DocumentCode :
678203
Title :
In vivo human assessment of bladder elasticity and compliance using Ultrasound Bladder Vibrometry (UBV) and comparison with urodynamic studies
Author :
Nenadic, Ivan Z. ; Mehrmohammadi, Mohammad ; Urban, Matthew ; Alizad, Azra ; Greenleaf, James ; Husmann, Douglas A. ; Mynderse, Lance A. ; Fatemi, Mehdi
Author_Institution :
Dept. of Physiol. & Biomed. Eng., Mayo Clinic Coll. of Med., Rochester, MN, USA
fYear :
2013
fDate :
21-25 July 2013
Firstpage :
92
Lastpage :
95
Abstract :
The bladder stiffens with age and various pathological processes. We have previously proposed the use of Ultrasound Bladder Vibrometry (UBV) to measure mechanical properties of the bladder wall. In UBV, ultrasound radiation force is focused at the bladder wall to excite impulsive anti-symmetric Lamb waves, and pulse-echo ultrasound is used to track tissue motion. Fourier-space analysis of tissue motion is used to calculate Lamb wave velocity dispersion, i.e. the change of Lamb wave velocity as a function of frequency. The Lamb wave velocity dispersion equation is fit to the dispersion data to estimate bladder viscoelastic parameters. Ex vivo formalin studies aimed at demonstrating the ability of UBV to detect bladder stiffening are demonstrated. UBV measurements of compliant and incompliant neurogenic patient bladders were compared with concomitant Urodynamic Cystometry Studies (UDS), which are the clinical gold standard for evaluation of bladder compliance. Results of UBV and UDS measurements in neurogenic patients were in good agreement. Healthy bladders were more compliant than the neurogenic bladders as their bladder elasticity does not increase significantly over the full range of bladder capacity. The results presented in this study demonstrate the potential of UBV serving as a surrogate to UDS studies.
Keywords :
Fourier analysis; biological organs; biological tissues; biomechanics; biomedical ultrasonics; elastic constants; elasticity; frequency estimation; surface acoustic waves; viscoelasticity; Fourier-space analysis; Lamb wave velocity dispersion equation; bladder capacity; bladder compliance; bladder elasticity; bladder stiffness; bladder viscoelastic parameter estimation; bladder wall; concomitant urodynamic cystometry; ex vivo formalin; impulsive antisymmetric Lamb waves; in vivo human assessment; incompliant neurogenic patient bladders; mechanical properties; pathological processes; pulse-echo ultrasound; tissue motion tracking; ultrasound bladder vibrometry; ultrasound radiation force; urodynamic studies; Bladder; Dispersion; Elasticity; Pressure measurement; Ultrasonic imaging; Viscosity; Volume measurement;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Ultrasonics Symposium (IUS), 2013 IEEE International
Conference_Location :
Prague
ISSN :
1948-5719
Print_ISBN :
978-1-4673-5684-8
Type :
conf
DOI :
10.1109/ULTSYM.2013.0024
Filename :
6725303
Link To Document :
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