孫加源(兼職)
孫加源教授,主任醫師,醫學博士☺️,博士生和博士後導師。現任意昂4平台醫意昂4和意昂4体育平台博導、意昂4平台醫意昂4胸科醫院呼吸與危重症醫學科常務副主任、呼吸內鏡中心主任、呼吸介入中心主任👩🦽、上海呼吸內鏡工程技術研究中心主任。
2007年獲得復旦大學醫學博士學位,曾赴日本聖瑪利亞大學🌝👴🏿、日本國立癌症中心、美國華盛頓大學醫意昂4等進修支氣管內超聲技術、肺外周病變診斷技術、經支氣管鏡肺減容技術🧑🚒。自2014年起擔任上海交大醫意昂4本科生及研究生教學與指導工作,獲意昂4平台醫意昂4研究生課程建設項目“醫學圖像人工智能分析理論和實踐”1項⚰️。
現任中華醫學會呼吸病學分會第十一屆委員會青年委員會副主任委員、中華醫學會呼吸病學分會第十一屆委員會介入呼吸病學學組副組長🧑🏽🚒、中國人體健康科技促進會第一屆呼吸介入專業委員會主任委員、中國醫藥教育協會介入微創呼吸分會候任主任委員;2017年起擔任德國海德堡大學附屬胸科醫院客座教授🚣🏻♀️。擔任Endoscopic Ultrasound雜誌編委、Respiration雜誌編委🫸、Frontiers in Oncology雜誌副編輯🦹🏻、中華結核和呼吸雜誌通訊編委。
作為項目負責人主持國家重點研發計劃🥀、國家自然基金等縱向課題20余項,以第一或通訊作者發表SCI論文60篇,主編專著1部🍄、教學錄像2部,主譯專著1部,負責或執筆製定共識6項,以第一發明人授權發明專利5件👩🏿🎨、實用新型24件、軟件著作權3件。先後獲上海市衛生計生系統優秀學科帶頭人、全國優秀中青年呼吸醫師、上海市優秀技術帶頭人、上海醫學科技獎二等獎兩次等榮譽和獎項。
1、呼吸病介入診療技術及醫學圖像處理
2🤟🏻、肺癌和慢性氣道炎症性疾病的基礎🏃🏻♂️、臨床和轉化研究
1🔤🦸♀️、國家重點研發計劃項目“基於國產電磁導航系統的早期肺癌精準診療技術集成解決方案研究”,2017-07至2020-12⛔️🙈,項目負責人。
2、上海市科學技術委員會工程技術研究中心建設專項“上海呼吸內鏡工程技術研究中心”,2018-11-01至2020-10-30👩👩👧,項目負責人。
3、國家自然科學基金委員會面上項目“基於支氣管內超聲多模態影像的胸內良惡性淋巴結預測模型研究”👩🏼🔬,2019-01至2022-12,項目負責人⛸。
4🍏、上海市胸科醫院多學科協同臨床研究創新項目“人工智能在呼吸內鏡中的臨床應用和轉化研究”,2019-01至2021-12🤭,項目負責人。
5、意昂4平台“交大之星”計劃醫工交叉研究基金,新型冠狀病毒防治攻關專項“新型冠狀病毒肺炎診療氣管鏡機器人研發和應用”👨🏿⚕️,2020-02至2021-02,項目負責人👩🏽✈️。
6🧜🏻♂️、上海市科學技術委員會“科技創新行動計劃”生物醫藥科技支撐專項項目“用於肺結節精準診療的氣管鏡機器人實驗室樣機研發”,2020-10-01至2023-09-30,項目負責人。
7、上海微創智領醫療科技有限公司醫工合作項目“肺結節經支氣管導航和定位關鍵技術研究”⛺️,2022-07-01至2024-06-30💏,項目負責人。
[1]Li Y, Zheng X, Xie F, Ye L, Bignami E, Tandon YK, Rodríguez M, Gu Y, Sun J. Development and validation of the artificial intelligence (AI)-based diagnostic model for bronchial lumen identification. Transl Lung Cancer Res. 2022;11(11):2261-2274.
[2]Xie F, Zhang Q, Liu S, Yan L, Zhou Y, Sun J. Learning curve of a robotic-assisted bronchoscopy system in sampling peripheral pulmonary nodules. Chin Med J (Engl). 2022;135(22):2753-2755.
[3]Zheng X, Zhong C, Xie F, Li S, Wang G, Zhang L, Sun J. Virtual bronchoscopic navigation and endobronchial ultrasound with a guide sheath without fluoroscopy for diagnosing peripheral pulmonary lesions with a bronchus leading to or adjacent to the lesion: A randomized non-inferiority trial. Respirology. 2022. doi: 10.1111/resp.14405.
[4]Yu W, Zheng H, Gu Y, Xie F, Yang J, Sun J, Yang GZ. TNN: Tree Neural Network for Airway Anatomical Labeling. IEEE Trans Med Imaging. 2022. doi: 10.1109/TMI.2022.3204538.
