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期刊文章


2026年

  1. Ye Z, Liu B, Dobynde M I, Guo J, Xu XG. Assessment of lunar surface radiation risks and uncertainties using a full-chain Monte Carlo framework: From lunar radiation environment to dose. Life Sciences in Space Research. 2026 Jun. doi: 10.1016/j.lssr.2026.06.006.

  2. Liu J, Qi M, Zhou J, Yan B, Wu A, Xu XG. A fast dosimetric optimization method of intensity modulated brachytherapy (IMBT) treatment plans for cervical cancer. Phys Med Biol. 2026 Apr 23. doi: 10.1088/1361-6560/ae63a2.

  3. Shogile K, Wei M, Zeeshan M, Ye Z, Guo J, Xu X G. Calculation of neutron fluence-to-absorbed-dose conversion coefficients using Monte Carlo simulations and a pair of Chinese adult male and female phantoms. Radiation Protection Dosimetry. 2026. doi: 10.1093/rpd/ncag082. PMID: 42535571.

  4. Liu J, Wang X, Zhang H, Xu Z, Wang X, Xu X G. Data-efficient unsupervised deep learning deformable SPECT/CT registration framework for voxel-level radionuclide therapy dosimetry: validation using clinical ¹³¹I DTC therapy data. EJNMMI Physics. 2026. doi: 10.1186/s40658-026-00911-2. PMID: 42371223.

  5. Muhammad Z, Kebede S, Zhou J, Qi Y, Xu X G. Monte Carlo calculation of the relative biological effectiveness for low-kilovolt X-rays with open-ended applicators. Radiation Physics and Chemistry. 2026, 247, 114043. doi: 10.1016/j.radphyschem.2026.114043.

  6. Zhu J, Cao S, Li X, Qi Y, Chen Z. An analytical framework for efficient and precision-controlled Monte Carlo simulation of heterogeneous targeted alpha therapy microdosimetry. Med Phys. 2026;53(8):e70598. doi: 10.1002/mp.70598. PMID: 42482461.

  7. Tang H, Chen Z. Exceptional Stability of a 3D Cationic Covalent Organic Polymer for ReO₄⁻/⁹⁹TcO₄⁻ Remediation in Acidic and High-Radiation Nuclear Wastewater. ACS Appl Mater Interfaces. 2026 Mar 4;18(8):13039-13050. doi: 10.1021/acsami.6c00229. PMID: 41721727.

  8. Wang H, Pi Y, Liu C, Zuo X, Wang X, Han B, Pei X, Lv R, Xu X G, Long C, Guo Y, Wang P. The impact of collimator angle and increment on volumetric modulated arc therapy after modified radical mastectomy for breast cancer. Sci Rep. 2026;16(1):19974. doi: 10.1038/s41598-026-42055-4. PMID: 42056155.

  9. Wang J, Liang B, Ye Z, Xu X, Qin T, Fan Y, Sun Q. Estimation of organ doses based on patient-specific characteristics undergoing chest-abdomen-pelvis CT examinations of tube current modulation. J Radiol Prot. 2026;46(2):021502. doi: 10.1088/1361-6498/ae4b47. PMID: 41759213.

  10. Wang X, Xia M, Chen Z. Charging characteristics of typical alpha-emitting aerosols and their divergence from beta-emitters in nuclear emergency scenarios. Nucl Eng Des. 2026;446:114640. doi: 10.1016/j.nucengdes.2025.114640.




2025年

  1. Chang Y, Wang X, Cheng B, Wang Y, Li S, Ye Z, Pei X, Zhao J, Xu XG. ARCHER-a Monte Carlo code for multi-particle radiotherapy through GPU-accelerated simulation and DL-based Ren Q, Pei X, Shi C, Xu XG.

  2. Gao N, Cheng B, Wang Z, Li D, Chang Y, Ren Q, Pei X, Shi C, Xu X G. Feasibility of reconstructing in-vivo patient 3D dose distributions from 2D EPID image data using convolutional neural networks [J]. Physics in Medicine and Biology, 2025,70(1): 015018.

  3. Li S, Gao N, Cheng B, Liu J, Chang Y, Pei X, Xu XG. A new GPU-based Monte Carlo code for helium ion therapy. Strahlenther Onkol. 2025 Feb 7.

  4. Ye Z, Yao B, Zheng H, Tao T, Wang R, Chang Y, Chen Z, Zhao Y, Wei W, Xu XG. Uncertainty quantification for CT dosimetry based on 10 281 subjects using automatic image segmentation and fast Monte Carlo calculations. Med Phys. 2025 Jun;52(6):4910-4923.

