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Updated: Sep 12, 2026

Three-dimensional Biomimetic Technology: Novel Biorubber Creates Defined Micro- and Macro-scale Architectures in Collagen Hydrogels
Published on: February 12, 2016
Effect of liquid rubber coating on hydration, mechanical properties and strain measurement in biomechanical testing
Markus Greinwald1, Sarah Stoiber1, Peter Augat1,2
1Institute for Biomechanics, BG Unfallklinik Murnau, Murnau, Germany.
Objectives:
This study evaluates liquid-rubber-coating to prevent moisture loss in bone during long-term biomechanical testing and digital image correlation (DIC) measurements. Can liquid-rubber-coating preserve bone mechanical properties and enhance DIC measurements?
Methods:
Two experimental series used porcine femora in a 4-point-bending setup (n=6). Series 1 compared dehydration with and without rubber-coating during a 21-h drying period, focusing on bending stiffness and weight loss. Series 2 compared liquid-rubber-coating to acrylic-paint for DIC measurements across 50-2,000 µε principal strain.
Results:
After 21 h, weight loss of the uncoated samples was almost three times higher (7.9 ± 0.4 % vs. 2.9 ± 0.6 %, p<0.001). Bare samples increased bending stiffness by 16.3 ± 4.7 % (p=0.003) vs. 5.8 ± 4.0 % (p=0.155) with coating. DIC noise was 174 ± 121 µε with acrylic-coating and 158 ± 113 µε with liquid-rubber (p=0.700). Bland-Altman analysis showed no significant differences between the groups (p≥0.128).
Conclusions:
The liquid-rubber-coating substantially reduced moisture loss and maintained bone mechanical properties over 21 h, without significant alteration to mechanical properties. DIC performance showed no consistent coating-related differences, indicating the coating as a time-stable, water-impermeable alternative to acrylics. Notably, coated samples exhibited reduced odour. Future work should test liquid-rubber-coatings under physiological loading in human bone to improve DIC accuracy for finite element validation and digital twin precision.
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