Osamu Ikeda

2.6k total citations
128 papers, 1.9k citations indexed

About

Osamu Ikeda is a scholar working on Surgery, Radiology, Nuclear Medicine and Imaging and Pulmonary and Respiratory Medicine. According to data from OpenAlex, Osamu Ikeda has authored 128 papers receiving a total of 1.9k indexed citations (citations by other indexed papers that have themselves been cited), including 30 papers in Surgery, 28 papers in Radiology, Nuclear Medicine and Imaging and 26 papers in Pulmonary and Respiratory Medicine. Recurrent topics in Osamu Ikeda's work include Hepatocellular Carcinoma Treatment and Prognosis (17 papers), Computer Graphics and Visualization Techniques (11 papers) and Liver Disease and Transplantation (11 papers). Osamu Ikeda is often cited by papers focused on Hepatocellular Carcinoma Treatment and Prognosis (17 papers), Computer Graphics and Visualization Techniques (11 papers) and Liver Disease and Transplantation (11 papers). Osamu Ikeda collaborates with scholars based in Japan, United States and Indonesia. Osamu Ikeda's co-authors include Yasuyuki Yamashita, Yutaka Nakasone, Yoshitaka Tamura, Takeshi Nakaura, Koichi Kawanaka, Hideo Tamura, Jianping Lei, Takuso Sato, Yasunori Nagayama and Hideki Hidaka and has published in prestigious journals such as SHILAP Revista de lepidopterología, Cancer and Radiology.

In The Last Decade

Osamu Ikeda

119 papers receiving 1.8k citations

Peers — A (Enhanced Table)

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

Name h Career Trend Papers Cites
Osamu Ikeda Japan 26 513 509 444 289 250 128 1.9k
Yikai Xu China 22 721 1.4× 156 0.3× 296 0.7× 280 1.0× 283 1.1× 77 1.5k
Eugene Yu Canada 32 652 1.3× 1.5k 2.9× 618 1.4× 453 1.6× 31 0.1× 111 3.3k
P. Péronneau France 23 600 1.2× 340 0.7× 329 0.7× 488 1.7× 102 0.4× 89 1.8k
Sang Youn Kim South Korea 31 908 1.8× 668 1.3× 1.1k 2.5× 265 0.9× 46 0.2× 127 3.0k
Michael Halliwell United Kingdom 24 612 1.2× 283 0.6× 282 0.6× 541 1.9× 196 0.8× 94 2.1k
Chunwu Zhou China 21 696 1.4× 159 0.3× 204 0.5× 189 0.7× 46 0.2× 78 1.2k
Yanjie Zhu China 26 901 1.8× 174 0.3× 167 0.4× 265 0.9× 91 0.4× 156 1.9k
Isaac Rosen United States 20 1.6k 3.2× 338 0.7× 3.1k 7.0× 662 2.3× 72 0.3× 46 4.3k
Melcior Sentís Spain 19 757 1.5× 108 0.2× 190 0.4× 173 0.6× 81 0.3× 61 1.6k
Pintong Huang China 36 608 1.2× 539 1.1× 634 1.4× 2.0k 7.0× 187 0.7× 194 4.0k

Countries citing papers authored by Osamu Ikeda

Since Specialization
Citations

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

Fields of papers citing papers by Osamu Ikeda

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

This network shows the impact of papers produced by Osamu Ikeda. 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 Osamu Ikeda. The network helps show where Osamu Ikeda may publish in the future.