  5. Wang X, Wei M, Wang Y, Xu XG, Chen Z. Enhanced difference ghost shuffle U-Net: A hybrid Monte Carlo deep learning denoiser for boron neutron capture therapy dose calculation. Med Phys. 2025;52:e70100.

  6. Zeeshan M, Wu Y, Qi Z, Gao N, Pei X, Xu XG. Dosimetric characterization of a Varex VF-80/μXHP x-ray unit using open-ended applicators for superficial radiotherapy. J Appl Clin Med Phys. 2025;26:e70326.

  7. Zhang H, Tao L, Liu J, Pei X, Zhou J, Wu A, Xu XG. Development of a treatment planning system for superficial x-ray radiotherapy using Monte Carlo database. Biomed Phys Eng Express. 2025 Nov 24;11(6).

  8. Zhong Y, Zhang Y, Peng W, Wei N, Li X, Wang H, Wang Z, Chen Z. Cuproptosis-based nanoparticles for cascade reaction to boost radioimmunotherapy. Colloids Surf B Biointerfaces. 2025;255:114888. doi: 10.1016/j.colsurfb.2025.114888. PMID: 40543186.

  9. Li X, He Y, Han H, Chen Z. Evaluation of shielding materials against galactic cosmic rays for protecting astronauts. Radiat Prot Dosimetry. 2025 Apr 7;201(5):361-377. doi: 10.1093/rpd/ncaf022. PMID: 40130568.

  10. Zhang H, Ni M, Yang Y, Xie F, Wang W, He Y, Chen W, Chen Z. Patch-based interpretable deep learning framework for Alzheimer's disease diagnosis using multimodal data. Biomed Signal Process Control. 2025;100:107085. doi: 10.1016/j.bspc.2024.107085.

  11. Cao S, Tang H, Kang Y, Li X, Chen Z. Advanced strategy for radium separation from natural thorium using crown ether-based covalent organic polymer microsphere. Chem Eng J. 2025;524:169093. doi: 10.1016/j.cej.2025.169093.

  12. Tang H, Cao S, Bian Q, Chen Z. Guanidinium-thienyl covalent organic polymer for efficient iodide capture. Chem Eng J. 2025;522:167796. doi: 10.1016/j.cej.2025.167796.

  13. Yu Y, Chen Z. Selection of key parameters for the high yield production of ⁹⁹ᵐTc via ¹⁰⁰Mo(p,2n)⁹⁹ᵐTc reaction in a cyclotron. Radiat Phys Chem. 2025;232:112695. doi: 10.1016/j.radphyschem.2025.112695

  14. Li X, Chen Z. In-situ detector theoretical design for low-activity concentration tritiated water based on plastic scintillator thin film flow cell. Fusion Eng Des. 2025;216:115104. doi: 10.1016/j.fusengdes.2025.115104

  15. Yu Y, Chen Z. Study on Induced Radioactivity of Different Materials in the Proton Therapy Facility. J Radiat Prot Res. 2025;50(s1):S95-S104. doi: 10.14407/jrpr.2023.00535

  16. Cao S, Hao B, Chen Z. Crown ether-based cloud point extraction for lead-212 enrichment from thorium series. New J Chem. 2025;49(4):1342-1348. doi: 10.1039/d4nj04043k.

  17. 高宁, 周解平, 常艳奎, 任强, 裴曦, 吴爱东, 徐榭. 基于深度学习加速EPID透射剂量图像蒙特卡罗模拟的可行性[J]. 中国医学物理学杂志,2025,42(11):1401-1407.

  18. 齐妙, 刘君怡, 李仕军, 常艳奎, 周解平, 闫冰, 程勇, 吴爱东, 裴曦, 徐榭. 基于共轭梯度法的调强近距离放射治疗计划优化方法的研究 [J]. 中华放射医学与防护杂志, 2025, 45(1): 56-62. DOI: 10.3760/cma.j.cn112271-20240103-00004.

  19. 陶莉, 张慧, 吴翊凯, 刘君怡, 齐妙, 高宁, 常艳奎, 裴曦, 陈志, 徐榭. 浅层X射线治疗机过滤器对放疗剂量学影响的蒙特卡罗模拟研究 [J]. 中华放射医学与防护杂志, 2025, 45(3): 194-201. DOI: 10.3760/cma.j.cn112271-20240327-00109.

  20. 吴翊凯, 漆仲禹, 陶莉, 张慧, Muhammad Zeeshan, 叶子睿, 常艳奎, 裴曦, 徐榭. 透射式X射线管在kV级放射治疗的蒙特卡罗研究 [J]. 中国医学物理学杂志, 2025, 42(7): 863-871. DOI: 10.3969/j.issn.1005-202X.2025.07.004.

