Eric J. Thomas

9.5k total citations · 1 hit paper
267 papers, 6.5k citations indexed

About

Eric J. Thomas is a scholar working on Organic Chemistry, Molecular Biology and Pharmacology. According to data from OpenAlex, Eric J. Thomas has authored 267 papers receiving a total of 6.5k indexed citations (citations by other indexed papers that have themselves been cited), including 189 papers in Organic Chemistry, 77 papers in Molecular Biology and 35 papers in Pharmacology. Recurrent topics in Eric J. Thomas's work include Synthetic Organic Chemistry Methods (111 papers), Asymmetric Synthesis and Catalysis (55 papers) and Chemical Synthesis and Analysis (34 papers). Eric J. Thomas is often cited by papers focused on Synthetic Organic Chemistry Methods (111 papers), Asymmetric Synthesis and Catalysis (55 papers) and Chemical Synthesis and Analysis (34 papers). Eric J. Thomas collaborates with scholars based in United Kingdom, United States and Australia. Eric J. Thomas's co-authors include E. Francis Cook, Lee Goldman, Lynn E. Ludwig, Magruder C. Donaldson, Thomas H. Lee, Edward R. Marcantonio, Carol M. Mangione, David J. Sugarbaker, Robert Poss and Alex Pedan and has published in prestigious journals such as Circulation, Accounts of Chemical Research and Journal of the American College of Cardiology.

In The Last Decade

Eric J. Thomas

259 papers receiving 6.1k citations

Hit Papers

Derivation and Prospective Validation of a Simple Index f... 1999 2026 2008 2017 1999 500 1000 1.5k 2.0k

Peers — A (Enhanced Table)

Peers by citation overlap · career bar shows stage (early→late) cites · hero ref

Name h Career Trend Papers Cites
Eric J. Thomas United Kingdom 32 2.5k 2.1k 1.8k 958 944 267 6.5k
Anthony Markham New Zealand 60 787 0.3× 810 0.4× 1.4k 0.8× 2.3k 2.4× 1.0k 1.1× 163 9.3k
Ranjan Chakrabarti United Kingdom 41 476 0.2× 1.3k 0.6× 1.1k 0.6× 1.2k 1.3× 2.1k 2.3× 117 6.8k
François Goldwasser France 48 286 0.1× 409 0.2× 720 0.4× 2.8k 2.9× 2.1k 2.2× 289 8.9k
G. Stoter Netherlands 61 272 0.1× 186 0.1× 2.5k 1.4× 3.5k 3.7× 1.6k 1.7× 261 10.8k
John B. Porter United Kingdom 64 356 0.1× 721 0.3× 616 0.3× 1.5k 1.6× 709 0.8× 468 14.2k
Susan J. Keam New Zealand 49 511 0.2× 367 0.2× 749 0.4× 1.9k 2.0× 877 0.9× 211 7.3k
Rebecca L. Siegel United States 6 235 0.1× 507 0.2× 1.0k 0.6× 3.4k 3.6× 2.4k 2.5× 7 10.5k
Ronald H. Blum United States 36 210 0.1× 1.3k 0.6× 1.1k 0.6× 2.0k 2.1× 2.7k 2.9× 95 10.2k
Nanno H. Mulder Netherlands 43 240 0.1× 190 0.1× 1.4k 0.8× 2.2k 2.3× 935 1.0× 229 6.9k
Thomas H. Corbett United States 45 1.4k 0.6× 262 0.1× 230 0.1× 2.2k 2.3× 379 0.4× 139 6.8k

Countries citing papers authored by Eric J. Thomas

Since Specialization
Citations

This map shows the geographic impact of Eric J. Thomas's research. It shows the number of citations coming from papers published by authors working in each country. You can also color the map by specialization and compare the number of citations received by Eric J. Thomas with the expected number of citations based on a country's size and research output (numbers larger than one mean the country cites Eric J. Thomas more than expected).

Fields of papers citing papers by Eric J. Thomas

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

This network shows the impact of papers produced by Eric J. Thomas. Nodes represent research fields, and links connect fields that are likely to share authors. Colored nodes show fields that tend to cite the papers produced by Eric J. Thomas. The network helps show where Eric J. Thomas may publish in the future.

Co-authorship network of co-authors of Eric J. Thomas

This figure shows the co-authorship network connecting the top 25 collaborators of Eric J. Thomas. A scholar is included among the top collaborators of Eric J. Thomas based on the total number of citations received by their joint publications. Widths of edges represent the number of papers authors have co-authored together. Node borders signify the number of papers an author published with Eric J. Thomas. Eric J. Thomas is excluded from the visualization to improve readability, since they are connected to all nodes in the network.

