCT03002454 Terminated - Cancer of Bone Clinical Trials

Sodium Pertechnetate (99Tc) Injection Generator: 99mTc From Neutron-activation 99Mo v 99mTc From Fission 99Mo

Start date: August 2016
Phase: Phase 3
Study type: Interventional

A non-fission sourced, solvent generator produced 99mTc intravenous injection, as 99mTc -MDP, is to be used as a bone scan diagnostic radiopharmaceutical for assessment of bone pathology using the same oncologic indications as nuclear reactor sourced 99mTc, as 99mTc-MDP.

NCT ID: NCT02996734 Completed - Clinical trials for Giant Cell Tumor of Bone

Giant Cell Tumor of the Extremities Treated With Surgery and/or Medical Treatment

GCTLIMBS
Start date: April 2016
Phase: N/A
Study type: Observational

The purpose of this project is to present the outcomes of patients with giant cell tumor of bone (GCTB) who were treated with surgery and/or medical treatment in a single institution.

NCT ID: NCT02969564 Completed - Prostate Cancer Clinical Trials

18F-NaF-PET/MR vs 99mTc-MDP-SPECT/CT to Detect Bone Metastases in Prostate Cancer Patients.

Start date: May 2016
Phase:
Study type: Observational

The number of metastases in a patient with primary or recurrent prostate cancer has major prognostic implication. The purpose is to compare, in a pilot study, the diagnostic performance of 18F-NaF-PET/MR with respect to the results of the scintigraphy 99mTc-MDP-SPECT/CT (routine exam) for determining the presence or absence of bone lesions in prostate cancer patient, with up to five metastases (oligo-bone metastatic) based on scintigraphy 99mTc-MDP-SPECT/CT. The gold standard will be a combination of clinical follow-up, additional imaging and biopsy, as indicated by the multidisciplinary discussion at the tumor board. The findings from whole-body 99mTc-MDP-SPECT/CT, 18F-NaF-PET/MR, and the combination of the 2 modalities will be categorized by 2 teams of 2 readers as benign or probably benign, equivocal, or malignant or probably malignant and compared with the results of follow-up for JAFROC and ROC analysis.