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NATIONAL CANCER INSTITUTENIH · NATIONAL CANCER INSTITUTENIH

Core 2: Neuro-Imaging Core (NIC)

Ellingson, Benjamin M. (Contact)·UNIVERSITY OF CALIFORNIA LOS ANGELES, CA·2017–2027·ACTIVE
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INSTITUTION

UNIVERSITY OF CALIFORNIA LOS ANGELES, CA

PRINCIPAL INVESTIGATOR

Ellingson, Benjamin M. (Contact)

FUNDING

$9K

YEAR

2017

MOONBASE SCORE

Still being scored

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Abstract

PROJECT SUMMARY/ABSTRACT – Neuro-Imaging Core (NIC) The extremely poor prognosis and lack of effective treatments for glioblastoma (GBM) remains a significant public health issue. While traditional MRI techniques are valuable in determining GBM response to common anti-neoplastic therapies, novel treatments including immunotherapies, anti-angiogenic agents, or therapies that alter tumor metabolism may result in radiographic changes that are challenging to differentiate from non- responsive or growing tumor. Therefore, the primary goal of the Neuro-Imaging Core (NIC) will be to provide advanced MRI and PET imaging support with established reliability and consistency to SPORE project investigators for their respective projects. Specifically, the NIC will use quantitative µMRI and µPET for pre- clinical imaging (Aim 1) and state-of-the-art MR and PET imaging acquisition, advanced post-processing, and novel analysis tools for clinical imaging of patients in novel clinical trials (Aim 2). Additionally, we will provide professional expertise and resources for traditional and enhanced radiographic response assessment for the clinical trials for individual SPORE projects (Aim 3). Hence, this Core will add value to the overall SPORE by helping investigators to better understand the in situ metabolic, physiologic, functional, and traditional radiographic changes within the brain and tumor to address specific objectives of each of the UCLA Brain Cancer SPORE projects. Another main goal of the NIC is to understand the link between metabolic and/or physiologic imaging and tumor biology to reliably delineate treatment response versus recurrent tumor, which in turn will facilitate the direct translation of new MR-PET companion biomarkers/techniques to the clinic for the evaluation of treatment response in ongoing and new therapeutic clinical trials resulting from the SPORE projects and cores.

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