  21. 周解平, 高宁, 漆仲禹, 任强, 裴曦, 徐榭, 吴爱东. ArcherQA三维剂量验证系统在VMAT计划剂量验证的应用 [J]. 中华放射医学与防护杂志, 2025, 45(6): 551-557. DOI: 10.3760/cma.j.cn112271-20240924-00379.




2024年

  1. Cheng B, Xu Y, Li S, Ren Q, Pei X, Men K, Dai J, Xu XG. An automated commissioning method based on virtual source models: Customizing Monte Carlo dose verification models for individual accelerators. Med Phys. 2024 Dec;51(12):9330-9344. doi: 10.1002/mp.17418. Epub 2024 Sep 27. PMID: 39331832.

  2. Wang X, Chang Y, Pei X, Xu XG. A prior-information-based automatic segmentation method for the clinical target volume in adaptive radiotherapy of cervical cancer. J Appl Clin Med Phys. 2024 May;25(5):e14350. doi: 10.1002/acm2.14350. Epub 2024 Mar 28. PMID: 38546277; PMCID: PMC11087177.

  3. Zhang Y, Huang Z, Peng C, Gao N, Xu XG. et al. A bulk Schottky junction for high-sensitivity portable radiation detectors. Nat Commun 15, 10311 (2024). https://doi.org/10.1038/s41467-024-54594-3.

  4. Rehani M M and Xu X G. Dose, dose, dose, but where is the patient dose? Radiat. Prot. Dosim. 200, 945–55 (2024)

  5. Li S, Cheng B, Wang Y, Pei X, Xu X G. A GPU-based fast Monte Carlo code that supports proton transport in magnetic field for radiation therapy. J Appl Clin Med Phys. 2024 Jan;25(1):e14208. doi: 10.1002/acm2.14208. PMID: 37987549

  6. Chang Y, Liang Y, Wu H, Li L, Yang B, Jiang L, Ren Q, Pei X. Adaptive assessment based on fractional CBCT images for cervical cancer. J Appl Clin Med Phys. 2024 Oct;25(10):e14462. doi: 10.1002/acm2.14462. PMID: 39072895.

  7. Tang H, Kang Y, Cao S, Chen Z. Synthesis and performance of guanidinium-based cationic organic polymer for the efficient removal of TcO₄⁻/ReO₄⁻. J Hazard Mater. 2024 Mar 15;466:133602. doi: 10.1016/j.jhazmat.2024.133602. PMID: 38286051.

  8. Cao S, Kang Y, Tang H, Chen Z. Separation of lead-212 from natural thorium solution utilizing novel sulfonamide dibenzo-18-crown-6. Dalton Trans. 2024;53(8):3722-3730. doi: 10.1039/d3dt04166b. PMID: 38299333.

  9. Han H, Li X, Chen Z. Investigation of Lunar Shallow Subsurface Water Content and Soil Elemental Composition via Active Neutron Detection. Nucl Technol. 2024;211(4):807-820. doi: 10.1080/00295450.2024.2361194

  10. Tang H, Cao S, Kang Y, Chen Z. Dual-cation covalent organic polymers with sufficient adsorption sites for enhancing ⁹⁹TcO₄⁻/ReO₄⁻ removal. Chem Eng J. 2024;499:156390. doi: 10.1016/j.cej.2024.156390.

  11. Kang Y, Tang H, Cao S, Chen Z. Polymer microspheres functionalized with a trialkylamine containing unequal alkyl chains as an anion exchange resin for efficient removal of ReO₄⁻ as a surrogate for ⁹⁹TcO₄⁻. J Environ Chem Eng. 2024;12(6):114364. doi: 10.1016/j.jece.2024.114364.

  12. Yu Y, Chen Z. Study on induced radioactivity in proton therapy accelerators. Radiat Phys Chem. 2024;221:111751. doi: 10.1016/j.radphyschem.2024.111751

  13. 刘君怡, 程博, 彭昭, 齐妙, 裴曦, 徐榭. 通用图形处理单元快速蒙特卡罗软件ARCHER-NM在个体化β放射性核素治疗剂量计算的可行性研究 [J]. 中华放射医学与防护杂志, 2024,44(10):871-878. DOI:10.3760/cma.j.cn112271-20231205-00200.

  14. 李仕军, 高宁, 程博, 皮一飞, 王海洋, 常艳奎, 裴曦, 徐榭. 螺旋断层放疗的快速蒙特卡罗剂量验证模块开发 [J]. 中国医学物理学杂志, 2024,41(11):1321-1326. DOI:10.3969/j.issn.1005-202X.2024.11.001.

