Brain Tumor Clinical Trial
Official title:
A Feasibility Analysis of an in Vivo CONVIVO Endomicroscopy During Brain Surgery.
Visualization of the tissue microstructure during neurosurgery using a non destructive handheld imaging technology producing a real time digital image ("optical biopsy") at cellular resolution is a novel method that holds great promise for optimization and improvement of the surgical treatment of brain pathologies, brain tumors in particular. The goal of this project is to investigate and assess the ease of use of the CONVIVO FDA cleared system in discriminating healthy and abnormal tissues during in vivo use on the brain during neurosurgery in 30 patients with a working diagnosis of intrinsic brain tumors.
During surgery for the removal of brain tumors, frozen-section biopsies are routinely taken intraoperatively to help the surgeon to distinguish abnormal tissue areas from normal tissue, and to assess and guide the extent of tumor or mass resection. Frozen-section analysis is time-consuming and freezing may produce architectural artifacts in the tissue sample that are difficult to interpret. As well, some tumors are heterogeneous in cell composition, so a tissue biopsy in one area may not represent the entire tumor mass. Biopsies acquired at the border regions or margins of the surgical resection are especially crucial, because it is at those regions where decisions based on tissue analysis guide the surgeon to further extend the resection where there is more tumor tissue remaining, or halt the resection for various reasons. In practice, the number of biopsies that can be taken during surgery is limited, because the acquisition procedure is time consuming. A technology which enables intraoperative real-time visualization of tissue at cellular resolution could provide a significant advantage in defining abnormal tissue margins. Such a technology could be used to identify abnormal tissue or at a minimum could screen for the most relevant areas from which formal biopsies should be acquired. It also could help to make the process of taking biopsies more efficient, so that the total number of biopsies needed can be reduced, thus increasing positive biopsy yield. This effort is a follow-up to a previous confocal endomicroscopy in vivo study conducted at the Barrow Neurological Institute in Phoenix. Based on this work, the upgraded version of the confocal laser endomicroscopy (CONVIVO) received 510k clearance from FDA. This study aims to evaluate the learning curve associated with the intraoperative imaging of tissue microstructure and microvasculature during neurosurgical procedures using fluorescein as a contrast agent for 30 patients undergoing surgery for a working diagnosis of brain tumor. The procedure involves a small microscope (about the size of a neurosurgical suction device) which is placed gently into contact with the tissue, providing significant in vivo magnification on a scale similar to that obtained by the pathology laboratory microscope. The focus of this study will be to examine the quality of images taken from the tumor core and tumor margin, and assess the time required for both neurosurgeon and pathologist to agree on a good image. A good image is clear, has well-defined structures, very few artifacts, and is comparable to a standard frozen section biopsy in its diagnostic potential. ;
Status | Clinical Trial | Phase | |
---|---|---|---|
Recruiting |
NCT05023434 -
A Study to Measure the Effect of Brain Stimulation on Hand Strength and Function in Patients With Brain Tumors
|
||
Completed |
NCT04474678 -
Quality Improvement Project - "My Logbook! - I Know my Way Around!"; ("Mein Logbuch - Ich Kenne Mich Aus!")
|
N/A | |
Completed |
NCT02768389 -
Feasibility Trial of the Modified Atkins Diet and Bevacizumab for Recurrent Glioblastoma
|
Early Phase 1 | |
Terminated |
NCT01902771 -
Dendritic Cell Vaccine Therapy With In Situ Maturation in Pediatric Brain Tumors
|
Phase 1 | |
Recruiting |
NCT03175224 -
APL-101 Study of Subjects With NSCLC With c-Met EXON 14 Skip Mutations and c-Met Dysregulation Advanced Solid Tumors
|
Phase 2 | |
Recruiting |
NCT03286335 -
Local Control, Quality of Life and Toxicities in Adults With Benign or Indolent Brain Tumors Undergoing Proton Radiation Therapy
|
N/A | |
Recruiting |
NCT05968053 -
Detection of Microplastics and Nanoplastics in Neurosurgery Patients (DT-MiNi)
|
||
Recruiting |
NCT05358340 -
Dual Perfusion Imaging for Characterizing Vascular Architecture of Brain Lesions
|
N/A | |
Recruiting |
NCT03276676 -
[18F]Fluciclovine and [18F]FLT PET/CT Assessment of Primary High-Grade Brain Tumors
|
Phase 2 | |
Completed |
NCT02851355 -
Follow-up Survey of Patients Who Were Treated for Medulloblastoma or Primitive Neuroectodermal Tumors of the Central Nervous in Norway
|
||
Completed |
NCT02713087 -
Vasopressor Effects in Anesthetized Patients
|
Phase 4 | |
Completed |
NCT02409121 -
A Novel Health Information Technology System (BMT Roadmap) for Pediatric BMT Patients and Caregivers
|
N/A | |
Completed |
NCT02558569 -
The Use of Fentanyl in General Anesthesia for Craniotomy With or Without 0.5% Levobupivacaine Scalp Block
|
Phase 4 | |
Withdrawn |
NCT02165995 -
Use of Navigated Transcranial Magnetic Stimulation (nTMS) in Generated Motor and Language Mapping to Evaluate Brain Recovery Following Surgery
|
N/A | |
Terminated |
NCT02674945 -
Understanding and Improving Quality of Life Through a Wireless Activity Tracker: Observational Phase
|
||
Completed |
NCT01171469 -
Vaccination With Dendritic Cells Loaded With Brain Tumor Stem Cells for Progressive Malignant Brain Tumor
|
Phase 1 | |
Withdrawn |
NCT01202539 -
Real-time Assessment of Frameless Intrafraction Motion
|
||
Terminated |
NCT01044966 -
A Study of Intraventricular Liposomal Encapsulated Ara-C (DepoCyt) in Patients With Recurrent Glioblastoma
|
Phase 1/Phase 2 | |
Completed |
NCT00760409 -
Differentiating Recurrent Brain Tumor Versus Radiation Injury Using MRI
|
N/A | |
Completed |
NCT00503204 -
Phase I : Cediranib in Combination With Lomustine Chemotherapy in Recurrent Malignant Brain Tumour
|
Phase 1 |