Brian D. Conway

610 total citations
23 papers, 442 citations indexed

About

Brian D. Conway is a scholar working on Pulmonary and Respiratory Medicine, Cardiology and Cardiovascular Medicine and Oceanography. According to data from OpenAlex, Brian D. Conway has authored 23 papers receiving a total of 442 indexed citations (citations by other indexed papers that have themselves been cited), including 9 papers in Pulmonary and Respiratory Medicine, 5 papers in Cardiology and Cardiovascular Medicine and 3 papers in Oceanography. Recurrent topics in Brian D. Conway's work include Aortic Disease and Treatment Approaches (7 papers), Aortic aneurysm repair treatments (6 papers) and Cardiac Valve Diseases and Treatments (4 papers). Brian D. Conway is often cited by papers focused on Aortic Disease and Treatment Approaches (7 papers), Aortic aneurysm repair treatments (6 papers) and Cardiac Valve Diseases and Treatments (4 papers). Brian D. Conway collaborates with scholars based in United States, China and Canada. Brian D. Conway's co-authors include Sotiris C. Stamou, Nicholas T. Kouchoukos, Robert Hagberg, Kevin W. Lobdell, R. C. Reedy, Mahdi Motagh, Chaoying Zhao, Zhong Lu, Bridget R. Scanlon and Donald R. Pool and has published in prestigious journals such as Remote Sensing of Environment, Water Resources Research and Journal of Thoracic and Cardiovascular Surgery.

In The Last Decade

Brian D. Conway

23 papers receiving 435 citations

Peers — A (Enhanced Table)

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

Name h Career Trend Papers Cites
Brian D. Conway United States 9 135 119 84 83 82 23 442
Carolyn Johnston United Kingdom 7 29 0.2× 37 0.3× 22 0.3× 59 0.7× 24 0.3× 14 250
Sue Cook Australia 12 290 2.1× 18 0.2× 27 0.3× 11 0.1× 112 1.4× 24 762
S. Buckley United States 9 49 0.4× 100 0.8× 30 0.4× 70 0.8× 52 0.6× 20 347
Hailei Liu China 13 10 0.1× 85 0.7× 74 0.9× 60 0.7× 3 0.0× 105 557
Jacqueline Salzer Germany 14 28 0.2× 248 2.1× 11 0.1× 59 0.7× 206 2.5× 17 620
Cyril Muller Costa Rica 12 30 0.2× 55 0.5× 7 0.1× 24 0.3× 34 0.4× 23 446
Laurence Gray Canada 19 448 3.3× 247 2.1× 38 0.5× 102 1.2× 275 3.4× 42 1.2k
Daniel R. McConnell United States 13 14 0.1× 40 0.3× 15 0.2× 112 1.3× 4 0.0× 29 1000
S. Ferrarese Italy 13 23 0.2× 11 0.1× 39 0.5× 51 0.6× 5 0.1× 40 321
Michele Morelli Italy 9 11 0.1× 23 0.2× 5 0.1× 42 0.5× 65 0.8× 24 328

Countries citing papers authored by Brian D. Conway

Since Specialization
Citations

This map shows the geographic impact of Brian D. Conway'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 Brian D. Conway with the expected number of citations based on a country's size and research output (numbers larger than one mean the country cites Brian D. Conway more than expected).

Fields of papers citing papers by Brian D. Conway

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

This network shows the impact of papers produced by Brian D. Conway. 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 Brian D. Conway. The network helps show where Brian D. Conway may publish in the future.

