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SnappySonic: An Ultrasound Acquisition Replay Simulator Cover

SnappySonic: An Ultrasound Acquisition Replay Simulator

Open Access
|Mar 2020

References

  1. Awesome ultrasound simulator. https://ultrasoundsimulator.com/ Accessed: 2019-05-14.
  2. coverage. https://coverage.readthedocs.io/en/v4.5.x/ Accessed: 2019-05-28.
  3. Gitlab. https://about.gitlab.com/ Accessed: 2019-05-21.
  4. Gitlab-ci. https://about.gitlab.com/product/continuous-integration/ Accessed: 2019-05-21.
  5. Javascript object notation. http://www.json.org/ Accessed: 2019-05-29.
  6. Medsim: Reality in ultrasound training. https://medsim.com/ Accessed: 2019-05-14.
  7. Northern digital. https://www.ndigital.com/ Accessed: 2019-05-14.
  8. Pep8. https://www.python.org/dev/peps/pep-0008/ Accessed: 2019-05-28.
  9. pip. https://pypi.org/project/pip/ Accessed: 2019-05-28.
  10. pylint. https://www.pylint.org/ Accessed: 2019-05-28.
  11. Pytest. https://docs.pytest.org/en/latest/ Accessed: 2019-05-28.
  12. Python packaging index. https://www.pypi.org/ Accessed: 2019-05-14.
  13. Scanbooster: World’s first realistic ultrasound simulator for iphone and ipad! https://www.scanbooster.com/ Accessed: 2019-05-14.
  14. Scantrainer. https://www.intelligentultrasoundsimulation.com/scantrainer/ Accessed: 2019-05-14.
  15. The sonosim ultrasound training solution. https://sonosim.com/ Accessed: 2019-05-14.
  16. sphinx. http://www.sphinx-doc.org/ Accessed: 2019-05-28.
  17. Surgical navigation platform in python. https://weisslab.cs.ucl.ac.uk/WEISS/PlatformManagement/SNAPPY Accessed: 2019-05-14.
  18. Torsosim on weisslab. https://weisslab.cs.ucl.ac.uk/WEISS/SoftwareRepositories/SNAPPY/scikit-surgerytorsosimulator/ Accessed: 2019-05-14.
  19. tox. https://tox.readthedocs.io/en/latest/ Accessed: 2019-05-28.
  20. Underwater, the ultrasound training game. https://www.sfinxgames.com/ Accessed: 2019-10-16.
  21. Weisslab. https://weisslab.cs.ucl.ac.uk/ Accessed: 2019-05-21.
  22. Beck: Test Driven Development: By Example. Boston, MA, USA: Addison-Wesley Longman Publishing Co., Inc., 2002.
  23. Bradski, G 2000 The OpenCV Library. Dr. Dobb’s Journal of Software Tools.
  24. Chan, W Y, Qin, J, Chui, Y P, Heng and P A 2012 A serious game for learning ultrasound-guided needle placement skills. IEEE transactions on information technology in biomedicine: a publication of the IEEE Engineering in Medicine and Biology Society, 16. DOI: 10.1109/TITB.2012.2204406
  25. Garrido-Jurado, S, Muñoz-Salinas, R, Madrid-Cuevas, F and Medina-Carnicer, R 2015 Generation of fiducial marker dictionaries using mixed integer linear programming. Pattern Recognition, 51. DOI: 10.1016/j.patcog.2015.09.023
  26. International Organization for Standardization: Medical device software – software life cycle processes, 2006.
  27. Lewiss, R E, Hoffmann, B, Beaulieu, Y and Phelan, M B 2014 Point-of-care ultrasound education. Journal of Ultrasound in Medicine, 33(1): 2732. DOI: 10.7863/ultra.33.1.27
  28. Orr, K, Hamilton, S, Clarke, R, Adi, M, Gutteridge, C, Suresh, P and Freeman, S 2019 The integration of transabdominal ultrasound simulators into an ultrasound curriculum. Ultrasound, 27(1): 2030. DOI: 10.1177/1742271X18762251
  29. Ourselin, S, Emberton, M and Vercauteren, T 2016 From computer-assisted intervention research to clinical impact: The need for a holistic approach. Medical Image Analysis, 33: 7278. 20th anniversary of the Medical Image Analysis journal (MedIA). DOI: 10.1016/j.media.2016.06.018
  30. Schroeder, W, Martin, K M and Lorensen, W E 1998 The Visualization Toolkit (2nd Ed.): An Object-oriented Approach to 3D Graphics. Upper Saddle River, NJ, USA: Prentice-Hall, Inc.
  31. Schroeder, W J, Ibanez, L and Martin, K M 2004 Software process: the key to developing robust, reusable and maintainable open-source software. In: 2004 2nd IEEE International Symposium on Biomedical Imaging: Nano to Macro (IEEE Cat No. 04EX821), 1: 648651. DOI: 10.1109/ISBI.2004.1398621
  32. Walt, S v d, Colbert, S C and Varoquaux, G 2011 The numpy array: A structure for efficient numerical computation. Computing in Science and Engg, 13(2): 2230. DOI: 10.1109/MCSE.2011.37
DOI: https://doi.org/10.5334/jors.289 | Journal eISSN: 2049-9647
Language: English
Submitted on: Aug 1, 2019
Accepted on: Mar 8, 2020
Published on: Mar 30, 2020
Published by: Ubiquity Press
In partnership with: Paradigm Publishing Services
Publication frequency: 1 issue per year

© 2020 Stephen Thompson, Thomas Dowrick, Goufang Xiao, João Ramalhinho, Maria Robu, Mian Ahmad, Dan Taylor, Matthew J. Clarkson, published by Ubiquity Press
This work is licensed under the Creative Commons Attribution 4.0 License.