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Hemangioma clinical trials

View clinical trials related to Hemangioma.

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NCT ID: NCT02342275 Completed - Hemangioma Clinical Trials

Efficacy and Safety of Propranolol Versus Atenolol on the Proliferative Phase of Infantile Hemangioma

Start date: October 2013
Phase: Phase 3
Study type: Interventional

The purpose of this study is to compare the efficacy of orally administered propranolol versus atenolol in the treatment of potentially disfiguring or functionally threatening IHs.

NCT ID: NCT02334930 Completed - Hemangioma Clinical Trials

Evaluation of New Biomarkers Predictive of Efficacy Betablockers in PEComa and Vascular Pediatric Tumors

PEC-Hem
Start date: April 2015
Phase: N/A
Study type: Observational

PEComa is rare tumor affecting particularly patients with Tuberous Sclerosis. Biological similarities were seen between PEComa and infantile hemangioma. Propranolol is highly efficient to treat infantile hemangioma and we believe that this drug can also be useful for the treatment of PEComa. Purpose : to understand the mechanism of action of propranolol in PEComas and related pediatric vascular lesions and to select possible novel targets of betablockers in vascular tumors related to PEComas by using YAP oncogene activation as a molecular marker

NCT ID: NCT02332408 Recruiting - Clinical trials for Hemangioma of Vertebral Column

CyberKnife Based Hypofractionated Radiotherapy for Vertebral Hemangiomas

CKHRTVH
Start date: September 2014
Phase: Phase 3
Study type: Interventional

Clinical objective of the study is to compare the analgesic effect, toxicity and pathologic effect in the tumors of two radiotherapy schedules used for patients suffering from painful vertebral haemangiomas

NCT ID: NCT02314377 Completed - Clinical trials for Brain Arteriovenous Malformation

Bevacizumab Therapy for Brain Arteriovenous Malformation

Start date: June 2016
Phase: Phase 1
Study type: Interventional

Bevacizumab Therapy for brain arteriovenous malformation that is not amenable to surgical intervention.

NCT ID: NCT02204878 Recruiting - Laparotomy Surgery Clinical Trials

Role of Parecoxib Sodium for Postoperative Pain Management in Open Hepatectomy

Start date: July 2014
Phase: Phase 4
Study type: Interventional

To searching the role of parecoxib sodium for postoperative pain management in open hepatectomy

NCT ID: NCT02156700 Completed - Clinical trials for Hepatocellular Carcinoma

Quantitative Real-time Ultrasound Elastography for Characterisation of Liver Tumors

Start date: September 2013
Phase: N/A
Study type: Observational

Shear Wave Elastography (SWE™) is a quantitative elastography method for measuring tissue stiffness. The difference in stiffness between benign and malignant tumors has been demonstrated by other elastography methods (acoustic radiation force impulse imaging, transient elastography and/or magnetic resonance elastography). The investigators hypothesized that benign liver tumors are softer than malignant liver tumors measured by SWE™, allowing differentiation between the two by tumor stiffness expressed in kilopascal (kPa). In this study benign and malignant liver tumors will be evaluated in five groups: 1) hemangioma and 2) focal nodular hyperplasia (FNH) representing the most common benign liver tumors; 3) metastases and 4) cholangiocarcinoma (CCC), both presenting malignant tumors mostly appearing in otherwise healthy liver, and 5) hepatocellular carcinoma (HCC) mostly occurring in cirrhotic liver, which can potentially influence elastographic measurements therefore querying the appropriateness of comparison between tumors in healthy and cirrhotic liver. Enrolled patients will undergo transabdominal ultrasonography and SWE™ examination. The tumor stiffness will be measured five times for each tumor. Additionally, surrounding liver parenchyma stiffness will be measured. The nature of the liver tumor will be defined through a standard diagnostic workup according to current guidelines, including contrast enhanced multi-slice CT, MRI and/or cytology/histology, as applicable. In the final analysis the mean tumor stiffness and tumor-parenchyma ratio will be calculated for each group as well as for benign and malignant tumors separately, and cut-off values for the differentiation of various groups will be derived. The clinical value of the method will be appraised based on specificity, sensitivity, positive and negative predictive values, and AUC.