  15. 吴晋, 李仕军, 王誉鑫, 常艳奎, 裴曦, 陈志, 陈卫强, 李强, 徐榭. SPEEDO: 一款快速准确的碳离子蒙特卡罗剂量计算程序 [J]. 中国医学物理学杂志, 2024,41(10):1189-1198. DOI:10.3969/j.issn.1005-202X.2024.10.001.

  16. 张慧, 刘君怡, 陶莉, 王海洋, 陈志, 吴爱东, 钱东, 徐榭. 皮肤病变的浅层放射治疗技术进展 [J]. 中国医疗设备, 2024,39(11):143-148. DOI:10.3969/j.issn.1674-1633.2024.11.023.

  17. 何宇涛, 倪明, 李晓宇, 陈志. 基于生物动力学模型的18F-FDG PET扫描患者个体化累积活度分布评估 [J]. 中国医学物理学杂志, 2024, 41(8): 931-938. DOI: 10.3969/j.issn.1005-202X.2024.08.002.

  18. 刘满, 夏明明, 陈志. 衰变对放射性气溶胶在长直方管中的输运影响 [J]. 核动力工程, 2024, 45(4): 205-212. DOI: 10.13832/j.jnpe.2024.04.0205.




2023年

  1. Cheng B, Xu Y, Li S, Ren Q, Pei X, Men K, Dai J, Xu XG. Development and clinical application of a GPU-based Monte Carlo dose verification module and software for 1.5 T MR-LINAC. Med Phys. 2023 May;50(5):3172-3183.

  2. Chang Y, Liang Y, Yang B, Qiu J, Pei X, Xu XG. Dosimetric comparison of deformable image registration and synthetic CT generation based on CBCT images for organs at risk in cervical cancer radiotherapy. Radiat Oncol. 2023 Jan 5;18(1):3.

  3. Xu P, Yu G, Xu F, Ding C, Xue H, Chen Z. Analysis of radioactivity of negative-ion powder and determination of 232Th. Journal of Radioanalytical and Nuclear Chemistry[J]. 2023,332,1453–1457.

  4. Xu P, Yu G, Ding C, Wen D, Chen Z. Determination and distribution of 210Pb in plants using Liquid Scintillation Counting, Journal of Radioanalytical and Nuclear Chemistry[J]. 2023, 332, 1063–1069.

  5. Yu Y, Chen Z. Dose calculation of proton therapy based on Monte Carlo and empirical formula. Radiat Prot Dosimetry. 2023 Feb 15;199(2):124-133.

  6. Ye Z, Qi M, Zhao Y, Wei W, Xu X G. Estimation of fetal and pediatric doses from chest CT examinations using VirtualDose software. Radiat Prot Dosimetry. 2023 Jan;199(1):52-60. doi: 10.1093/rpd/ncac225. PMID: 36373995.

  7. Wang H, Pi Y, Liu C, Wang X, Guo Y, Lu L, Pei X, Xu X G. Investigation of total skin helical tomotherapy using a 3D-printed total skin bolus. Biomed Eng Online. 2023;22(1):57. doi: 10.1186/s12938-023-01118-7. PMID: 37316944

  8. 卢昱,彭昭,裴曦,倪明,谢强,汪世存,徐榭,陈志. 基于剂量预测和自动勾画技术的PET/CT器官内照射剂量率快速评估方法[J], 中国医学物理学杂志, 40(2):149-156, (2023)

  9. 齐妙,刘君怡,周解平,陈志,裴曦,徐榭.术中放疗设备的研究进展[J]. 中国医疗设备,2023,38(09):142-147.




2022年

  1. 齐雅平*,高宁,卢晓明,钱东,徐榭. FLASH放射治疗技术研究进展, 中国医学影像技术, 38(1), (2022)

  2. 孟祥银*,吴香奕,彭昭,徐榭,裴曦. 结合伪MRI信息的腹部CT危及器官自动勾画[J]. 中国医学物理学杂志, DOI:10.3969/j.issn.1005-202X (2022).

  3. 邱涛, 高宁, 皮一飞, 王海洋, 齐雅平, 程博, 裴曦, 徐榭. 基于自动勾画和快速蒙特卡罗计算的放射治疗全身器官剂量数据库平台的可行性研究[J]. 中国医学物理学杂志, 2022, 39(11): 1339-1344.

  4. 毛玲丽, 吴秉志, 吴香奕, 裴曦, 徐榭. MRI-only放射治疗方案中基于深度学习生成伪CT最新进展[J]. 中国医学影像技术, 2022, 38(4): 619-623.

