Radiabeam Systems, LLC received a $199,597 Project Grant award from the Department of Energy Office of Science on June 28, 2021 to support development of a tunable electronic brachytherapy system. The award was made under the Office of Science Financial Assistance Program (CFDA 81.049), which aims to deliver scientific discoveries and tools to transform understanding of nature and advance U.S. energy and economic security. The grant funded Radiabeam Systems to develop a brachytherapy device that...
This Project Grant award from the National Cancer Institute (NCI), under the Cancer Detection and Diagnosis Research program (CFDA 93.394), provides $2,007,264 to Voximetry Inc. for the development of the TORCH RECON software system. TORCH RECON aims to address limitations of conventional Single-Photon Emission Computed Tomography (SPECT) reconstruction methods by leveraging a combination of Monte Carlo simulation and deep learning techniques. The software is designed to improve the accuracy,...
This $536,954 Project Grant awarded by the National Institute of Biomedical Imaging and Bioengineering (NIBIB) under the "Discovery and Applied Research for Technological Innovations to Improve Human Health" (CFDA 93.286) program supports the development of an ultra-high spatial resolution photon-counting computed tomography (CT) system with multiple focal spots. The key objectives are to: Develop system models and reconstruction approaches for data acquisition using multiple focal...
This Project Grant award of $662,516 from the National Cancer Institute (CFDA 93.395 - Cancer Treatment Research) aims to evaluate how fractionated radiation affects the tumor microenvironment to influence passive drug delivery. The key research objectives are: Quantify how local radiation reshapes the tumor microenvironment to impact passive drug delivery in mouse and patient-derived cancer models, using in vivo imaging, multiplexed microscopy, and functional perturbations. Test whether...
The federal Project Grant award R44CA291419 was provided by the National Cancer Institute under the Cancer Treatment Research program (CFDA 93.395) to Radiopharmaceutical Imaging And Dosimetry, LLC, a for-profit limited liability company based in Baltimore, Maryland. The $1,003,173 award, with a project period from February 1, 2025 to January 31, 2027, aims to develop a prototype web/cloud-based quantitative SPECT reconstruction software system for clinical trials and dosimetry of...
The National Cancer Institute (NCI) awarded a $549,536 Project Grant under the Cancer Detection and Diagnosis Research program (CFDA 93.394) to the Trustees of Dartmouth College. The purpose of this 5-year project is to develop a 3D wearable near-infrared (NIR) spectral tomography system to enable early prediction of residual cancer burden in breast cancer patients undergoing neoadjuvant chemotherapy. The proposed innovations focus on transitioning the NIR spectral tomography technology from...
This $2,020,098 Project Grant award from the National Cancer Institute (CFDA 93.394 - Cancer Detection and Diagnosis Research) aims to develop an innovative X-ray dual-energy cone-beam microCT (DECB microCT) imaging system for intraoperative quantitative analysis of breast lumpectomy specimens. The objective is to enhance the contrast between breast cancer and normal fibroglandular tissue, enabling improved identification of positive surgical margins during breast-conserving surgery. Key project...
This Project Grant award from the National Cancer Institute (CFDA 93.395 - Cancer Treatment Research) provides $718,740 to Voxel Healthcare LLC for the development and validation of "ClickBrain RT", a system that combines automated pediatric brain structure segmentation with radiation treatment planning to optimize radiation dosage and improve long-term outcomes for pediatric brain tumor patients. The key products and services to be delivered under this 3-year project include: 1)...
This Cooperative Agreement, awarded by the National Cancer Institute (NCI) under the Cancer Cause and Prevention Research program (CFDA 93.393), will support the development and evaluation of the CORRECT workflow to facilitate communication between radiation oncologists and radiologists for cancer treatment planning and follow-up. The $248,194 award will fund a three-year project to determine the feasibility and acceptability of the CORRECT workflow at four National Cancer Institute Community...
This Project Grant award from the National Cancer Institute (CFDA 93.395 - Cancer Treatment Research) provides $399,829 to the University of Washington to develop a generalizable framework for guiding re-irradiation treatments. The key objectives are: 1) quantifying the evolution of normal tissue damage and recovery after radiation therapy (RT) using imaging biomarkers, and 2) exploring the feasibility of personalizing re-RT based on the observed normal tissue response from the first RT...
