Cardiovascular disease has been decimating humanity for decades. In vivo examination of blood vessels is of great help in the development of numerical models and simulations that can help physicians significantly improve sufferers’ quality of life. For such models, the different mechanical characteristics of the vessels are the input data. Several such mechanical properties of the vessels, such as modulus of elasticity and tensile strength, are determined by a tensile test. In the course of our research, an experimental device was developed and tested which is suitable for biaxial tensile tests of blood vessels, which we present through the examination of chicken blood vessels.
Keywords
- biaxial tensile testing
- mechanical properties
- experimental device
Comparative Analysis of Native and Cross-Platform iOS Application Development Safety Issues Concerning Installation of Welding Robots Development of an Active Aerodynamic System for a Racing Motorcycle Educational Materials and Didactic Tools in Engineering Training Practices Analyses of River Oil-Spills and Actual Solving Methods Development of a Complex Treatment Process for Recycling Household Laundry Water Optical Inspection of CPVC Fitting Elbows and Fault Diagnosis of the Production Process Method for Efficient Regeneration of Solvent Mixture: Extractive Heterogeneous-Azeotropic Distillation Control of a Permanent Magnet Synchronous Motor in Simulink Investigation of the Force Vectors Acting on the Potato in the Clamping Finger Type Dosing System of a Potato Planter Six DOF Robotic Arm Prototype Modelling By Matlab Design of a Measuring System Suitable for Measuring the Electromagnetic and Dynamic Characteristics of Electric Motors MP-9S Industrial Manipulator Handling and Scrapping Tasks in Industrial Environments The Developement of a New Shoulder Joint Prothesis System Development of a Mechatronic System for Demonstration Purposes Analysis of the Treatment of Synthetic Bathing Waters and Their Effects on Seedlings A Comparison between a Classical and a Modified Root Fillet Predictor-Corrector Interior-Point Algorithm for the General Linear Complementarity Problem Curvature Measurement of Thin Plates with the Help of Digital Image Processing Mechanical Examination of Chicken Vessel with Custom-Built Experimental Equipment Implementation of the Full-Newton Step Algorithm for Weighted Linear Complementarity Problems