  5. 吴秉志, 彭昭, 闫永恒, 周解平, 徐榭, 裴曦. 基于剂量预测的个性化放射治疗计划质量的定量评价方法[J]. 中华放射医学与防护杂志, 2022, 42(3): 188-193.

  6. 王海洋, 皮一飞, 刘春波, 韩滨, 孔凡洋, 姬腾飞, 裴曦, 徐榭, 郭跃信. 螺旋断层全身皮肤照射治疗的研究进展[J]. 中华放射肿瘤学杂志, 2022, 31(12): 1185-1189.

  7. 方诗杰*,程博,任强,潘茂云,吴爱东,徐榭,裴曦. 放疗计划系统DeepPlan光子放疗剂量计算的临床可行性验证[J].中国医学物理学杂志, 39(9):1063-1069(2022).

  8. Peng Z*, Li Y, Xu Y, Lu Y, Li M, Pei X, Xu XG. Development of a GPU-accelerated Monte Carlo dose calculation module for nuclear medicine, ARCHER-NM: Application for PET/CT imaging procedure [J]. Phys Med Biol, 67, 06NT02 (2022).

  9. Wang H*, Pi Y, Guo Y, Pei X and Xu XG. Influencing Factors of Total Skin Irradiation With Helical Tomotherapy. Front. Oncol. 12:852345. doi: 10.3389/fonc. 2022.852345 (2022).

  10. Peng Z*, Gao N, Wu B, Chen Z, Xu XG. A Review of Computational Phantoms for Quality Assurance in Radiology and Radiotherapy in the Deep-Learning Era, Journal of Radiation Protection and Research, 47(3):111-133. (2022)

  11. Xu P, Ding C, Yu G, Chen Z. Determination of 90Sr in different matrices via ion-exchange chromatography and LSC. Journal of Radioanalytical and Nuclear Chemistry[J]. 2022,331,3269–3274

  12. Yang B, Chang Y, Liang Y, Wang Z, Pei X, Xu X G, Qiu J. A Comparison Study Between CNN-Based Deformed Planning CT and CycleGAN-Based Synthetic CT Methods for Improving iCBCT Image Quality. Front Oncol. 2022 May 30;12:896795. doi: 10.3389/fonc.2022.896795. PMID: 35707352. PMCID: PMC9189355.




2021年

  1. Peng Z*, Zhou J, Fang X, Yan P, Shan H, Wang G, Xu XG, Pei X. Data Augmentation for Training Deep Neural Networks, in <>, 1st Edition, CRC Press (2021).

  2. Mao L*, Pei X, Chao TC, Xu XG. Calculations of magnetic field correction factors for ionization chambers in a transverse magnetic field using Monte Carlo code TOPAS. Radiation Physics and Chemistry, 183(3):109405 (2021).

  3. Qi Y*, Warmenhoven JW, Henthorn NT, Ingram SP, Xu XG, Kirkby KJ, Merchant MJ. Mechanistic Modelling of Slow and Fast NHEJ DNA Repair Pathways Following Radiation for G0/G1 Normal Tissue Cells. Cancers. 13(9):2202 (2021).

  4. Chang Y*, Wang Z, Peng Z, Zhou J, Pi Y, Xi P, Xu XG. Clinical application and improvement of a CNN-based autosegmentation model for clinical target volumes in cervical cancer radiotherapy, Journal of Applied Clinical Medical Physics (JACMP), 22(11):115-12 (2021).

  5. Peng Z*, Ni M, Shan H, Lu Y, Li Y, Zhang Y, Pei X, Chen Z, Xie Q, Wang S, Xu XG. Feasibility evaluation of PET scan-time reduction for diagnosing amyloid-beta levels in Alzheimer's disease patients using a deep-learning-based denoising algorithm. COMPUTERS IN BIOLOGY AND MEDICINE. 138:104919 (2021).

  6. 李永哲,彭昭,卢昱,倪明,谢强,汪世存,裴曦,徐榭,陈志. 基于放射性药物18F-AV45的PET-CT图像的脑组织内照射吸收剂量蒙特卡洛计算[J]. 中国医学物理学杂志, 38(11):1333-1337 (2021).

  7. 沈镇炯,彭昭,孟祥银,汪志,徐榭,裴曦.基于级联3D U-Net的CT和MR视交叉自动分割方法[J].中国医学物理学杂志, 38(08):950-954(2021).

  8. 闫永恒,潘茂云,周解平,吴爱东,吴文华,徐榭,裴曦.基于三维预测剂量的自调节调强放疗自动计划方法[J].中华放射医学与防护杂志, 41(06):444-449 (2021).

