Bibliography
■319
Part (V):
Chemometric and Mathematical Approach
for Modeling and Designing Mosquito
Repellents
Chapter 9:
A Multiplatform Chemometric Approach to Molecular and
Mathematical Modeling of Mosquito Repellents
1
Abushouk, A. I., Negida, A., Ahmed, H., (2016)
An updated review of Zika virus, Journal of Clinical Virology, 84:53-58.
2
Aguiar, M., Stollenwerk, N., Halstead, S. B., (2016)
The impact of the newly licensed dengue vaccine in endemic countries, PLOS Neglected Tropical Diseases, 16: e0005179.
3
Aungtikun, J., Soonwera, M., (2021)
Improved adulticidal activity against Aedes aegypti (L.) and Aedes albopictus (Skuse) from synergy between Cinnamomum spp. essential oils, Scientific
Reports 11:4685.
4
Balachandran, C., Anbalagan, S., Kandeepan, C., et al. (2021)
Molecular docking studies of natural alkaloids as acetylcholinesterase (AChE1) inhibitors in Aedes aegypti. Journal of Asia-Pacific Entomology In Press, DOI:
10.1016/j.aspen.2021.05.011.
5
Benelli, G., Pavela, R., Rakotosaona, R., et al., (2020)
Insecticidal and mosquito repellent efficacy of the essential oils from stem bark and wood of Hazomalania voyronii. Journal of Ethnopharmacology 248:112333.
6
Bohbot, J., Strickman, D., Zwiebel, L., (2014)
The future of insect repellent discovery and development, Outlooks on Pest Managements - August 2014.
7
Chiro, N., Gramatica, P., (2011)
Real external predictivity of QSAR models: How to evaluate it? Comparison of different validation criteria and proposal of using the concordance correlation
coefficient, Journal of Chemical Information and Modeling, 51:2320-2335.
8
Chiro, N., Gramatica, P., (2012)
Real external predictivity of QSAR models, Part 2. New intercomparable thresholds for different validation criteria and the need for scatter plot inspection,
Journal of Chemical Information and Modeling 52:2044-2058.
9
Costa, A. A., Naspi, C. V., Lucia, A., Masuh, H. M., (2017)
Repellent and larvicidal activity of the essential oil from Eucalyptus nitens against Aedes aegypti and Aedes albopictus (Diptera: Culicidae), Journal of Medical
Entomology, 54:670-676.
10
Das, N. G., Dhiman, S., Talukdar, P. K., Rabha, B., Goswami, D., Veer, V., (2015)
Synergistic mosquito-repellent activity of Curcuma longa, Pogostemon heyneanus and Zanthoxylum limonella essential oils, Journal of Infection and Public
Health, 8:323-328.
11
Datoo, M. S., Natama, M. H., Somé, A., (2021)
Efficacy of a low-dose candidate malaria vaccine, R21 in adjuvant Matrix-M, with seasonal administration to children in Burkina Faso: a randomised controlled
trial, The Lancet, 397:1809-1818.
12
de Oliveira, A. A., França, L. P., Ramos, A.S. de, et al., (2021)
Larvicidal, adulticidal and repellent activities against Aedes aegypti L. of two commonly used spices, Origanum vulgare L. and Thymus vulgaris L. South
African Journal of Botany, 140:17-24.
13
De, P., Aher, R. B., Roy, K., (2018)
Chemometric modeling of larvicidal activity of plant derived compounds against zika virus vector Aedes aegypti: application of ETA indices, RSC Advances,
8:4662-4670, development. Outlooks on Pest Management 25:265-270.
14
Dhimal, M., Ahrens, B., Kuch, U., (2015)
Climate change and spatiotemporal distributions of vector borne diseases in Nepal – A systematic synthesis of literature, Plos One 10:e0129869.