Chenbin Liu

2.0k total citations
64 papers, 1.5k citations indexed

About

Chenbin Liu is a scholar working on Radiology, Nuclear Medicine and Imaging, Pulmonary and Respiratory Medicine and Biomedical Engineering. According to data from OpenAlex, Chenbin Liu has authored 64 papers receiving a total of 1.5k indexed citations (citations by other indexed papers that have themselves been cited), including 21 papers in Radiology, Nuclear Medicine and Imaging, 18 papers in Pulmonary and Respiratory Medicine and 17 papers in Biomedical Engineering. Recurrent topics in Chenbin Liu's work include Advanced Radiotherapy Techniques (15 papers), Radiation Therapy and Dosimetry (13 papers) and Advanced biosensing and bioanalysis techniques (8 papers). Chenbin Liu is often cited by papers focused on Advanced Radiotherapy Techniques (15 papers), Radiation Therapy and Dosimetry (13 papers) and Advanced biosensing and bioanalysis techniques (8 papers). Chenbin Liu collaborates with scholars based in China, United States and Australia. Chenbin Liu's co-authors include Francis Tsow, Nongjian Tao, Dangdang Shao, Yuting Yang, Hui Yu, Wei Liu, Martin Bues, Steven E. Schild, Wei Chen and Yi Zou and has published in prestigious journals such as Proceedings of the National Academy of Sciences, Journal of the American Chemical Society and Nature Communications.

In The Last Decade

Chenbin Liu

63 papers receiving 1.5k citations

Peers — A (Enhanced Table)

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

Name h Career Trend Papers Cites
Chenbin Liu China 23 538 425 408 347 249 64 1.5k
William H. Moore United States 26 613 1.1× 927 2.2× 974 2.4× 103 0.3× 81 0.3× 144 2.6k
Jason Dowling Australia 24 662 1.2× 550 1.3× 1.7k 4.1× 1.1k 3.2× 51 0.2× 129 2.7k
Yuan Xu China 22 544 1.0× 122 0.3× 999 2.4× 130 0.4× 217 0.9× 82 1.7k
Varut Vardhanabhuti Hong Kong 22 613 1.1× 430 1.0× 1.3k 3.2× 52 0.1× 58 0.2× 110 1.9k
Michael P. André United States 26 541 1.0× 124 0.3× 966 2.4× 24 0.1× 104 0.4× 93 2.4k
Yun Wang China 22 444 0.8× 268 0.6× 776 1.9× 15 0.0× 112 0.4× 112 1.9k
Aaron D. Ward Canada 23 377 0.7× 1.1k 2.6× 961 2.4× 292 0.8× 75 0.3× 134 1.9k
Robert C. Molthen United States 24 445 0.8× 419 1.0× 683 1.7× 85 0.2× 245 1.0× 59 1.4k
Harald Fischer Germany 19 318 0.6× 84 0.2× 458 1.1× 99 0.3× 43 0.2× 58 1.2k
Isaac Shiri Switzerland 36 1.4k 2.6× 860 2.0× 2.9k 7.0× 299 0.9× 164 0.7× 174 3.6k

Countries citing papers authored by Chenbin Liu

Since Specialization
Citations

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

Fields of papers citing papers by Chenbin Liu

Since Specialization
Physical SciencesHealth SciencesLife SciencesSocial Sciences

