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Dive into the research topics where Falk Uhlemann is active.

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Featured researches published by Falk Uhlemann.


Applied Optics | 2009

Linear image reconstruction for a diffuse optical mammography system in a noncompressed geometry using scattering fluid

Tim Nielsen; Bernhard Brendel; Ronny Ziegler; Michiel van Beek; Falk Uhlemann; Claas Bontus; Thomas Koehler

Diffuse optical tomography (DOT) is a potential new imaging modality to detect or monitor breast lesions. Recently, Philips developed a new DOT system capable of transmission and fluorescence imaging, where the investigated breast is hanging freely into the measurement cup containing scattering fluid. We present a fast and robust image reconstruction algorithm that is used for the transmission measurements. The algorithm is based on the Rytov approximation. We show that this algorithm can be used over a wide range of tissue optical properties if the reconstruction is adapted to each patient. We use estimates of the breast shape and average tissue optical properties to initialize the reconstruction, which improves the image quality significantly. We demonstrate the capability of the measurement system and reconstruction to image breast lesions by clinical examples.


IEEE Transactions on Biomedical Engineering | 2008

Linear Image Reconstruction for a Diffuse Optical Mammography System in a Non-Compressed Geometry Using Scattering Fluid

Tim Nielsen; Bernhard Brendel; Ronny Ziegler; Falk Uhlemann; Claas Bontus; Thomas Koehler

Diffuse optical tomography (DOT) is a potential new imaging modality to detect or monitor breast lesions. Recently, Philips developed a new DOT system capable of transmission and fluorescence imaging, where the investigated breast is hanging freely into the measurement cup containing scattering fluid. We present a fast and robust image reconstruction algorithm that is used for the transmission measurements. The algorithm is based on the Rytov approximation. We show that this algorithm can be used over a wide range of tissue optical properties if the reconstruction is adapted to each patient. We use estimates of the breast shape and average tissue optical properties to initialize the reconstruction, which improves the image quality significantly. We demonstrate the capability of the measurement system and reconstruction to image breast lesions by clinical examples.


European Radiology | 2009

Diffuse optical tomography of the breast: preliminary findings of a new prototype and comparison with magnetic resonance imaging

Stephanie M. W. Y. van de Ven; Sjoerd G. Elias; Andrea J. Wiethoff; Marjolein van der Voort; Tim Nielsen; Bernhard Brendel; Claas Bontus; Falk Uhlemann; Rami Nachabe; Rik Harbers; Michiel van Beek; Leon Bakker; Martin B. van der Mark; Peter R. Luijten; Willem P. Th. M. Mali


Archive | 2012

Medical apparatus for displaying the catheter placement position

Thomas Erik Amthor; Falk Uhlemann; Sascha Krueger; Steffen Weiss; Ronaldus Frederik Johannes Holthuizen; Daniel Wirtz; Peter Kokenm


Archive | 2010

Retrospective calculation of radiation dose and improved therapy planning

Tim Nielsen; Peter Boernert; Falk Uhlemann; Johannes Adrianus Overweg


Archive | 2013

THERAPEUTIC APPARATUS COMPRISING A RADIOTHERAPY APPARATUS, A MECHANICAL POSITIONING SYSTEM, AND A MAGNETIC RESONANCE IMAGING SYSTEM

Falk Uhlemann


Archive | 2012

Patient localization system

Falk Uhlemann


Archive | 2011

DOSIMETER, THERAPEUTIC APPARATUS, AND COMPUTER PROGRAM PRODUCT FOR MEASURING RADIATION DOSAGE TO A SUBJECT DURING MAGNETIC RESONANCE IMAGING

Falk Uhlemann


Archive | 2013

DEDICATED USER INTERFACE FOR MR-GUIDED INTERSTITIAL INTERVENTIONS

Steffen Weiss; Thomas Erik Amthor; Sascha Krueger; Daniel Wirtz; Falk Uhlemann


Archive | 2016

RF SHIELDED EXAM ROOM OF A MAGNETIC RESONANCE IMAGING SYSTEM

Johannes Adrianus Overweg; Falk Uhlemann

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