Structure-function relationship of natural tissues is crucial to design a device mimicking the structures present in human body. For this purpose, to provide guidelines to design an intervertebral disc (IVD) substitute, in this study the influence of the spatial location and structural components on the mechanical properties of porcine IVD was investigated. Local compressive stiffness (LCS) was measured on the overall disc, also constrained between the two adjacent vertebrae: the dependence on the lumbar position was evaluated. The compliance values in the anterior position (A) were higher than both in the central posterior (CP) and in the lateral-posterior (RP, LP) locations. The values of Young's Modulus (74.67±6.03 MPa) and compression break load (1.36×104±0.09×104N) of the disc were also evaluated by distributed compression test. The NP rheological behavior was typical of weak-gels, with elastic modulus G? always higher than viscous modulus G? all over the frequency range investigated (G? and G? respectively equal to 320 and 85 Pa at 1 Hz) and with the moduli trends were almost parallel to each other.

Spatial and structural dependence of mechanical properties of porcine intervertebral disc

Borzacchiello A;De Santis R;Ambrosio L;Nicolais L
2002

Abstract

Structure-function relationship of natural tissues is crucial to design a device mimicking the structures present in human body. For this purpose, to provide guidelines to design an intervertebral disc (IVD) substitute, in this study the influence of the spatial location and structural components on the mechanical properties of porcine IVD was investigated. Local compressive stiffness (LCS) was measured on the overall disc, also constrained between the two adjacent vertebrae: the dependence on the lumbar position was evaluated. The compliance values in the anterior position (A) were higher than both in the central posterior (CP) and in the lateral-posterior (RP, LP) locations. The values of Young's Modulus (74.67±6.03 MPa) and compression break load (1.36×104±0.09×104N) of the disc were also evaluated by distributed compression test. The NP rheological behavior was typical of weak-gels, with elastic modulus G? always higher than viscous modulus G? all over the frequency range investigated (G? and G? respectively equal to 320 and 85 Pa at 1 Hz) and with the moduli trends were almost parallel to each other.
2002
MATERIALI COMPOSITI E BIOMEDICI
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/44393
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