OpenAlex Citation Counts

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OpenAlex is a bibliographic catalogue of scientific papers, authors and institutions accessible in open access mode, named after the Library of Alexandria. It's citation coverage is excellent and I hope you will find utility in this listing of citing articles!

If you click the article title, you'll navigate to the article, as listed in CrossRef. If you click the Open Access links, you'll navigate to the "best Open Access location". Clicking the citation count will open this listing for that article. Lastly at the bottom of the page, you'll find basic pagination options.

Requested Article:

Comparative proteomic analysis of sensitive and multi-drug resistant Aeromonas hydrophila isolated from diseased fish
Wei Zhu, Shuxin Zhou, Weihua Chu
Microbial Pathogenesis (2019) Vol. 139, pp. 103930-103930
Closed Access | Times Cited: 37

Showing 1-25 of 37 citing articles:

Antibiotic Resistance in the Finfish Aquaculture Industry: A Review
Gianluigi Ferri, Carlotta Lauteri, Alberto Vergara
Antibiotics (2022) Vol. 11, Iss. 11, pp. 1574-1574
Open Access | Times Cited: 60

Antimicrobial resistance in aquaculture: A global analysis of literature and national action plans
Andrea Caputo, Melba G. Bondad‐Reantaso, Iddya Karunasagar, et al.
Reviews in Aquaculture (2022) Vol. 15, Iss. 2, pp. 568-578
Open Access | Times Cited: 46

Bacteriophages in the Control of Aeromonas sp. in Aquaculture Systems: An Integrative View
Carla Pereira, João Duarte, Pedro Costa, et al.
Antibiotics (2022) Vol. 11, Iss. 2, pp. 163-163
Open Access | Times Cited: 28

Transcriptomics and proteomics revealed the psychrotolerant and antibiotic-resistant mechanisms of strain Pseudomonas psychrophila RNC-1 capable of assimilatory nitrate reduction and aerobic denitrification
Yuanyi Zhao, Hongchao Min, Kongyan Luo, et al.
The Science of The Total Environment (2022) Vol. 820, pp. 153169-153169
Closed Access | Times Cited: 24

Use of proteomic-based MALDI-TOF mass spectra for identification of bacterial pathogens in aquaculture: a review
İfakat Tulay ÇAĞATAY
Aquaculture International (2024) Vol. 32, Iss. 6, pp. 7835-7871
Open Access | Times Cited: 4

Proteomic Strategies to Evaluate the Impact of Farming Conditions on Food Quality and Safety in Aquaculture Products
Mónica Carrera, Carmen Piñeiro, Iciar Martı́nez
Foods (2020) Vol. 9, Iss. 8, pp. 1050-1050
Open Access | Times Cited: 25

Lytic Bacteriophage PZL-Ah152 as Biocontrol Measures Against Lethal Aeromonas hydrophila Without Distorting Gut Microbiota
Chao Feng, Kaixiang Jia, Teng Chi, et al.
Frontiers in Microbiology (2022) Vol. 13
Open Access | Times Cited: 16

Integration of RNA-seq and RNAi provides a novel insight into the immune responses of Epinephelus coioides to the impB gene of Pseudomonas plecoglossicida
Zixu Liu, Lingmin Zhao, Lixing Huang, et al.
Fish & Shellfish Immunology (2020) Vol. 105, pp. 135-143
Closed Access | Times Cited: 22

Aeromonas hydrophila Ssp1: A secretory serine protease that disrupts tight junction integrity and is essential for host infection
Feng Chen, Xiaofeng Liu, Niewen Hu, et al.
Fish & Shellfish Immunology (2022) Vol. 127, pp. 530-541
Closed Access | Times Cited: 13

Understanding the role of microbes in health and disease of farmed aquatic organisms
Cristiane C. Thompson, Wilson Wasielesky, Felipe Schwahofer Landuci, et al.
Marine Life Science & Technology (2024) Vol. 6, Iss. 4, pp. 579-609
Closed Access | Times Cited: 2

Phytotherapy in aquaculture: integration of endogenous application with science
C.M. Chong, A.V.S. Ganaseh Murthy, C.Y. Choy, et al.
Journal of Environmental Biology (2020) Vol. 41, Iss. 5(SI), pp. 1204-1214
Open Access | Times Cited: 16

Proteomic Applications in Aquatic Environment Studies
Nadeeka Thushari Gajahin Gamage, Rina Miyashita, Kazutaka Takahashi, et al.
Proteomes (2022) Vol. 10, Iss. 3, pp. 32-32
Open Access | Times Cited: 10

Rapid detection of Aeromonas hydrophila with a DNAzyme-based sensor
Xiaoyi Ma, Cang Wang, Mingcan Qin, et al.
Food Control (2020) Vol. 123, pp. 107829-107829
Closed Access | Times Cited: 15

NO3− as an electron acceptor elevates antibiotic resistance gene and human bacterial pathogen risks in managed aquifer recharge (MAR): A comparison with O2
Chongjun Zhang, Zhiang You, Shaoran Li, et al.
Environmental Research (2024) Vol. 248, pp. 118277-118277
Closed Access | Times Cited: 1

Seasonal distribution of human-to-human pathogens in airborne PM2.5 and their potential high-risk ARGs
Zhiwei Zuo, Yuanyuan Pan, Xueyun Huang, et al.
Frontiers in Microbiology (2024) Vol. 15
Open Access | Times Cited: 1

Understanding metabolic resistance strategy of clinically isolated antibiotic-resistant bacteria by proteomic approach
Bo Peng, Hui Li, Xuan‐xian Peng
Expert Review of Proteomics (2024) Vol. 21, Iss. 9-10, pp. 377-386
Closed Access | Times Cited: 1

Deletion of the gsk-3β (Glycogen synthase kinase-3β) in zebrafish results in decreased susceptibility to Aeromonas hydrophila
Mingzhong Zuo, Juan Du, Yuqing Liu, et al.
Microbial Pathogenesis (2024), pp. 107129-107129
Closed Access | Times Cited: 1

Antibacterial Potential of Caesalpinia coriaria (Jacq) Willd Fruit against Aeromonas spp. of Aquaculture Importance
Lenin Rangel-López, Nallely Rivero-Pérez, Benjamín Valladares-Carranza, et al.
Animals (2022) Vol. 12, Iss. 4, pp. 511-511
Open Access | Times Cited: 7

Proteomics Analysis Reveals Bacterial Antibiotics Resistance Mechanism Mediated by ahslyA Against Enoxacin in Aeromonas hydrophila
Zhen Li, Lishan Zhang, Qingli Song, et al.
Frontiers in Microbiology (2021) Vol. 12
Open Access | Times Cited: 6

The antivirulence activity, transcriptomics of EGCG and its protective effects on zebrafish infected by Aeromonas hydrophila
Hongmei Yin, Qiaohua Yan, Guoqiang Cheng, et al.
Frontiers in Cellular and Infection Microbiology (2023) Vol. 13
Open Access | Times Cited: 2

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