  9. 陶寅,张增鹏,刘红冬,徐榭,裴曦,陈志.基于不同相对生物效应模型评估质子放疗生物剂量[J].中华放射医学与防护杂志, 41(04):265-270 (2021).

  10. 张增鹏,陶寅,刘红冬,陈志,徐榭,裴曦.基于临床质子加速器的DeepPlan笔形束模型构建[J].中国医学物理学杂志, 38(03):287-294 (2021).

  11. 郭翌,吴香奕,吴茜,陈志,徐榭,裴曦.基于循环一致生成对抗网络的多模态影像刚性配准[J].中国医学物理学杂志, 38(02):198-203 (2021).

  12. 吴香奕,曹锋,曹瑞芬,吴茜,董江宁,徐榭,裴曦.基于循环一致性生成对抗网络的盆腔伪CT生成方法[J].中国医学物理学杂志, 38(01):21-29 (2021).




2020年

  1. Xu Y*, Chen J, Cao R, Liu H, Xu XG, Pei X. A Fast Robust Optimizer for Intensity Modulated Proton Therapy Using GPU. J Appl Clin Med Phys 21(3)123–133 (2020).

  2. Adam DP*, Liu T, Caracappa PF, Bednarz BP, Xu XG. New capabilities of the Monte Carlo dose engine ARCHER-RT: clinical validation of the Varian TrueBeam machine for VMAT external beam radiotherapy. Med Phys 2537-2549 (2020).

  3. Peng Z*, Fang X, Yan P, Shan H, Liu T, Pei X, Wang G, Liu B, Kalra M, Xu XG. A Method of Rapid Quantification of Patient-Specific Organ Dose for CT Using Coupled Deep Multi-Organ Segmentation Algorithms and GPU-accelerated Monte Carlo Dose Computing Code. Med Phys 47(6) 2526-2536 (2020).

  4. Zhou J*, Peng Z, Song Y, Chang Y, Pei X, Sheng L, Xu XG. A method of using deep learning to predict three-dimensional dose distributions for intensity modulated radiotherapy of rectal cancer. J Appl Clin Med Phys 21(5):26-37(2020).

  5. Guo Y, Wu X, Wang Z, Pei X, Xu XG. End-to-end unsupervised cycle-consistent fully convolutional network for 3D pelvic CT-MR deformable registration. J Appl Clin Med Phys 21(9) 193-200(2020).

  6. Wang Z, Chang Y, Peng Z, Lv Y, Shi W, Pei X, Xu XG. Evaluation of Deep Learning-based Auto-segmentation Algorithms for Delineating Clinical Target Volume and Organs at Risk Involving Data for 125 Chinese Cervical Cancer Patients. J Appl Clin Med Phys 21(12)272–279(2020).

  7. Guo Y, Mao L, Zhang G, Chen Z, Pei X, Xu XG. Conceptual Design and Preliminary Results of a VR-based Radiation Safety Training System for Interventional Radiologists. Radiat Prot Dosimetry 190(1) 58-61(2020).




2019年

  1. Huo W, Zwart T, Cooley J, Huang K, Finley C, Jee KW, Sharp G, Rosenthal S, Xu XG, Lu HM. A single detector energy-resolved proton radiography system: a proof of principle study by Monte Carlo simulations. Phys Med Biol 64(025016) (2019).

  2. Huo W, Pi Y, Feng M, Qi Y, Gao Y, Caracappa P.F, Chen Z, Xu XG. VirtualDose-IR: A cloud-based software for reporting organ doses in interventional radiology. Phys Med Biol, 64(9):095012 (2019).

  3. Zhou J, Peng Z, Song Y, Pei X, Sheng L, Wu A, Zhang H, Qian L, Xu XG. The study of prostate automatic treatment planning based on DVH Prediction model of Organs At Risk. Chinese Journal of Radiation Oncology 28(7):536-542 (2019)

  4. Mao L, Liu C, Pei X, Xu XG. Impact of MRI fringe magnetic field on radiation beam characteristics of electron guns in real time MRI-guided radiotherapy. Chinese Journal of Medical Imaging Technology 35(3):433-438 (2019).

  5. Mao L, Liu H, Yang L, Pei X, Xu XG. Research progresses of MRI-guided radiotherapy equipment. Chinese Journal of Medical Imaging Technology 35(4):605-609 (2019).

  6. Mao L, Liu T, Caracappa PF, Lin H, Gao Y, Dauer LT, Xu XG. Influences of Operator Head Posture and Protective Eyewear on Eye Lens Doses in Interventional Radiology: a Monte Carlo Study. Med Phys 46(6):2744-2751 (2019).