Co-authorship network of co-authors of Brian D. Conway

This figure shows the co-authorship network connecting the top 25 collaborators of Brian D. Conway. A scholar is included among the top collaborators of Brian D. Conway 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 Brian D. Conway. Brian D. Conway 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.
Scanlon, Bridget R., Donald R. Pool, Ashraf Rateb, et al.. (2025). Multidecadal drought impacts on the Lower Colorado Basin with implications for future management. Communications Earth & Environment. 6(1). 1 indexed citations
2.
Conway, Brian D., et al.. (2024). HCAI Block Model: A competence model for Human Centred Artificial Intelligence at K-12. Arrow - TU Dublin (Technological University Dublin). 22–28. 1 indexed citations
5.
Lu, Zhong, et al.. (2022). Mapping land subsidence and aquifer system properties of the Willcox Basin, Arizona, from InSAR observations and independent component analysis. Remote Sensing of Environment. 271. 112894–112894. 71 indexed citations
6.
Smith, Ryan, et al.. (2021). MAPPING GROUNDWATER USE WITH SATELLITE SENSOR FUSION AND MACHINE LEARNING. Abstracts with programs - Geological Society of America. 1 indexed citations
8.
Conway, Brian D., et al.. (2018). Groundwater-storage change and land-surface elevation change in Tucson Basin and Avra Valley, south-central Arizona--2003-2016. Scientific investigations report. 6 indexed citations
9.
Turek, Joseph W., et al.. (2017). Bovine arch anatomy influences recoarctation rates in the era of the extended end-to-end anastomosis. Journal of Thoracic and Cardiovascular Surgery. 155(3). 1178–1183. 19 indexed citations
10.
Hirai, Taishi, Brian D. Conway, Jonathan Paul, et al.. (2017). Frontiers in Transradial Catheterization and Intervention: Challenges and Advances in the “New Gold Standard” for Vascular Access. Current Cardiovascular Risk Reports. 11(12). 1 indexed citations
11.
Pearthree, P.A., et al.. (2016). LANDSLIDES ARE SURPRISINGLY LARGE AND WIDESPREAD IN ARIZONA. Abstracts with programs - Geological Society of America. 1 indexed citations
12.
Conway, Brian D., et al.. (2015). Monitoring Aquifer-Storage Change and Land Subsidence Related to Groundwater Withdrawal in the Willcox and Douglas Groundwater Basins in Southeastern Arizona. 2015 AGU Fall Meeting. 2015. 2 indexed citations
13.
Conway, Brian D., Michael Bates, Robert A. Hanfland, et al.. (2015). A Minimally Invasive, Algorithm-Based Approach for Anomalous Aortic Origin of a Coronary Artery. Innovations Technology and Techniques in Cardiothoracic and Vascular Surgery. 10(2). 101–105. 3 indexed citations
14.
Scanlon, Bridget R., Zizhan Zhang, R. C. Reedy, et al.. (2015). Hydrologic implications of GRACE satellite data in the Colorado River Basin. Water Resources Research. 51(12). 9891–9903. 94 indexed citations
15.
Conway, Brian D.. (2015). Land subsidence and earth fissures in south-central and southern Arizona, USA. Hydrogeology Journal. 24(3). 649–655. 93 indexed citations
16.
Conway, Brian D., Sotiris C. Stamou, Nicholas T. Kouchoukos, et al.. (2014). Effects of Hemodynamic Instability on Early Outcomes and Late Survival Following Repair of Acute Type A Aortic Dissection. Aorta. 2(1). 22–27. 8 indexed citations
17.
Conway, Brian D., Sotiris C. Stamou, Nicholas T. Kouchoukos, et al.. (2014). Improved clinical outcomes and survival following repair of acute type A aortic dissection in the current era. Interactive Cardiovascular and Thoracic Surgery. 19(6). 971–976. 26 indexed citations
18.
Conway, Brian D., Nicholas T. Kouchoukos, Kevin W. Lobdell, Robert Hagberg, & Sotiris C. Stamou. (2014). Effects of Gender on Outcomes and Survival Following Repair of Acute Type A Aortic Dissection. International Journal of Angiology. 24(2). 93–98. 30 indexed citations
19.
Conway, Brian D., Roy K. Greenberg, Tara M. Mastracci, Adrían V. Hernández, & Raphaël Coscas. (2010). Renal Artery Implantation Angles in Thoracoabdominal Aneurysms and Their Implications in the Era of Branched Endografts. Journal of Endovascular Therapy. 17(3). 380–387. 42 indexed citations
20.
Ronald, Allan, Brian D. Conway, & George G. Zhanel. (1990). The Value of Single-Dose Therapy to Diagnose the Site of Urinary Infection. Chemotherapy. 36(1). 2–9. 4 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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