References
[1]. Azar, A. T. (2014). Neuro-fuzzy feature selection approach based on linguistic hedges for medical diagnosis. International Journal of Modelling, Identification and Control, 22(3), 195-206.
[2]. Glover, B. J. (2007). Understanding Flowers and Flowering. Oxford University Press.
[3]. Inbarani, H. H., Bagyamathi, M., & Azar, A. T. (2015). A novel hybrid feature selection method based on rough set and improved harmony search. Neural Computing and Applications, 26(8), 1859-1880.
[4]. Inbarani, H. H., Banu, P. N., & Andrews, S. (2012, April). Unsupervised hybrid PSO-quick reduct approach for feature reduction. In 2012 International Conference on Recent Trends in Information Technology (pp. 11-16). IEEE.
[5]. Long, N. C., Meesad, P., & Unger, H. (2015). A highly accurate firefly based algorithm for heart disease prediction. Expert Systems with Applications, 42(21), 8221-8231.
[6]. Macaš, M., Lhotská, L., Bakstein, E., Novák, D., Wild, J., Sieger, T., ... & Jech, R. (2012). Wrapper feature selection for small sample size data driven by complete error estimates. Computer Methods and Programs in Biomedicine, 108(1), 138-150.
[7]. Olson, D. L., & Delen, D. (2008). Advanced Data Mining Techniques. Springer Science Business Media.
[8]. Rodrigues, D., Yang, X. S., De Souza, A. N., & Papa, J. P. (2015). Binary flower pollination algorithm and its application to feature selection. In Recent Advances in Swarm Intelligence and Evolutionary Computation (pp. 85-100). Springer, Cham.
[9]. Vivekanandan, T., & Iyengar, N. C. S. N. (2017). Optimal feature selection using a modified differential evolution algorithm and its effectiveness for prediction of heart disease. Computers in Biology and Medicine, 90, 125-136.
[10]. Xue, B., Zhang, M., Browne, W. N., & Yao, X. (2016). A survey on evolutionary computation approaches to feature selection. IEEE Transactions on Evolutionary Computation, 20(4), 606-626.
[11]. Yang, X. S. (2012, September). Flower pollination algorithm for global optimization. In International Conference on Unconventional Computing and Natural Computation (pp. 240-249). Springer, Berlin, Heidelberg.