activity
20102020
most citedPitfalls in interventional X-ray organ dose assessment -- combined experimental and computational phantom study: application to prostatic artery embolization

11 citations · 29 across the 9 of their papers we have counts for

collaborators

10 papers

physics.med-ph2020

Simultaneous Estimation of X-ray Back-Scatter and Forward-Scatter using Multi-Task Learning

Philipp Roser, Xia Zhong, Annette Birkhold +7

Scattered radiation is a major concern impacting X-ray image-guided procedures in two ways. First, back-scatter significantly contributes to patient (skin) dose during complicated…

eess.IV20209 cited

Appearance Learning for Image-based Motion Estimation in Tomography

Alexander Preuhs, Michael Manhart, Philipp Roser +5

In tomographic imaging, anatomical structures are reconstructed by applying a pseudo-inverse forward model to acquired signals. Geometric information within this process is usually…

physics.med-ph202011 cited

Pitfalls in interventional X-ray organ dose assessment -- combined experimental and computational phantom study: application to prostatic artery embolization

Philipp Roser, Annette Birkhold, Xia Zhong +5

With X-ray radiation protection and dose management constantly gaining interest in interventional radiology, novel procedures often undergo prospective dose studies using anthropom…

physics.med-ph20201 cited

Effects of Tissue Material Properties on X-Ray Image, Scatter and Patient Dose Determined using Monte Carlo Simulations

Philipp Roser, Annette Birkhold, Xia Zhong +4

With increasing patient and staff X-ray radiation awareness, many efforts have been made to develop accurate patient dose estimation methods. To date, Monte Carlo (MC) simulations…

physics.med-ph20204 cited

Fully-automatic CT data preparation for interventional X-ray skin dose simulation

Philipp Roser, Annette Birkhold, Alexander Preuhs +6

Recently, deep learning (DL) found its way to interventional X-ray skin dose estimation. While its performance was found to be acceptable, even more accurate results could be achie…

physics.med-ph20201 cited

Tenfold your photons -- a physically-sound approach to filtering-based variance reduction of Monte-Carlo-simulated dose distributions

Philipp Roser, Annette Birkhold, Alexander Preuhs +3

X-ray dose constantly gains interest in the interventional suite. With dose being generally difficult to monitor reliably, fast computational methods are desirable. A major drawbac…