Jong Seob Jeong

675 total citations
48 papers, 466 citations indexed

About

Jong Seob Jeong is a scholar working on Biomedical Engineering, Radiology, Nuclear Medicine and Imaging and Mechanics of Materials. According to data from OpenAlex, Jong Seob Jeong has authored 48 papers receiving a total of 466 indexed citations (citations by other indexed papers that have themselves been cited), including 34 papers in Biomedical Engineering, 33 papers in Radiology, Nuclear Medicine and Imaging and 13 papers in Mechanics of Materials. Recurrent topics in Jong Seob Jeong's work include Ultrasound Imaging and Elastography (29 papers), Photoacoustic and Ultrasonic Imaging (19 papers) and Ultrasound and Hyperthermia Applications (17 papers). Jong Seob Jeong is often cited by papers focused on Ultrasound Imaging and Elastography (29 papers), Photoacoustic and Ultrasonic Imaging (19 papers) and Ultrasound and Hyperthermia Applications (17 papers). Jong Seob Jeong collaborates with scholars based in South Korea, United States and Spain. Jong Seob Jeong's co-authors include K. Kirk Shung, Jin Ho Sung, Jin Ho Chang, Jungwoo Lee, Jung Woo Lee, Chi Hyung Seo, Changyang Lee, Jesse T. Yen, Young‐Kwon Seo and Abraham P. Lee and has published in prestigious journals such as Applied Physics Letters, PLoS ONE and IEEE Access.

In The Last Decade

Jong Seob Jeong

44 papers receiving 458 citations

Peers — A (Enhanced Table)

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

Name h Career Trend Papers Cites
Jong Seob Jeong South Korea 15 355 240 120 57 30 48 466
Xianjin Dai United States 16 318 0.9× 356 1.5× 80 0.7× 70 1.2× 28 0.9× 49 640
Erwin J. Alles United Kingdom 13 612 1.7× 317 1.3× 159 1.3× 89 1.6× 46 1.5× 59 721
Hayong Jung United States 13 305 0.9× 125 0.5× 63 0.5× 48 0.8× 28 0.9× 25 411
Jeremy A. Brown Canada 14 349 1.0× 293 1.2× 164 1.4× 112 2.0× 35 1.2× 73 594
Yaoyao Cui China 12 404 1.1× 229 1.0× 155 1.3× 103 1.8× 27 0.9× 113 591
Shinpei Okawa Japan 15 427 1.2× 419 1.7× 70 0.6× 40 0.7× 35 1.2× 84 728
Florian Klämpfl Germany 15 286 0.8× 165 0.7× 163 1.4× 31 0.5× 29 1.0× 56 648
Jiqing Huang China 13 359 1.0× 93 0.4× 38 0.3× 42 0.7× 27 0.9× 23 433
Jay A. Williams United States 14 392 1.1× 255 1.1× 158 1.3× 118 2.1× 108 3.6× 38 579

Countries citing papers authored by Jong Seob Jeong

Since Specialization
Citations

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

Fields of papers citing papers by Jong Seob Jeong

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

This network shows the impact of papers produced by Jong Seob Jeong. 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 Jong Seob Jeong. The network helps show where Jong Seob Jeong may publish in the future.