  7. Suleiman SA, Qi Y, Chen Z, Xu XG. Monte Carlo Study of Organ Doses And Related Risk For Cancer In Tanzania From Scattered Photons In Cervical Radiation Treatment Involving Co-60 Source. Physica Medica 62:13-19 (2019).

  8. Gao Y, Mahmood U, Liu T, Gollub M, Xu XG, Dauer LT. Patient Specific Organ and Effective Dose Estimates in Adult Oncology Computed Tomography. American Journal of Roentgenology, 1-9. 10.2214/AJR.19.21197 (2019).

  9. Liu H, Li Z, Slopsema R, Hong L, Pei X, Xu XG. TOPAS Monte Carlo Simulation for Double Scattering Proton Therapy and Dosimetric Evaluation. Physica Medica 62:53-62 (2019).

  10. Peng Z, Shan H, Liu T, Pei X, Wang G, Xu XG. MCDNet – a denoising convolutional neural network to accelerate Monte Carlo radiation transport simulations: A proof of principle with patient dose from X-ray CT Imaging. IEEE Access V7: 76680 – 76689 (2019).

  11. Peng Z, Shan H, Liu T, Pei X, Zhou J, Wang G, Xu XG. Deep learning for accelerating Monte Carlo radiation transport simulation in intensity-modulated radiation therapy. arXiv:1910.07735 (2019).




2018年

  1. Pi Y, Liu T, Xu X G. Development Of A Set Of Mesh-based And Age-dependent Chinese Phantoms And Application For Ct Dose Calculations. Radiation protection dosimetry[J], 2018, 179(4): 370-382.

  2. 皮一飞,吴茜,裴曦,徐榭.基于掩膜优化的多模态医学图像刚性配准[J].中国医学物理学杂志[J],2018,35(9):1022-1029.

  3. Pan L, Yu G, Chen Z, Sheng L, Xu XG. A modified sampling preparation method for rapid determination of Pb-210 radioactivity in plants in China using crown ether and liquid scintillation counting of beta particles[J]. Journal of Radioanalytical and Nuclear Chemistry, 2018: 1-6.

  4. Zhang L, Wang Z, Shi C, et al. The impact of robustness of deformable image registration on contour propagation and dose accumulation for head and neck adaptive radiotherapy[J]. Journal of applied clinical medical physics, 2018.

  5. 刘红冬,阳露,裴曦,陈志,徐榭.几种不同材料降能器对200MeV质子放疗特性的蒙特卡罗模拟[J]. 原子核物理评论, 2018, 35(1):78-84.




2017年

  1. 冯铓,霍万里,皮一飞,熊壮,高佚名,陈志,徐榭. 介入治疗患者辐射剂量评估软件包VirtualDose-IR的开发[J]. 中华放射医学与防护杂志,2017 , 37 (1)

  2. 蒋帅,陈志,徐榭. CFETR氚增殖包层活化计算分析[J]. 核聚变与等离子体物理,2017 , 37 (1)

  3. 郑芳,陈志,徐榭. 电子辐照加速器屏蔽墙中预埋管道倾角对辐射防护性能影响的蒙卡计算[J]. 辐射防护,2017 , 37 (1) :27-33




2016年

  1. Chen Z, Qiao S, Jiang S, Xu XG. Activation calculation and radiation analysis for China Fusion Engineering Test Reactor. Fusion Engineering & Design,2016,109-111:290-293

  2. Jiang S, Chen Z, Xu XG. Activation Calculation and Analysis for CFETR Blanket[J]. International Journal of Magnetism & Nuclear Science (IJMN),2016, 2(1): 6-10

  3. Liang B, Gao Y, Chen Z, Xu XG. Evaluation of Effective Dose from CT Scans for Overweight and Obese Adult Patients Using the VirtualDose Software[J]. Radiation Protection Dosimetry, 2016.

  4. 石夏青,於国兵,顾先宝,张瑜,赵俊,陈志,徐榭. 辐射监测气溶胶制样方法测试对比[J]. 核技术,2016,39(3):27-32

  5. 谭华艳,於国兵,顾先宝,石夏青,祝小惠,陈志,徐榭. 辐射监测气溶胶滤材过滤效率测试[J]. 核电子学与探测技术,2016, 36(5)

  6. 王磊, 刘红冬, 陈志,徐榭. 核电站操作与辐射剂量的虚拟现实仿真研究[J]. 计算机工程与应用, 2016, 52(20):263-270

  7. 王遥,霍万里,熊壮,高佚民,徐榭. TACE手术中不同站姿下铅眼镜和铅面罩对医生眼晶状体防护效果的蒙特卡洛模拟比较[J]. 中国医学物理学杂志,2016,33(6)