EVERYDAY USE OF OPTICAL CHERENKOV IMAGING IDENTIFIES ADVERSE EVENTS AND OPPORTUNITIES FOR IMPROVED RADIATION TREATMENT - ABSTRACT RADIATION THERAPY IS A SUPPLEMENTARY CURATIVE TREATMENT USED ADJUVANT WITH MOST SURGERY AND CHEMOTHERAPY, BEING DELIVERED TO NEARLY 1 OUT OF EVERY 4 PEOPLE IN THEIR LIFETIME. EXTERNAL BEAM TREATMENT IS COMMONLY FRACTIONATED (I.E. DELIVERED EVERY DAY FOR 25-40 DAYS). WHILE IT IS GENERALLY CONSIDERED SAFE AND EFFECTIVE, MANY IN THE FIELD BELIEVE IT COULD BE SAFER. MAJOR POTENTIAL SIDE EFFECTS CAN OCCUR IF NOT ADMINISTERED WITH HIGH DAILY ACCURACY, INCLUDING MILLIMETER LEVEL PATIENT ALIGNMENT AND CARE TO KEEP NORMAL TISSUE DOSES SUFFICIENTLY LOW. HOWEVER, THERE IS A PROVEN 1-5% INCIDENCE OF SECONDARY CANCER FROM THIS TREATMENT. THIS IS PARTICULARLY RELEVANT IN BREAST RADIOTHERAPY, WHERE EVEN A 1% DOSE TO THE CONTRALATERAL BREAST HAS BEEN PROVEN TO LEAD TO A HIGH PROBABILITY FOR A SECONDARY CANCER. IN REALITY, NO CLINIC ACTUALLY KNOWS THEIR TRUE INCIDENT RATE, BECAUSE NO SYSTEM EXISTS TO VISUALIZE EVERY TREATMENT AS PART OF ROUTINE CLINICAL PRACTICE. THE INVENTION OF THE BEAMSITETM SYSTEM, FOR TIME-GATED SINGLE PHOTON IMAGING OF CHERENKOV LIGHT EMISSIONS, PROVIDES THE FIRST DIRECT VIDEO IMAGING OF THE RADIATION DOSE DELIVERY AS IT HAPPENS. THE SYSTEM CAPTURES A DIRECT VISUALIZATION OF DELIVERY INCIDENTS IN REAL TIME, SO THAT INTUITIVE OBSERVATIONS CAN BE MADE BY THE THERAPISTS AND DAILY CORRECTIONS CAN BE MADE AS NEEDED. IN THIS APPLICATION, WE WILL CARRY OUT A MULTICENTER CLINICAL STUDY TO INVESTIGATE THE CAPABILITY OF CHERENKOV IMAGING TO DETECT EVENTS WHICH, HERETOFORE, WOULD GO UNDETECTED. WE WILL ALSO ADVANCE THE WORKFLOW OF THE SYSTEM WITH AUTOMATED INCIDENT DETECTION TOOLS TO MAKE BEAMSITETM EASILY USED BY THE THERAPY TEAM. FINALLY, THE SYSTEM WILL ALSO BE EXPANDED WITH DOSE ESTIMATION ALGORITHMS TO ESTIMATE LONG TERM SECONDARY CANCER RISK. THE PROJECT IS BASED UPON PREVIOUS NIH SUPPORTED HARDWARE THAT IS FDA 510(K) CLEARED FOR MARKETING AND WILL BE DEPLOYED WITH AUGMENTATION FROM THE TOOLS PROPOSED HERE. THE CURRENT PROPOSAL PROVIDES RESOURCES FOR THE GOALS OF: (I) QUANTIFYING ERROR RATES IN THE OVERALL TREATMENT OF PATIENTS IN MULTIPLE RADIOTHERAPY CLINICAL SETTINGS, AND (II) QUANTIFY THE UNPLANNED DOSE DELIVERED TO NON-TARGET TISSUES, INCLUDING CONTRALATERAL BREAST IN WHOLE BREAST RADIOTHERAPY. THE WORK INCLUDES SOFTWARE SUPPORT AND OPTICAL SCINTILLATOR DOSIMETRY DEVELOPMENT, TO BE LEVERAGED TOWARDS THESE GOALS. THE PROSPECTIVE HUMAN STUDY OF THE INCIDENT RATES WILL BE CARRIED OUT AS A MULTISITE EFFORT WITHIN THE DARTMOUTH-HITCHCOCK HEALTH MEDICAL CENTERS. THE DATA PRODUCED WITH THIS SYSTEM WILL DEMONSTRATE THAT VISUALIZATION OF TREATMENT CAN CHANGE THE WAY THAT DAILY RADIOTHERAPY IS TRACKED AND PROVIDE A TOOL FOR CONTINUOUS IMPROVEMENT FOR EACH PARTICIPATING CENTER, THEREBY REDUCING THE SECONDARY MORBIDITY OF OFF-TARGET RADIATION. FINANCIAL REIMBURSEMENT EXISTS AND AS THE FIELD SHIFTS TO QUALITY-BASED REIMBURSEMENT VERSUS QUANTITY-BASED, CHERENKOV IMAGING WILL BECOME A STAPLE OF ALL LEADING RADIOTHERAPY UNITS.