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DICOMAnon helps imaging teams anonymize, batch process, and automate DICOM workflows without writing custom scripts.
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Departments of Radiation Medicine and Neurosurgery, Zucker School of Medicine at Hofstra/Northwell
DICOMAnon helps imaging teams anonymize, batch process, and automate DICOM workflows without writing custom scripts.
The aims of this project were to (1) develop and apply a process to optimize 3D-printing processes specifically for tissue-equivalent small-field dosimetry phantoms and, (2) design and test a 3D-printed phantom for single-isocenter multi-target (SIMT) stereot...
Treatment planning system (TPS) beam modelling is identified as the largest cause of independent dosimetry audit failure. This study aims to develop and validate a universal beam model (UBM) specific to single-iso multi-target (SIMT) stereotactic radiosurgery...
To test the hypothesis that geometric metrics measured by the enhanced-couch Machine Performance Check (MPC) can serve as a surrogate to predict off-axis isocentricity failure.
To test the feasibility of connectome-informed single-isocenter multi-target SRS planning, incorporating an individual’s functional networks and major white-matter pathways as avoidance structures while maintaining target coverage and standard anatomic OAR co...
For single-isocenter multi-target (SIMT) stereotactic radiosurgery (SRS), benchmarking, auditing and inter-institutional standardization of dose delivery remains challenging as it requires specialized equipment and expertise. Electronic portal imaging devices...