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Developing Clinically Relevant Aspects of the Nuss Procedure Surgical Simulator.

, , , , и . MMVR, том 196 из Studies in Health Technology and Informatics, стр. 51-55. IOS Press, (2014)

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Investigating the fidelity of an improvement-assessment tool after one vacuum bell treatment session., , , , и . SummerSim, стр. 68. Society for Computer Simulation International / ACM DL, (2016)Development and Validation of a Hybrid Nuss Procedure Surgical Simulator and Trainer., , и . IEEE Trans. Biomed. Eng., 68 (8): 2520-2528 (2021)Optical Imaging for Monitoring Pectus Excavatum Therapy., , и . BIBM, стр. 2728-2732. IEEE, (2021)Mobile Application for Measuring Pectus Excavatum Treatment Progress., , , и . BIBM, стр. 2949-2950. IEEE, (2022)A Design for Simulating and Validating the Nuss Procedure for the Minimally Invasive Correction of Pectus Excavatum., , , , , , и . MMVR, том 163 из Studies in Health Technology and Informatics, стр. 473-475. IOS Press, (2011)An Accurate and Efficient Instrument for Monitoring Chest Wall Therapy., , , , , и . BHI, стр. 1-5. IEEE, (2019)Developing Clinically Relevant Aspects of the Nuss Procedure Surgical Simulator., , , , и . MMVR, том 196 из Studies in Health Technology and Informatics, стр. 51-55. IOS Press, (2014)Evaluating Azure Kinect and Structure Mark-II 3D Surface Scanners for Clinical Chest Wall Deformity Assessment., , и . ANNSIM, стр. 1-12. IEEE, (2021)Statistical Chest Shape Modeling: Application to the Evaluation of Pectus Excavatum Treatment Outcomes., , , , и . BIBM, стр. 1959-1963. IEEE, (2020)Validation of an Objective Assessment Instrument for Non-Surgical Treatments of Chest Wall Deformities., , , , , и . MMVR, том 220 из Studies in Health Technology and Informatics, стр. 273-280. IOS Press, (2016)