[5]Gu Y, Gu C, Yang J, Sun J, Yang GZ. Vision-Kinematics-Interaction for Robotic-Assisted Bronchoscopy Navigation. IEEE Trans Med Imaging. 2022;41(12):3600-3610.
[6]Zhi X, Sun X, Chen J, Wang L, Ye L, Li Y, Xie W, Sun J. Combination of 18F-FDG PET/CT and convex probe endobronchial ultrasound elastography for intrathoracic malignant and benign lymph nodes prediction. Front Oncol. 2022;12:908265.
[7]Zheng X, Cao L, Zhang Y, Xie F, Yang H, Liu J, Qu S, Zhang J, Sun J. A Novel Electromagnetic Navigation Bronchoscopy System for the Diagnosis of Peripheral Pulmonary Nodules: A Randomized Trial. Ann Am Thorac Soc. 2022;19(10):1730-1739.
[8]Xu M, Chen J, Li J, Zhi X, Dai W, Sun J, Xiong H. Automatic Representative Frame Selection and Intrathoracic Lymph Node Diagnosis With Endobronchial Ultrasound Elastography Videos. IEEE J Biomed Health Inform. 2022. doi: 10.1109/JBHI.2022.3152625.
[9]Sun J, Criner GJ, Dibardino D, Li S, Nader D, Lam B, Kopas L, Wahidi MM, Majid A, Marron R, Verga S, Herth FJF. Efficacy and safety of virtual bronchoscopic navigation with fused fluoroscopy and vessel mapping for access of pulmonary lesions. Respirology. 2022;27(5):357-365.
[10]Zheng X, Yuan H, Gu C, Yang C, Xie F, Zhang X, Xu B, Sun J. Transbronchial lung parenchyma cryoablation with a novel flexible cryoprobe in an in vivo porcine model. Diagn Interv Imaging. 2022;103(1):49-57.
[11]Zheng H, Qin Y, Gu Y, Xie F, Yang J, Sun J, Yang GZ. Alleviating Class-wise Gradient Imbalance for Pulmonary Airway Segmentation. IEEE Trans Med Imaging. 2021;40(9):2452-2462.
[12]Zhi X, Li J, Chen J, Wang L, Xie F, Dai W, Sun J, Xiong H. Automatic Image Selection Model Based on Machine Learning for Endobronchial Ultrasound Strain Elastography Videos. Front Oncol. 2021;11:673775.
[13]Zhi X, Chen J, Wang L, Xie F, Zheng X, Li Y, Sun J. Endobronchial Ultrasound Multimodal Imaging for the Diagnosis of Intrathoracic Lymph Nodes. Respiration. 2021;100(9):898-908.
[14]Li J, Zhi X, Chen J, Wang L, Xu M, Dai W, Sun J, Xiong H. Deep learning with convex probe endobronchial ultrasound multimodal imaging: A validated tool for automated intrathoracic lymph nodes diagnosis. Endosc Ultrasound. 2021;10(5):361-371.
[15]Zhi X, Wang L, Chen J, Zheng X, Li Y, Sun J. Scoring model of convex probe endobronchial ultrasound multimodal imaging in differentiating benign and malignant lung lesions. J Thorac Dis. 2020;12(12):7645-7655.
[16]Zheng X, Wang L, Chen J, Xie F, Jiang Y, Sun J. Diagnostic value of radial endobronchial ultrasonographic features in predominant solid peripheral pulmonary lesions. J Thorac Dis. 2020;12(12):7656-7665.
[17]Yuan HB, Wang XY, Sun JY, Xie FF, Zheng XX, Tao GY, Pan L, Hogarth DK. Flexible bronchoscopy-guided microwave ablation in peripheral porcine lung: a new minimally-invasive ablation. Transl Lung Cancer Res. 2019;8(6):787-796.
[18]Zheng X, Yang C, Zhang X, Yuan H, Xie F, Li Y, Xu B, Herth FJF, Sun J. The Cryoablation for Peripheral Pulmonary Lesions Using a Novel Flexible Bronchoscopic Cryoprobe in the ex vivo Pig Lung and Liver. Respiration. 2019;97(5):457-462.
[19]Xie F, Zhang Y, Mao X, Zheng X, Han-Zhang H, Ye J, Zhao R, Zhang X, Sun J. Comparison of genetic profiles among primary lung tumor, metastatic lymph nodes and circulating tumor DNA in treatment-naïve advanced non-squamous non-small cell lung cancer patients. Lung Cancer. 2018;121:54-60.
[20] Mao X, Zhang Z, Zheng X, Xie F, Duan F, Jiang L, Chuai S, Han-Zhang H, Han B, Sun J. Capture-based targeted ultradeep sequencing in paired tissue and plasma samples demonstrates differential subclonal ctDNA-releasing capability in advanced lung cancer. J Thorac Oncol. 2017;12(4):663-672.郵箱地址⟹:sunjy1976@sjtu.edu.cn