Co-authorship network of co-authors of Jong Seob Jeong

This figure shows the co-authorship network connecting the top 25 collaborators of Jong Seob Jeong. A scholar is included among the top collaborators of Jong Seob Jeong 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 Jong Seob Jeong. Jong Seob Jeong 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.
Jeong, Jong Seob, et al.. (2025). Reducing the workload of medical diagnosis through artificial intelligence: A narrative review. Medicine. 104(6). e41470–e41470. 10 indexed citations
3.
Jeong, Eun Young, Jin Ho Sung, & Jong Seob Jeong. (2020). Improved Acoustic Radiation Force Impulse Imaging Using Split-Focused Ultrasound Transducer With Phase Inversion Technique. IEEE Sensors Journal. 21(2). 1395–1403. 3 indexed citations
4.
Sung, Jin Ho, et al.. (2020). Interleaved Array Transducer with Polarization Inversion Technique to Implement Ultrasound Tissue Harmonic Imaging. Sensors. 20(14). 3915–3915. 3 indexed citations
5.
Sung, Jin Ho, Eun Young Jeong, & Jong Seob Jeong. (2020). Intravascular Ultrasound Transducer by Using Polarization Inversion Technique for Tissue Harmonic Imaging: Modeling and Experiments. IEEE Transactions on Biomedical Engineering. 67(12). 3380–3391. 8 indexed citations
6.
Sung, Jin Ho, et al.. (2019). A Phase-Canceled Backing Layer for Ultrasound Linear Array Transducer: Modeling and Experimental Verification. IEEE Transactions on Ultrasonics Ferroelectrics and Frequency Control. 67(4). 770–778. 2 indexed citations
7.
Park, Jeong-Eun, et al.. (2016). Sound Waves Induce Neural Differentiation of Human Bone Marrow-Derived Mesenchymal Stem Cells via Ryanodine Receptor-Induced Calcium Release and Pyk2 Activation. Applied Biochemistry and Biotechnology. 180(4). 682–694. 17 indexed citations
9.
Yoon, Sangpil, Jay A. Williams, Bong Jin Kang, et al.. (2015). Angled-focused 45MHz PMN-PT single element transducer for intravascular ultrasound imaging. Sensors and Actuators A Physical. 228. 16–22. 30 indexed citations
10.
Jeong, Jong Seob. (2014). Dual-Element Transducer with Phase-Inversion for Wide Depth of Field in High-Frequency Ultrasound Imaging. Sensors. 14(8). 14278–14288. 2 indexed citations
11.
Emerson, Jane F., et al.. (2013). Electromagnetic acoustic imaging. IEEE Transactions on Ultrasonics Ferroelectrics and Frequency Control. 60(2). 364–372. 15 indexed citations
12.
Jeong, Jong Seob & Jung Woo Lee. (2013). Generation of a 25-MHz high-frequency ultrasound beam for acoustic particle trapping. Journal of the Korean Physical Society. 62(2). 238–242. 3 indexed citations
13.
Jeong, Jong Seob & K. Kirk Shung. (2012). Improved fabrication of focused single element P(VDF–TrFE) transducer for high frequency ultrasound applications. Ultrasonics. 53(2). 455–458. 33 indexed citations
14.
Jeong, Jong Seob, et al.. (2011). Particle manipulation in a microfluidic channel using acoustic trap. Biomedical Microdevices. 13(4). 779–788. 37 indexed citations
15.
Seo, Chi Hyung, Douglas N. Stephens, Jorge B. Cannata‐Andía, et al.. (2011). The feasibility of using thermal strain imaging to regulate energy delivery during intracardiac radio-frequency ablation. IEEE Transactions on Ultrasonics Ferroelectrics and Frequency Control. 58(7). 1406–1417. 19 indexed citations
16.
Arana, L. Taberna, Jong Seob Jeong, José Barbosa, et al.. (2010). High Intensity Focus Ultrasound (HIFU) to Breakdown Lens for Cataract Surgery. Investigative Ophthalmology & Visual Science. 51(13). 5395–5395. 1 indexed citations
17.
Jeong, Jong Seob, et al.. (2010). Adaptive HIFU noise cancellation for simultaneous therapy and imaging using an integrated HIFU/imaging transducer. Physics in Medicine and Biology. 55(7). 1889–1902. 18 indexed citations
18.
Jeong, Jong Seob, Jonathan M. Cannata, & K. Kirk Shung. (2010). Dual-Focus Therapeutic Ultrasound Transducer for Production of Broad Tissue Lesions. Ultrasound in Medicine & Biology. 36(11). 1836–1848. 13 indexed citations
20.
Yen, Jesse T., et al.. (2009). A dual-layer transducer array for 3-D rectilinear imaging. IEEE Transactions on Ultrasonics Ferroelectrics and Frequency Control. 56(1). 204–212. 29 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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