All Works

20 of 20 papers shown
1.
Thomas, Eric J., et al.. (2020). Delayed recovery of consciousness after general anaesthesia. BJA Education. 20(5). 173–179. 21 indexed citations
2.
Vickers, Clare, Ajanta Chakraborty, Natalia Kurepina, et al.. (2018). Structure-Based Design of MptpB Inhibitors That Reduce Multidrug-Resistant Mycobacterium tuberculosis Survival and Infection Burden in Vivo. Journal of Medicinal Chemistry. 61(18). 8337–8352. 39 indexed citations
3.
Martin, Nathaniel G. & Eric J. Thomas. (2012). Total synthesis of epothilones using functionalised allylstannanes for remote stereocontrol. Organic & Biomolecular Chemistry. 10(39). 7952–7952. 11 indexed citations
4.
5.
Thomas, Eric J., et al.. (2012). An approach to aliphatic 1,8-stereocontrol: diastereoselective syntheses of (±)-patulolide C and (±)-epipatulolide C. Organic & Biomolecular Chemistry. 10(34). 6995–6995. 8 indexed citations
6.
Green, Anthony P., Alan T. L. Lee, & Eric J. Thomas. (2011). Total synthesis of a 20-deoxybryostatin. Chemical Communications. 47(25). 7200–7200. 17 indexed citations
7.
Dunphy, Bruce C., et al.. (2009). The importance of employing stringent methods to recruit fertile male controls. Andrologia. 23(1). 35–39. 2 indexed citations
8.
Helliwell, Madeleine, et al.. (2005). Total synthesis of milbemycins: a synthesis of (6R)-6-hydroxy-3,4-dihydromilbemycin E. Organic & Biomolecular Chemistry. 3(20). 3636–3636. 10 indexed citations
9.
Thomas, Eric J. & Ian Campbell. (2000). Molecular Genetic Defects in Endometriosis. Gynecologic and Obstetric Investigation. 50(Suppl. 1). 44–50. 70 indexed citations
10.
Lee, Thomas H., Edward R. Marcantonio, Carol M. Mangione, et al.. (1999). Derivation and Prospective Validation of a Simple Index for Prediction of Cardiac Risk of Major Noncardiac Surgery. Circulation. 100(10). 1043–1049. 2215 indexed citations breakdown →
11.
Miller, James D., Robert W. Shaw, Robert F. Casper, et al.. (1998). Historical prospective cohort study of the recurrence of pain after discontinuation of treatment with danazol or a gonadotropin- releasing hormone agonist. Fertility and Sterility. 70(2). 293–296. 32 indexed citations
12.
Chin, Marshall H., Kenneth E. Covinsky, Mary McGrae McDermott, & Eric J. Thomas. (1998). Building a research career in general internal medicine. Journal of General Internal Medicine. 13(2). 117–122. 27 indexed citations
13.
Loughney, Andrew, et al.. (1996). Nuclear retinoid receptor expression in normal human endometrium throughout the menstrual cycle. Molecular Human Reproduction. 2(2). 123–129. 26 indexed citations
14.
Lee, Thomas H., Eric J. Thomas, Paula A. Johnson, et al.. (1995). 901-83 Troponin T and Perioperative Ischemia in Noncardiac Surgery. Journal of the American College of Cardiology. 25(2). 25A–25A. 2 indexed citations
18.
Jenkins, J.M., et al.. (1993). Endocrinology: The development of functional ovarian cysts during pituitary down-regulation. Human Reproduction. 8(10). 1623–1627. 18 indexed citations
19.
Thomas, Eric J.. (1992). Combining medical and surgical treatment for endometriosis: the best of both worlds?. BJOG An International Journal of Obstetrics & Gynaecology. 99(s7). 5–8. 29 indexed citations
20.
Watson, Richard A., et al.. (1992). Reverse transcription with nested polymerase chain reaction shows expression of basic fibroblast growth factor transcripts in human granulosa and cumulus cells from in vitro fertilisation patients. Biochemical and Biophysical Research Communications. 187(3). 1227–1231. 18 indexed citations

Rankless uses publication and citation data sourced from OpenAlex, an open and comprehensive bibliographic database. While OpenAlex provides broad and valuable coverage of the global research landscape, it—like all bibliographic datasets—has inherent limitations. These include incomplete records, variations in author disambiguation, differences in journal indexing, and delays in data updates. As a result, some metrics and network relationships displayed in Rankless may not fully capture the entirety of a scholar's output or impact.

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