1. Santos E. A. R.(2022)Vibration analysis and human comfort assessment of steel‐concrete composite floors subjected to human dynamic loads. MSc Dissertation (In Portuguese. In development). Civil Engineering Postgraduate Programme (PGECIV). State University of Rio de Janeiro (UERJ). Rio de Janeiro/RJ Brazil 2022.
2. Campista F. F.(2019)Modelling of biodynamic systems for evaluation of the dynamic structural behaviour of steel‐concrete composite building floors subjected to human rhythmic activities. PhD Thesis (In Portuguese). Civil Engineering Postgraduate Programme (PGECIV). State University of Rio de Janeiro (UERJ). Rio de Janeiro/RJ Brazil.
3. Steel Design Guide Series AISC/CISC N011(2016)Vibrations of Steel-Framed Structural Systems Due to Human Activity Second Edition. Chicago USA.
4. SmithA. L.;Hicks S. J.;Devine P.J.(2009)Design of floors for vibrations. A new approach. SCI Publication. P354 Ascot.
5. Faisca R. G.(2003)Characterization of dynamic loads due to human activities. PhD Thesis (In Portuguese). Federal University of Rio de Janeiro (COPPE/UFRJ). Rio de Janeiro/RJ Brazil.