Supervised ANN-assisted modeling of seated body apparent mass under vertical whole body vibration
Author:
Publisher
Elsevier BV
Subject
Applied Mathematics,Electrical and Electronic Engineering,Condensed Matter Physics,Instrumentation
Reference37 articles.
1. Musculoskeletal symptoms and exposure to whole-body vibration among open-pit mine workers in the arctic;Burstrom;Int. J. Occ. Med. Environ. Health,2017
2. Apparent mass and head vibration transmission responses of seated body to three translational axis vibration;Mandapuram;Int. J. Ind. Ergon.,2012
3. Dynamic forces over the interface between a seated human body and a rigid seat during vertical whole-body vibration;Liu;J. Biomech.,2017
4. Effects of sitting postures on biodynamic response of seated occupants under vertical vibration;Wang;Int. J. Ind. Ergon.,2004
5. The apparent mass of the seated human exposed to single-axis and multi-axis whole-body vibration;Mansfield;J. Biomech.,2007
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