Treatment Trials

3 Clinical Trials for Various Conditions

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RECRUITING
Augmented Reality For MRI-Guided Interventions
Description

The purpose of this study is to determine feasibility and safety of using an augmented reality system in patients undergoing MRI-Guided needle procedures.

COMPLETED
A Comparison of Methods for Assisting Needle Angle Selection During Image-guided Tissue Biopsy
Description

Background: - Currently, standard procedures for biopsies that are guided by computed tomography (CT) imaging involve CT scans and a computer program to plan and illustrate where the physician will place the needle to obtain the required cells or tissue. Inserting the biopsy needle at the planned angle is not an easy task, because the appropriate angle of insertion must be estimated based on prior experience. Researchers are studying experimental techniques that might provide better guidance about the right angle to insert the biopsy needle and thereby improve the collection of the appropriate biopsy cells or tissue. Objectives: - To evaluate the effectiveness of two biopsy needle guidance methods in CT-guided tissue biopsy. Eligibility: - Individuals at least 18 years of age who are scheduled to have CT-guided tissue biopsy. Design: * Participants will have a tissue biopsy guided by CT scans and either a laser system or a plastic block to illustrate the appropriate angle of insertion. The skin will be numbed with anesthetic to minimize discomfort during the procedure. * Before inserting the biopsy needle, the study physician will hold the needle in place so that a Food and Drug Administration-approved medical GPS (electromagnetic tracking) system can measure the needle angle as it enters the tissue. * After the needle angle data has been collected, researchers will proceed with the actual biopsy procedure as it would normally occur, using standard methods. * No additional treatment will be provided as part of this protocol.

UNKNOWN
Ultrasound-CT Fusion System for Interventional Radiology Procedures
Description

The objective of this research is to use the Clear Guide SCENERGY technology, an FDA approved Ultrasound-CT fusion imaging system, that allows the user to fuse CT images onto a real-time ultrasound that is being performed on the patient. This fusion system will be used to perform ultrasound guided needle placements for patients undergoing percutaneous CT guided needle-based intervention. This study will consist of 20 patients, 10 patients using the CGM SCENERGY US-CT system and 10 patients using guidance only. The primary goal of the study is to prove that the new imaging fusion system is comparable to using either CT or US guidance alone to guide needle placement.