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  2. ISO 10328:2016 specifies procedures for static and cyclic strength tests on lower-limb prostheses (see NOTE 2) which typically produce compound loadings by the application of a single test force. The compound loads in the test sample relate to the peak values of the components of loading which normally occur at different instants during the ...

  3. ISO 10328 standards were used to guide static testing of the sockets. The standard specifies loading conditions, both magnitude and location, that are representative of specific instances of a normal gait cycle, specifically early stance phase (heel strike) and late stance phase (toe-off).

  4. The ISO-10328 standard outlines structural testing procedures to estimate in vitro behavior of a lower limb prosthetic intended to replace a natural body part’s physical and cosmetic function. ISO-10328 uncovers material defects, mechanical issues, and design deficiencies that could make a product unsafe for temporary or long-term use and ...

  5. WARNING This International Standard is not suitable to serve as a guide for the selection of a specific lower limb prosthetic device/structure in the prescription of an individual lower limb prosthesis! Any disregard of this warning can result in a safety risk for amputees.

  6. Jan 1, 2022 · Overall, ISO 10328 appears as a viable starting point for defining a testing guideline, but a considerable number of details has to be agreed upon, starting from clear definitions of anatomical landmarks and socket axes, which are required to implement a representative and repeatable test method. Amputation. Lower limb. Transtibial. Transfemoral.

  7. Feb 1, 2020 · These socket systems were then tested following International Standards Organization (ISO) 10328. Ultimate strength (US) at failure, maximum deflection at failure, and failure mechanism were...

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