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

Co-authorship network of co-authors of Chenbin Liu

This figure shows the co-authorship network connecting the top 25 collaborators of Chenbin Liu. A scholar is included among the top collaborators of Chenbin Liu 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 Chenbin Liu. Chenbin Liu 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
2.
Liu, Chenbin, et al.. (2024). Tumor-associated antigen-specific cell imaging based on upconversion luminescence and nucleic acid rolling circle amplification. Microchimica Acta. 191(5). 248–248. 2 indexed citations
4.
Li, Wenxing, Tianshu Chen, Yilin Yan, et al.. (2024). Orthogonal DNA Self‐Assembly‐Based Expansion Microscopy Platform for Amplified, Multiplexed Biomarker Imaging. Small Methods. 8(12). e2400505–e2400505. 4 indexed citations
5.
Chen, Tianshu, Guifang Chen, Siyu Cao, et al.. (2024). Dynamic Addressing Molecular Robot (DAMR): An Effective and Efficient Trial‐and‐Error Approach for the Analysis of Single Nucleotide Polymorphisms. Advanced Science. 11(31). e2402140–e2402140. 8 indexed citations
6.
Ma, Kun, et al.. (2023). Spectral CT assists differentiation of osteoblastic bone metastasis from bone island in newly diagnosed cancer patients. European Radiology. 34(1). 60–68. 2 indexed citations
7.
Feng, Chang, et al.. (2023). Lantern-shaped flexible RNA origami for Smad4 mRNA delivery and growth suppression of colorectal cancer. Nature Communications. 14(1). 1307–1307. 31 indexed citations
8.
Liu, Chenbin, Zhengliang Liu, Jason Holmes, et al.. (2023). Artificial general intelligence for radiation oncology. SHILAP Revista de lepidopterología. 1(3). 100045–100045. 17 indexed citations
9.
Yuan, Qianqin, Dongsheng Mao, Chenbin Liu, et al.. (2023). Biological effect abundance analysis of hemolytic pathogens based on engineered biomimetic sensor. Biosensors and Bioelectronics. 237. 115502–115502. 4 indexed citations
10.
Liang, Ying, et al.. (2022). Monte Carlo simulation of linac using PRIMO. Radiation Oncology. 17(1). 185–185. 5 indexed citations
11.
Chen, Wei, et al.. (2021). Exosome in Hepatocellular Carcinoma: an update. Journal of Cancer. 12(9). 2526–2536. 37 indexed citations
12.
Liu, Chenbin, Jinrong Lin, Jianjun Zhang, et al.. (2021). Zinc Finger Protein CTCF Regulates Extracellular Matrix (ECM)-Related Gene Expression Associated With the Wnt Signaling Pathway in Gastric Cancer. Frontiers in Oncology. 10. 625633–625633. 14 indexed citations
13.
Deng, Wei, Chenbin Liu, Martin Bues, et al.. (2021). A Critical Review of LET-Based Intensity-Modulated Proton Therapy Plan Evaluation and Optimization for Head and Neck Cancer Management. International Journal of Particle Therapy. 8(1). 36–49. 40 indexed citations
14.
Liu, Chenbin, Ling Ye, Xudong Zheng, et al.. (2020). Chest Computed Tomography and Clinical Follow-Up of Discharged Patients with COVID-19 in Wenzhou City, Zhejiang, China. Annals of the American Thoracic Society. 17(10). 1231–1237. 80 indexed citations
16.
Shah, Abid Ali, Ge Zhang, Kuokuo Li, et al.. (2020). Excess of RALGAPB de novo variants in neurodevelopmental disorders. European Journal of Medical Genetics. 63(11). 104041–104041. 1 indexed citations
17.
Liu, Chenbin, R.S. Bhangoo, Terence T. Sio, et al.. (2019). Dosimetric comparison of distal esophageal carcinoma plans for patients treated with small‐spot intensity‐modulated proton versus volumetric‐modulated arc therapies. Journal of Applied Clinical Medical Physics. 20(7). 15–27. 44 indexed citations
18.
Wang, Yuenan, Chenbin Liu, Xiao Zhang, & Weiwei Deng. (2019). Synthetic CT Generation Based on T2 Weighted MRI of Nasopharyngeal Carcinoma (NPC) Using a Deep Convolutional Neural Network (DCNN). Frontiers in Oncology. 9. 1333–1333. 55 indexed citations
19.
Liu, Chenbin, Steven E. Schild, Joe Y. Chang, et al.. (2018). Impact of Spot Size and Spacing on the Quality of Robustly Optimized Intensity Modulated Proton Therapy Plans for Lung Cancer. International Journal of Radiation Oncology*Biology*Physics. 101(2). 479–489. 62 indexed citations
20.
Liu, Chenbin, Francis Tsow, Yi Zou, & Nongjian Tao. (2016). Particle Pollution Estimation Based on Image Analysis. PLoS ONE. 11(2). e0145955–e0145955. 77 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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