GET THE APP

Poultry, Fisheries & Wildlife Sciences

Poultry, Fisheries & Wildlife Sciences
Open Access

ISSN: 2375-446X

+44-20-4587-4809

Poultry, Fisheries & Wildlife Sciences : Citations & Metrics Report

Articles published in Poultry, Fisheries & Wildlife Sciences have been cited by esteemed scholars and scientists all around the world. Poultry, Fisheries & Wildlife Sciences has got h-index 16, which means every article in Poultry, Fisheries & Wildlife Sciences has got 16 average citations.

Following are the list of articles that have cited the articles published in Poultry, Fisheries & Wildlife Sciences.

  2021 2020 2019 2018

Year wise published articles

63 9 3 17

Year wise citations received

155 136 109 96
Journal total citations count 858
Journal impact factor 3.6
Journal 5 years impact factor 6.11
Journal cite score 5.68
Journal h-index 16
Journal h-index since 2018 14
Important citations (440)

Fernández i, gavaia p, darias mj, gisbert e. fat-soluble vitamins in fish: a transcriptional tissue-specific crosstalk that remains to be unveiled and characterized. inemerging issues in fish larvae research 2018;159-208.

Fernández i, alvarez-gonzález ca, tovar-ramírez d, galaviz m. non-coding rnas: uncovering their potential relevance in fish nutrition. ininvestigación y desarrollo en nutrición acuicola 2017;362-388.

Zhang y, miao g, fazhan h, waiho k, zheng h, li s, et al. transcriptome-seq provides insights into sex-preference pattern of gene expression between testis and ovary of the crucifix crab (charybdis feriatus). physiological genomics. 2018;50(5):393-405.

Lokman pm, symonds je. molecular and biochemical tricks of the research trade:-omics approaches in finfish aquaculture. new zealand j mar freshw res. 2014;48(3):492-505.

Wang x, wang s, li c, chen k, qin jg, chen l, et al. molecular pathway and gene responses of the pacific white shrimp litopenaeus vannamei to acute low salinity stress. j shellfish res. 2015;34(3):1037-1049.

Waiho k, fazhan h, shahreza ms, moh jh, noorbaiduri s, wong ll, et al. transcriptome analysis and differential gene expression on the testis of orange mud crab, scylla olivacea, during sexual maturation. plos one. 2017 jan 30;12(1):e0171095.

Nguyen tv, alfaro ac, young t, ravi s, merien f. metabolomics study of immune responses of new zealand greenshellâ„¢ mussels (perna canaliculus) infected with pathogenic vibrio sp. marine biotechnology. 2018;20(3):396-409.

Zhu j, li c, ao q, tan y, luo y, guo y, et al. trancriptomic profiling revealed the signatures of acute immune response in tilapia (oreochromis niloticus) following streptococcus iniae challenge. fish shellfish immunol. 2015;46(2):346-353.

Martin sa, dehler ce, król e. transcriptomic responses in the fish intestine. developmental & comparative immunology. 2016;64:103-117.

El-hamid sa, ellakany hf, elbestawy ar, gado ar. molecular characterization of h9n2 avian influenza viruses isolated from commercial broiler chickens in egypt during 2014-2015. alexandria j vet sci. 2018;56(2).

Awad am, ali ab, el-hamid hs, el-naggar al, sediek me, el-shall na, et al. epidemiological studies on h5n1 and h9n2 avian influenza viruses during late 2013 and 2015 in egypt. alexandria j vet sci. 2016;51(2).

Tombari w, ghram a. production of a truncated recombinant ha1 for influenza a h9 subtype screening. biologicals. 2016;44(6):546-555.

Ellakany hf, gado ar, elbestawy ar, el-hamid hs, hafez hm, el-hack me, et al. interaction between avian influenza subtype h9n2 and newcastle disease virus vaccine strain (lasota) in chickens. bmc vet res. 2018;(1):358.

Rahimirad s, alizadeh a, alizadeh e, hosseini sm. the avian influenza h9n2 at avian-human interface: a possible risk for the future pandemics. j res med sci. 2016;21.

Elmasry i, elshiekh h, abdlenabi a, saad a, arafa a, fasina fo, et al. avian influenza h5n1 surveillance and its dynamics in poultry in live bird markets, egypt. transboundary and emerging diseases. 2017;64(3):805-814.

Dagan bs, seibou toleba s, youssao a. evaluation de la bioconcentration des métaux lourds (pb, cd, cu, zn, fe, cr, ni, as) dans des crabes callinectes amnicola (de rochebrune, 1883) et cardisoma armatum (herklots, 1851) du complexe lac nokoué-lagune de porto-novo au sud du bénin.

Igwe cu, nwachukwu n, otaba ma, olunkwa eu, nwaogu la. determination of the protein quality, mineral bioavailability and mineral safety index of jatropha curcas leaf.

Wilson s, immaculate jeyasanta k, patterson j. nutritional status of swimming crab portunus sanguinolentus (herbst, 1783). journal of aquatic biology & fisheries. 2017;5:191-202.

Haq m, maddu a, riyanto b, wardiatno y, zakiah af. exploration of composition, elements, and microstructure of body and shell on tropical mole crab (emerita emeritus). iniop conference series: earth and environmental science 2018 nov (vol. 187, no. 1, p. 012021). iop publishing.

Kanwal n, saher nu. comparative biochemical composition of commercially important brachyuran crabs along pakistan coast. int j biol res. 2016;4(2):83-8.

Top