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Paul Damian PhD

MPH
Last researched 4 months ago
Medical Physics Medical Imaging Radiation Oncology

About

Paul Damian, Ph.D., is a researcher whose published work spans medical physics, biomedical engineering, and computational imaging. His published studies address topics including Monte Carlo modeling of electron beam therapy for conditions such as mycosis fungoides, diffusion-weighted and gadolinium-enhanced MRI for detecting active plaques in multiple sclerosis, radioprotective effects of zinc and selenium on spermatogenesis, and medical image processing methods. Additional work has examined CT-based assessment of breast cancer and real-time heart rate detection using electronic instrumentation. His research appears across journals including the Journal of Biomedical Physics and Engineering and Sensors.

With 12 peer-reviewed publications, his body of work reflects a focus on the intersection of radiation physics, imaging technology, and clinical applications. The breadth of topics, from structural analysis of NOD2 protein mutations implicated in inflammatory disorders to the design of spoiler systems for abutting electron fields, reflects sustained engagement with both therapeutic and diagnostic problems in medical physics and biomedical science.

Credentials

MPH DABT ERT

Publications

  • Structural localization of pathogenic mutations in the central nucleotide-binding domain (NBD) of nucleotide-binding oligomerization domain-2 (NOD2) protein and their inference in inflammatory disorders.
  • Detection of Active Plaques in Multiple Sclerosis using 3 and 12 Directional Diffusion-weighted Imaging: Comparison with Gadolinium-enhanced MR Imaging.
  • Radioprotective Effects of Zinc and Selenium on Mice Spermatogenesis.
  • Evaluation of Therapeutic Properties of a Low Energy Electron Beam Plus Spoiler for Local Treatment of Mycosis Fungoides: A Monte Carlo Study.
  • A Real-Time Heart Rate Signal Detection using an Electronic Stethoscope with Labview.
  • Medical Image Magnification Based on Original and Estimated Pixel Selection Models.
  • CT Role in the Assessment of Existence of Breast Cancerous Cells.
  • Design and Implementation of a Monte Carlo Framework for Assessment of Spoiler Applications in Abutting Electron Fields.
  • Comparisons of Hounsfield Unit Linearity between Images Reconstructed using an Adaptive Iterative Dose Reduction (AIDR) and a Filter Back-Projection (FBP) Techniques.
  • Wireless Body Area Network (WBAN)-Based Telemedicine for Emergency Care.

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