Javascript must be enabled to continue!
Quantifying Whole Bladder Biomechanics Using the Novel Pentaplanar Reflected Image Macroscopy System
View through CrossRef
Abstract
Optimal bladder compliance is essential to urinary bladder storage and voiding functions. Calculated as the change in filling volume per change in pressure, bladder compliance is used clinically to characterize changes in bladder wall biomechanical properties that associate with lower urinary tract dysfunction. But because this method calculates compliance without regard to wall structure or wall volume, it gives little insight into the mechanical properties of the bladder wall during filling. Thus, we developed Pentaplanar Reflected Image Macroscopy (PRIM): a novel ex vivo imaging method to accurately calculate bladder wall stress and stretch in real time during bladder filling. The PRIM system simultaneously records intravesical pressure, infused volume, and an image of the bladder in 5 distinct visual planes. Wall thickness and volume were then measured and used to calculate stress and stretch during filling. As predicted, wall stress was nonlinear; only when intravesical pressure exceeded ~ 15 mmHg did bladder wall stress rapidly increase with respect to stretch. This method of calculating compliance as stress vs stretch also showed that the mechanical properties of the bladder wall remain similar in bladders of varying capacity. This study demonstrates how wall tension, stress and stretch can be measured, quantified, and used to accurately define bladder wall biomechanics in terms of actual material properties and not pressure/volume changes. This method is especially useful for determining how changes in bladder biomechanics are altered in pathologies where profound bladder wall remodeling occurs, such as diabetes and spinal cord injury.
Research Square Platform LLC
Title: Quantifying Whole Bladder Biomechanics Using the Novel Pentaplanar Reflected Image Macroscopy System
Description:
Abstract
Optimal bladder compliance is essential to urinary bladder storage and voiding functions.
Calculated as the change in filling volume per change in pressure, bladder compliance is used clinically to characterize changes in bladder wall biomechanical properties that associate with lower urinary tract dysfunction.
But because this method calculates compliance without regard to wall structure or wall volume, it gives little insight into the mechanical properties of the bladder wall during filling.
Thus, we developed Pentaplanar Reflected Image Macroscopy (PRIM): a novel ex vivo imaging method to accurately calculate bladder wall stress and stretch in real time during bladder filling.
The PRIM system simultaneously records intravesical pressure, infused volume, and an image of the bladder in 5 distinct visual planes.
Wall thickness and volume were then measured and used to calculate stress and stretch during filling.
As predicted, wall stress was nonlinear; only when intravesical pressure exceeded ~ 15 mmHg did bladder wall stress rapidly increase with respect to stretch.
This method of calculating compliance as stress vs stretch also showed that the mechanical properties of the bladder wall remain similar in bladders of varying capacity.
This study demonstrates how wall tension, stress and stretch can be measured, quantified, and used to accurately define bladder wall biomechanics in terms of actual material properties and not pressure/volume changes.
This method is especially useful for determining how changes in bladder biomechanics are altered in pathologies where profound bladder wall remodeling occurs, such as diabetes and spinal cord injury.
Related Results
The mast cell activator Compound 48/80 increases bladder compliance through matrix metalloprotease release
The mast cell activator Compound 48/80 increases bladder compliance through matrix metalloprotease release
Bladder wall stiffness and elasticity is essential to its storage and voiding functions. In addition to smooth muscle contractility, the integrity of the extracellular matrix plays...
Purines modulate urinary bladder arteriolar tone
Purines modulate urinary bladder arteriolar tone
Bladder dysfunction affects millions of people, but few effective treatments are available. In humans, changes in bladder function correlate to changes in blood flow. In rodent mod...
Urinary bladder wall thickness in type 2 diabetes mellitus patients
Urinary bladder wall thickness in type 2 diabetes mellitus patients
Introduction: Diabetes mellitus is an increasing health challenge with accompanying urological complications. Over 50% of men and women with diabetes have bladder dysfunction. Acco...
Abstract LB-122: Significant cytotoxic and immumomodulatory effects of continuous low dose intravesical gemcitabine in rodent bladder tumor models
Abstract LB-122: Significant cytotoxic and immumomodulatory effects of continuous low dose intravesical gemcitabine in rodent bladder tumor models
Abstract
Traditional gemcitabine bladder instillations (40 mg/mL) exhibit limited efficacy possibly due to micturition and saturable nucleotide uptake limiting tumor...
Effect of Electroacupuncture in Neurogenic Bladder: A Quasi-Experimental Study
Effect of Electroacupuncture in Neurogenic Bladder: A Quasi-Experimental Study
Neurogenic bladder (NB) is the dysfunction of either the urinary bladder, bladder neck or its sphincters due to diseases of the peripheral or central nervous system involved in the...
CAESAREAN SECTION AND BLADDER INJURY
CAESAREAN SECTION AND BLADDER INJURY
INTRODUCTION: Cesarean section is a live saving procedure but when performed without appropriate indications can add risk to both mother and baby. As per WHO report, at population ...
Transurethral incision of the bladder neck in recurrent bladder neck stenosis
Transurethral incision of the bladder neck in recurrent bladder neck stenosis
BACKGROUND: Transurethral incision of the bladder neck is one of the main methods of correction of bladder neck stenosis that occurred after treatment of patients with benign prost...
Use of statistical shape modeling to enhance the fluoroscopic evaluation of the bladder
Use of statistical shape modeling to enhance the fluoroscopic evaluation of the bladder
IntroductionVideo urodynamic studies (VUDS) use fluoroscopic imaging to visualize the bladder and multichannel urodynamics to assess its function. Qualitative assessment of bladder...