Co-authorship network of co-authors of Osamu Ikeda

This figure shows the co-authorship network connecting the top 25 collaborators of Osamu Ikeda. A scholar is included among the top collaborators of Osamu Ikeda 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 Osamu Ikeda. Osamu Ikeda 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.
2.
Tamura, Yoshitaka, et al.. (2024). Endovascular Treatment of Unruptured Pancreatic Arcade Aneurysms. CardioVascular and Interventional Radiology. 47(9). 1173–1180. 1 indexed citations
3.
Honda, Masaki, Kaori Isono, Yasuhiko Sugawara, et al.. (2023). Hepatic venous outflow obstruction after adult living donor liver transplantation. Liver Transplantation. 29(12). 1292–1303. 1 indexed citations
4.
Uetani, Hiroyuki, Takeshi Nakaura, Mika Kitajima, et al.. (2022). Hybrid deep-learning-based denoising method for compressed sensing in pituitary MRI: comparison with the conventional wavelet-based denoising method. European Radiology. 32(7). 4527–4536. 16 indexed citations
5.
Emoto, Takafumi, Seitaro Oda, Masafumi Kidoh, et al.. (2020). Myocardial Extracellular Volume Quantification Using Cardiac Computed Tomography: A Comparison of the Dual-energy Iodine Method and the Standard Subtraction Method. Academic Radiology. 28(5). e119–e126. 37 indexed citations
6.
Kidoh, Masafumi, Seitaro Oda, Seiji Takashio, et al.. (2020). Assessment of Diffuse Ventricular Fibrosis in Atrial Fibrillation Using Cardiac CT-Derived Myocardial Extracellular Volume Fraction. JACC. Clinical electrophysiology. 6(12). 1573–1575. 5 indexed citations
7.
Yoshida, Morikatsu, Daisuke Utsunomiya, Yoshihiro Komohara, et al.. (2020). The imaging findings of Peliosis hepatis on gadoxetic acid enhanced MRI. SHILAP Revista de lepidopterología. 15(8). 1261–1265. 9 indexed citations
8.
Yokota, Yasuhiro, Masafumi Kidoh, Seitaro Oda, et al.. (2019). Contrast Enhancement Boost Technique at Aortic Computed Tomography Angiography: Added Value for the Evaluation of Type II Endoleaks After Endovascular Aortic Aneurysm Repair. Academic Radiology. 26(11). 1435–1440. 18 indexed citations
9.
Nagayama, Yasunori, Shota Tanoue, Seitaro Oda, et al.. (2019). Metal Artifact Reduction in Head CT Performed for Patients with Deep Brain Stimulation Devices: Effectiveness of a Single-Energy Metal Artifact Reduction Algorithm. American Journal of Neuroradiology. 41(2). 231–237. 8 indexed citations
10.
Miyazaki, Masaya, Toshihiro Iguchi, Haruyuki Takaki, et al.. (2016). Ablation protocols and ancillary procedures in tumor ablation therapy: consensus from Japanese experts. Japanese Journal of Radiology. 34(9). 647–656. 21 indexed citations
11.
Okabe, Hirohisa, Daisuke Hashimoto, Akira Chikamoto, et al.. (2016). Shape and Enhancement Characteristics of Pancreatic Neuroendocrine Tumor on Preoperative Contrast-enhanced Computed Tomography May be Prognostic Indicators. Annals of Surgical Oncology. 24(5). 1399–1405. 19 indexed citations
13.
Beppu, Toru, Tomohiro Namimoto, Hiromitsu Hayashi, et al.. (2015). Hepatic angiomyolipoma with special attention to radiologic imaging. Surgical Case Reports. 1(1). 38–38. 3 indexed citations
14.
Hiraki, Takao, Koichiro Yamakado, Osamu Ikeda, et al.. (2011). Percutaneous Radiofrequency Ablation for Pulmonary Metastases from Hepatocellular Carcinoma: Results of a Multicenter Study in Japan. Journal of Vascular and Interventional Radiology. 22(6). 741–748. 36 indexed citations
15.
Nagai, Yohei, Masayuki Watanabe, Osamu Ikeda, et al.. (2011). Successful Therapy of Brachiocephalic Arteriogastric Fistula After Esophagectomy. The Annals of Thoracic Surgery. 92(4). e65–e67. 2 indexed citations
16.
Ohgaki, Kippei, Osamu Ikeda, Eiji Oki, et al.. (2009). Postoperative Recurrent Laryngeal Nerve Palsy after Transthoracic Esophagectomy with 3-Field Lymph Node Dissection. Nihon Kikan Shokudoka Gakkai Kaiho. 60(2). 128–130.
17.
Ikeda, Osamu, Yoshitaka Tamura, Yutaka Nakasone, & Yasuyuki Yamashita. (2008). Celiac artery stenosis/occlusion treated by interventional radiology. European Journal of Radiology. 71(2). 369–377. 27 indexed citations
19.
Ikeda, Osamu. (1991). Synthetic-aperture optical imaging system using digital phase conjugation. iii. 2613–2616 vol.4. 2 indexed citations
20.
Sato, Takuso, et al.. (1981). Multilayer PMN coherent optical adaptive technique (A). Journal of the Optical Society of America A. 71. 1645. 3 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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