  8. 汪志, 张练, 石成玉,徐榭,陈志,龙腾飞,罗薇薇,唐虹,王凡. 头颈部肿瘤自适应放疗中不同治疗方案的剂量学比较[J]. 中国医学物理学杂志, 2016, 33(10):982-986

  9. 祝小惠,於国兵,闻德运,谭华艳,徐榭,陈志. 微波消解法快速测定气溶胶中~(210)Po[J]. 核电子学与探测技术,2016,36(2)

  10. 朱学俊,霍万里,梁保辉,陈志,徐榭. 腹部CT扫描中各因素对受检者有效剂量的影响[J]. 中国医学物理学杂志,2016,33(3):252-257




2015年

  1. Chen Y, Li Y, Li W, He L. Theoretical analysis of BLM system for HLS II[J]. Chinese Physics C,2015, 39(1): 017003

  2. Ding A, Gao Y, Liu H, Caracappa P, Long D, Bolch W, Liu B, Xu XG. VirtualDose: a software for reporting organ doses from CT for adult and pediatric patients. Physics in Medicine and Biology,2015,60(14):5601-5625

  3. He L, Li Y, Li W, Chen Y, Ren G. Decommissioning Analysis of the Scrapers in the NSRL Linac Using Depth Profiling[J]. Nuclear Science and Techniques,2015,26: 060103

  4. 霍万里,吴爱东,陈志,徐榭. APBI治疗过程中身体主要器官吸收剂量的蒙特卡洛模拟[J]. 中国医学物理学杂志,2015,32(2)

  5. 雷洁瑛,陈志,李珏忻,於国兵,顾先宝,徐榭. 3MeV电子辐照加速器主厅内漂移管周围辐射场分析[J]. 核技术,2015,38(2):20201-020201

  6. 梁保辉,刘海宽,陈志,徐榭. 基于VirtualDose模拟不同CT扫描方案的儿童眼晶体剂量[J]. 中国医学物理学杂志,2015,32(2)




2014年

  1. 陈志. 核辐射--勿需害怕,但须小心. 世界环境,2014,Vol.143,No.3,46-47

  2. 潘灵婧,陈志,於国兵,陈乐,闻德运,徐榭. 快速测量多β放射性核素液态样品中活度的方法研究[J]. 核电子学与探测技术,2014,(7)812-815

  3. 宋欢,陈志,雷洁瑛,蒋帅. CFETR堆体活化计算与分析. 核聚变与等离子体物理,2014,34(3)235-239




2013年之前(含2013年)

  1. Matsuyama M, Chen Z, Nisimura K, Akamarua S, Torikai Y, Hatano Y, Ashikawa N, Oya Y, Okuno K, Hino T. Trapping and depth profile of tritium in surface layers of metallic materials. Journal of Nuclear Materials,2011,417(1):900-903

  2. 段宗锦,李裕熊,任广益,何丽娟,李裕熊,陈志. 10MeV辐照型电子直线加速器迷道出口处的优化设计. 核技术,2013,36(11)13-17

  3. 钱程,陈志,马鸿义,武启,张文慧,王云,杨尧,方兴,孙良亭,张雪珍,张子民,刘占稳,赵卫红. 2.45GHz ECR离子源的微波阻抗匹配. 原子核物理评论,2013,30(1)32-37

  4. 王云,陈志,赵卫红,赵阳阳,孙良亭,杨尧,钱程,武启,马鸿义,张文慧,张子民,张雪珍,刘占稳. 强流ECR离子源引出系统研究. 原子核物理评论,2013,30(2)141-146

  5. 阎明洋,陈志,王遥,李裕熊,於国兵,顾先宝. 3MeV电子辐照加速器通风管道辐射场计算. 核技术,2013,36(8)31-36



部分文章下载链接:

介入治疗患者辐射剂量评估软件包VirtualDose-IR的开发.pdf

电子辐照加速器屏蔽墙中预埋管道倾角对辐射防护性能影响的蒙特卡罗计算.pdf

辐射监测气溶胶滤材过滤效率测试.pdf

APBI治疗过程中身体主要器官吸收剂量的蒙特卡洛模拟.pdf

TACE手术中不同站姿下铅眼镜和铅面罩对医生眼晶状体防护效果的蒙特卡洛模拟比较.pdf 基于VirtualDose模拟不同CT扫描方案的儿童眼晶体剂量.pdf

头颈部肿瘤自适应放疗中不同治疗方案的剂量学比较.pdf

基于TOPAS计算的磁场下质子辐射剂量分析.pdf

腹部CT扫描中各因素对受检者有效剂量的影响.pdf

EVALUATION OF SECONDARY DOSE AND CANCER RISK FOR.pdf



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