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Updated: Apr 6, 2026

Imaging Cleared Intact Biological Systems at a Cellular Level by 3DISCO
Published on: July 7, 2014
Community challenge towards consensus on characterization of biological tissue: C4Bio's first findings
Nele Famaey1, Heleen Fehervary2, Yoann Lafon3
1FIBEr Core Facility for Biomechanical Experimentation, KU Leuven, Celestijnenlaan 300, Heverlee, 3001, Belgium; Soft Tissue Biomechanics Group, Department of Mechanical Engineering, KU Leuven, Celestijnenlaan 300, Heverlee, 3001, Belgium.
Abstract:
This study investigates methodological variability across various expert laboratories worldwide, with regards to characterizing the mechanical properties of biological tissues. Two testing rounds were conducted on the specific use case of uniaxial tensile testing of porcine aorta. In the first round, 24 labs were invited to apply their established methods to assess inter-laboratory variability. This revealed significant methodological diversity and associated variability in the stress-stretch results, underscoring the necessity for a standardized approach. In the second round, a consensus protocol was collaboratively developed and adopted by 19 labs in an attempt to minimize variability. This involved standardized sample preparation and uniformity in testing protocol, including the use of a common cutting and thickness measurement tool. Despite protocol harmonization, significant variability persisted across labs, which could not be solely attributed to inherent biological differences in tissue samples. These results illustrate the challenges in unifying testing methods across different research settings, underlining the necessity for further refinement of testing practices. Enhancing consistency in biomechanical experiments is pivotal when comparing results across studies, as well as when using the resulting material properties for in silico simulations in medical research.
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