Cooperative Agreement U01FD007987
- This federal Project Grant award from the National Institute of Biomedical Imaging and Bioengineering (NIBIB), under the Discovery and Applied Research for Technological Innovations to Improve Human Health program (CFDA 93.286), provides $150,951 to the University of Texas at Austin (UT Austin) to develop a novel computational lung breathing model for robust lung function assessment. The goal is to leverage this biomechanical lung model to infer patient-specific lung tissue material properties...
- The National Heart Lung and Blood Institute awarded a $247,500 Project Grant to The General Hospital Corporation (doing business as Massachusetts General Hospital) to validate a CD206-targeted PET imaging probe for tracking pulmonary fibrosis progression in idiopathic pulmonary fibrosis (IPF) patients. IPF is a chronic, debilitating lung disease with limited treatment options and poor prognosis. The goal is to develop an innovative PET imaging agent that can specifically target CD206-positive...
- This Project Grant award from the National Science Foundation (NSF) under the Partnerships for Innovation - Research Partnerships (PFI-RP) program supports the development of a virtual human testing platform for inhaler innovation and drug delivery optimization. The $549,999 project, awarded on August 1, 2023 and running through July 31, 2026, aims to create an AI-assisted virtual platform that can accurately simulate airflow, aerosolized medication delivery, and drug translocation in both...
- This $171,858 Project Grant, awarded by the National Heart, Lung, and Blood Institute (CFDA 93.837 Cardiovascular Diseases Research), supports a study titled "Computed Tomography for Early Detection and Phenotyping of Pulmonary Hypertension Associated with Chronic Obstructive Pulmonary Disease with Implications for Treatment." The study aims to: Identify and validate quantitative CT imaging features for early detection of COPD-related pulmonary hypertension (COPD-PH). Apply advanced...
- This $131,783 federal Project Grant award from the National Heart Lung and Blood Institute (CFDA 93.837 Cardiovascular Diseases Research) to Brigham & Women's Hospital Inc., a subsidiary of Partners Healthcare System, will fund a study to develop and implement a protocol for biospecimen collections before and after bronchoscopic lung volume reduction (BLVR) procedures in COPD patients. The goal is to identify blood and bronchoalveolar lavage fluid biomarkers associated with COPD phenotypes...
- This $471,544 Project Grant awarded by the National Institute of Environmental Health Sciences (CFDA 93.879 - Medical Library Assistance) supports the development of novel technologies by Spiromatics, Inc. for the detection and monitoring of obstructive lung diseases such as COPD and asthma. Spiromatics is creating a portable, handheld spirometer with audiovisual coaching capabilities to enhance the assessment and diagnosis of abnormal lung function. The innovative solutions aim to detect an...
- This Project Grant award from the National Cancer Institute's (CFDA 93.394 - Cancer Detection and Diagnosis Research) will fund a research project titled "Innovative Scan Protocols with Combined Long Axial FOV PET and Spectral CT for Improved Quantification in Oncology". The $666,670 award, effective January 15, 2025, aims to develop advanced imaging protocols and processing techniques that utilize both positron emission tomography (PET) and spectral computed tomography (CT) to enhance...
- This federal Project Grant award of $123,000.00 from the National Heart, Lung, and Blood Institute (CFDA 93.837 - Cardiovascular Diseases Research) aims to investigate the role of the Hedgehog signaling pathway in regulating progenitor cell differentiation during lung development and its potential contribution to lung diseases like COPD and IPF. The project will analyze existing single-cell data from mouse and human lungs to: 1) decipher the temporal control of Hedgehog signaling in regulating...
- This Cooperative Agreement awarded by the Food and Drug Administration (FDA) under the FDA Research program (CFDA 93.103) provides $249,580.00 to support the Lundquist Institute for Biomedical Innovation at Harbor-UCLA Medical Center in conducting a series of studies to establish the analytic validity of non-calcified plaque volume (NCPV) measured by coronary CT angiography (CCTA) as a prognostic biomarker for coronary artery disease. The key objectives are to standardize the precision,...
- This Cooperative Agreement award from the National Heart, Lung, and Blood Institute (NHLBI), under the Cardiovascular Diseases Research program (CFDA 93.837), will develop new pulmonary magnetic resonance imaging (MRI) methods on a novel 0.55 Tesla scanner. The $659,644 project, running from September 2025 to June 2029, will focus on improving the spatial resolution and image contrast of structural lung proton MRI, as well as developing methodology for hyperpolarized xenon imaging at this...