NCT ID: NCT02145884 Completed - Hemangioma Clinical Trials

Topical Timolol Gel for the Treatment of Infantile Hemangiomas

Start date: May 2014
Phase: Phase 2
Study type: Interventional

We plan to conduct a study, to see how safe and effective timolol maleate 0.5% gel-forming solution is for infantile hemangiomas (IH) and the response of hemangiomas to timolol maleate 0.5% . Our hypothesis is that timolol will inhibit and possibly reverse growth of appropriate infantile hemangiomas.

NCT ID: NCT02110069 Terminated - Tufted Angioma Clinical Trials

A Study to Compare Vincristine to Sirolimus for Treatment of High Risk Vascular Tumors

Start date: June 14, 2017
Phase: Phase 2
Study type: Interventional

In this research study we want to learn more about which treatment works better for patients diagnosed with a vascular tumor called Kaposiform Hemangioendothelioma (KHE) or other high risk vascular tumors such as Tufted Angioma (TA). In these tumors, the blood cells that help your blood clot called platelets become trapped in the tumor causing swelling, pain, and bruising. Vascular tumors can be life threatening. There are few medical treatments that will work to shrink the vascular tumor. Some doctors will use steroids and vincristine to try and shrink vascular tumors. In this research study, the study doctor will compare two different drugs to see which one will work better to help shrink your vascular tumor. One of the drugs is vincristine. Vincristine is approved by the Food and Drug Administration (FDA) to treat people with cancer. Vincristine is used to stop the abnormal cells from growing such as cells that make up blood vessels. The other drug to be used in this study is sirolimus. Sirolimus is currently approved by the Food and Drug Administration (FDA) to prevent transplanted organ rejection. Sirolimus is not approved by the FDA for treatment of vascular abnormalities and is considered experimental. Sirolimus belongs to a class of drugs call 'mTOR inhibitors'. mTOR (mammilian target of rapamycin) helps cells to grow and may also help blood vessels to grow in a more normal fashion. Sirolimus is currently being tested in patients with vascular tumors and cancer. In vascular tumors, we hope sirolimus will stop the blood vessel growth. Funding Source: FDA - OOPD (Office of Orphan Products Development)

NCT ID: NCT02098252 Recruiting - Clinical trials for Arteriovenous Malformations

Treatment of Brain AVMs (TOBAS) Study

TOBAS
Start date: May 2014
Phase: N/A
Study type: Interventional

The objectives of this study and registry are to offer the best management possible for patients with brain arteriovenous malformations (AVMs) (ruptured or unruptured) in terms of long-term outcomes, despite the presence of uncertainty. Management may include interventional therapy (with endovascular procedures, neurosurgery, or radiotherapy, alone or in combination) or conservative management. The trial has been designed to test a) whether medical management or interventional therapy will reduce the risk of death or debilitating stroke (due to hemorrhage or infarction) by an absolute magnitude of about 15% (over 10 years) for unruptured AVMs (from 30% to 15%); and, b) to test if endovascular treatment can improve the safety and efficacy of surgery or radiation therapy by at least 10% (80% to 90%). As for the nested trial on the role of embolization in the treatment of Brain AVMs by other means: the pre-surgical or pre-radiosurgery embolization of cerebral AVMs can decrease the number of treatment failures from 20% to 10%. In addition,embolization of cerebral AVMs can be accomplished with an acceptable risk, defined as permanent disabling neurological complications of 8%.

NCT ID: NCT02085278 Completed - Clinical trials for Brain Arteriovenous Malformation

Safety of Apollo Micro Catheter in Pediatric Patients

Start date: February 2014
Phase: N/A
Study type: Interventional

This is a clinical trial/study for patients diagnosed with brain arteriovenous malformation (AVM). An AVM is an abnormal connection between the arteries and veins of the brain. Patients considered for this trial are 21 years and younger with AVM suitable for embolization treatment (a procedure used to block the abnormal connection between the arteries and veins of the brain) with Onyx Liquid Embolic System (Onyx LES) or TruFill n-Butyl Cyanoacrylate (n-BCA) Liquid Embolic System (both are liquid substances used in the embolization procedure to block the abnormal connection).