Objective: To design and fabricate an anatomically and conductively accurate phantom for electrical impedance studies of non-invasive bladder volume monitoring. Approach: A modular pelvic phantom was designed and fabricated, consisting of a mechanically and conductively stable boundary wall, a background medium, and bladder phantoms. The wall and bladders are made of conductive polyurethane. The background material is an ultrasound gel-based mixture, with conductivity matched to a weighted average of the pelvic cavity organs, bone, muscle and fat. The phantom boundary is developed using a computer tomography model of a male human pelvis. The bladder phantoms were designed to correlate with human bladder dimensions. Electrical impedance meas...
Abstract Background Continuous non-invasive urinary bladder volume measurement (cystovolumetry) woul...
Restoring bladder sensation in patients with bladder dysfunctions by performing urinary volume monit...
Objective. To develop dielectrically accurate, easy to mould solid tissue-mimicking materials (TMMs)...
Objective: To design and fabricate an anatomically and conductively accurate phantom for electrical ...
Bioimpedance measurements are currently used to monitor various biological processes and are potenti...
The occurrence of disturbance in the control of urine flow and voiding, which leads to involuntary ...
Phantom experiments are a crucial step for testing new hardware or imaging algorithms for electrical...
Some patient groups (for example, paraplegics) have an impaired bladder volume sensation, often asso...
Non-invasive estimation of bladder volume could help patients with impaired bladder volume sensation...
Non-invasive estimation of bladder volume could help patients with impaired bladder volume sensation...
Abstract Purpose The aim of this study was to document more appropriate electrode location of a four...
permits unrestricted use, distribution, and reproduction in any medium, provided the original work i...
Introduction: The electrical impedance spectroscopy technique can be used to measure the electrical ...
thesisTetrapolar impedance is a non-invasive method of measuring urine volume in the bladder. Change...
Objectives: Alteration of the bladder sense of fullness due to spinal cord injury or radical cystect...
Abstract Background Continuous non-invasive urinary bladder volume measurement (cystovolumetry) woul...
Restoring bladder sensation in patients with bladder dysfunctions by performing urinary volume monit...
Objective. To develop dielectrically accurate, easy to mould solid tissue-mimicking materials (TMMs)...
Objective: To design and fabricate an anatomically and conductively accurate phantom for electrical ...
Bioimpedance measurements are currently used to monitor various biological processes and are potenti...
The occurrence of disturbance in the control of urine flow and voiding, which leads to involuntary ...
Phantom experiments are a crucial step for testing new hardware or imaging algorithms for electrical...
Some patient groups (for example, paraplegics) have an impaired bladder volume sensation, often asso...
Non-invasive estimation of bladder volume could help patients with impaired bladder volume sensation...
Non-invasive estimation of bladder volume could help patients with impaired bladder volume sensation...
Abstract Purpose The aim of this study was to document more appropriate electrode location of a four...
permits unrestricted use, distribution, and reproduction in any medium, provided the original work i...
Introduction: The electrical impedance spectroscopy technique can be used to measure the electrical ...
thesisTetrapolar impedance is a non-invasive method of measuring urine volume in the bladder. Change...
Objectives: Alteration of the bladder sense of fullness due to spinal cord injury or radical cystect...
Abstract Background Continuous non-invasive urinary bladder volume measurement (cystovolumetry) woul...
Restoring bladder sensation in patients with bladder dysfunctions by performing urinary volume monit...
Objective. To develop dielectrically accurate, easy to mould solid tissue-mimicking materials (TMMs)...