A PROSPECTIVE STUDY TO SUPPORT VALIDATION OF LUNG DEPOSITION MODELS WITH NUCLEAR MEDICINE IMAGING METHODS - PROJECT SUMMARY IN THIS PROJECT WE PROPOSE TO DEVELOP AND EXECUTE PROTOCOLS FOR A NUCLEAR IMAGING DEPOSITION STUDY USING EITHER SINGLE-PHOTON EMISSION COMPUTED TOMOGRAPHY (SPECT) OR, PREFERABLY, POSITRON EMISSION TOMOGRAPHY (PET), WITH THE GOAL OF SUPPORTING VALIDATION OF IN-SILICO MODELS OF DEPOSITION. THESE PROTOCOLS, DEVELOPED IN COLLABORATION WITH THE FDA, WILL BE OPTIMIZED TO 1) COLLECT DATA WHICH MAY BE USED AS INPUT PARAMETERS FOR THE MODELS WHICH USE THIS DATA FOR VALIDATION PURPOSES AND 2) LEVERAGE RECENT ADVANCES IN SPECT AND PET TECHNOLOGY TO ACHIEVE IMAGES WITH SIGNIFICANTLY HIGHER SPATIAL AND TEMPORAL RESOLUTION THAN WAS PREVIOUSLY POSSIBLE. BUILDING ON APPROACHES DEVELOPED PRIMARILY BY RESEARCHERS FLEMING, MONTESANTOS, AND GREENBLATT, WE WILL DEVELOP METHODS TO DERIVE MORE ACCURATE ESTIMATIONS OF BRANCH-LEVEL DEPOSITION FROM THE RESULTING IMAGES BY 1) LEVERAGING OUR EXPERIENCE IN QUANTITATIVE CT SEGMENTATION OF LUNG STRUCTURE, 2) MAKING USE OF IMPROVEMENTS IN IMAGE RESOLUTION TO OPTIMIZE RADIOTRACER ACTIVITY LOCALIZATION WITHIN AIRWAYS AS SMALL AS THE 4TH GENERATION, 3) LOCALIZING RADIOTRACER ACTIVITY WITHIN ANATOMIC COMPARTMENTS OF THE LUNG AS SMALL AS THE SEGMENTAL LEVEL, AND 4) MORE ACCURATELY REFLECTING DISEASE-SPECIFIC VARIATIONS IN AIRWAY MORPHOLOGY WHICH VIOLATE KEY ASSUMPTIONS OF THE WORK OF FLEMING AND MONTESANTOS. THESE PROTOCOLS WILL BE DEVELOPED AND EXECUTED IN COLLABORATION WITH PERSONNEL FROM THE NUCLEAR MEDICINE AND RADIOLOGY AND PHARMACOLOGY FACULTY AT ERASMUS MEDICAL CENTER AS SUBAWARDEES. THESE RESEARCHERS WILL BE PRIMARILY RESPONSIBLE FOR DEVELOPING, VALIDATING, AND IMPLEMENTING A PROCESS TO PRODUCE A RADIOLABELED FORMULATION OF ONE ORALLY INHALED DRUG PRODUCT (OIDP) WHICH IS FIT-FOR-USE, AS WELL AS APPROPRIATE SPECT OR PET PROTOCOLS OPTIMIZED FOR THE NEEDS OF THE OVERALL PROJECT. HEALTHY VOLUNTEERS AND SUBJECTS WITH ASTHMA OR COPD WILL BE RECRUITED FROM A SINGLE CENTER LOCATED IN KONTICH, BELGIUM. BY RECRUITING SUBJECTS WITH ASTHMA AND COPD, WE HOPE TO DEVELOP METHODS WHICH CAN ACCOUNT FOR CLINICALLY SIGNIFICANT DIFFERENCES IN VENTILATION AND DEPOSITION WHICH ARE NOT ACCOUNTED FOR IN PREVIOUS WORK, SPECIFICALLY EMPHYSEMA AND GAS TRAPPING. THE RESULTING DATA, INCLUDING 1) STANDARDIZED PROTOCOLS AND PROCEDURES, 2) IMAGES ACQUIRED, 3) METHODS AND CODE, AND 4) RESULTS OF ANALYSIS WILL BE MADE AVAILABLE TO THE FDA TO DISSEMINATE PUBLICLY 18 MONTHS FOLLOWING COMPLETION OF THE STUDY, TO MEET THE OBJECTIVE OF PROVIDING DATA TO FACILITATE IN-SILICO MODEL VALIDATION.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $331.8k | 8/27/25 | ||
| Not listed | $0 | 7/28/25 | ||
| Not listed | $332.2k | 9/5/24 | ||
| Not listed | $0 | 10/25/23 | ||
| Not listed | $0 | 10/25/23 |