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J. Huang, Ling, A., Summers, R. M., and Yao, J., Integration of PACS and CAD systems using DICOMDIR and open-source tools, p. 86740V-86740V-6, 2013.
J. Hsieh, Honda, A. F., Suárez-Fariñas, M., C Samson, M., Kedhar, S., Mauro, J., Francis, J., Badamo, J., Diaz, V. A., Kempen, J. H., and Latkany, P. A., Fundus image diagnostic agreement in uveitis utilizing free and open source software., Can J Ophthalmol, vol. 48, no. 4, pp. 227-34, 2013.
O. Horlacher, Nikitin, F., Alocci, D., Mariethoz, J., Müller, M., and Lisacek, F., MzJava: An open source library for mass spectrometry data processing., J Proteomics, 2015.
M. A. Hogarth and Turner, S., A study of clinically related open source software projects., AMIA Annu Symp Proc, pp. 330-4, 2005.
R. Hoermann, Midgley, J. E. M., Larisch, R., and Dietrich, J. W., Is pituitary TSH an adequate measure of thyroid hormone-controlled homoeostasis during thyroxine treatment?, Eur J Endocrinol, vol. 168, no. 2, pp. 271-80, 2013.
C. L. Hitchcock, The future of telepathology for the developing world., Arch Pathol Lab Med, vol. 135, no. 2, pp. 211-4, 2011.
M. T. Hirschmann, Wagner, C. R., Rasch, H., and Henckel, J., Standardized volumetric 3D-analysis of SPECT/CT imaging in orthopaedics: overcoming the limitations of qualitative 2D analysis., BMC Med Imaging, vol. 12, no. 1, p. 5, 2012.
M. C. Hiner, Rueden, C. T., and Eliceiri, K. W., {SCIFIO}: an extensible framework to support scientific image formats, BMC bioinformatics, vol. 17, p. 521, 2016.
R. Herrick, Horton, W., Olsen, T., McKay, M., Archie, K. A., and Marcus, D. S., XNAT Central: Open sourcing imaging research data., Neuroimage, 2015.
M. Herrick, TriSano: Collaborating for the Good of Global Public Health, Open Source Business Resource, 2010.
T. Herman, Marcelo, A., Marcelo, P., and Maramba, I., Linking primary care information systems and public health vertical programs in the Philippines: an open-source experience., AMIA .. Annual Symposium proceedings / AMIA Symposium. AMIA Symposium, pp. 311-5, 2005.
K. Henttonen, Libre Software as an Innovation Enabler in India Experiences of a Bangalorian Software SME, in Open Source Systems: Grounding Research, vol. 365, S. Hissam, Russo, B., de Mendonça Neto, M., and Kon, F., Eds. Springer Boston, 2011, pp. 220-232.
E. Helms and Williams, L., Evaluating access control of open source electronic health record systems, in Proceeding of the 3rd workshop on Software engineering in health care, New York, NY, USA, 2011, pp. 63–70.
O. Heinze, Brandner, A., and Bergh, B., Establishing a personal electronic health record in the Rhine-Neckar region., Studies in health technology and informatics, vol. 150, p. 119, 2009.
J. M. Heilman, Kemmann, E., Bonert, M., Chatterjee, A., Ragar, B., Beards, G. M., Iberri, D. J., Harvey, M., Thomas, B., Stomp, W., Martone, M. F., Lodge, D. J., Vondracek, A., de Wolff, J. F., Liber, C., Grover, S. C., Vickers, T. J., Meskó, B., and Laurent, M. R., Wikipedia: a key tool for global public health promotion., Journal of medical Internet research, vol. 13, no. 1, p. e14, 2011.
H. Hara, Hori, T., Sugahara, K., and Yamashita, H., Surgical planning of Isshiki type I thyroplasty using an open-source Digital Imaging and Communication in Medicine viewer OsiriX., Acta Otolaryngol, vol. 134, no. 6, pp. 620-5, 2014.
T. J. Hannan, Solving a Health Information Management Problem. An international success story., World Hosp Health Serv, vol. 51, no. 2, pp. 32-5, 2015.
M. Hanke, Halchenko, Y. O., Sederberg, P. B., Olivetti, E., Fründ, I., Rieger, J. W., Herrmann, C. S., Haxby, J. V., Hanson, S. J., and Pollmann, S., PyMVPA: A Unifying Approach to the Analysis of Neuroscientific Data., Frontiers in neuroinformatics, vol. 3, p. 3, 2009.
M. Hanke, Halchenko, Y. O., Sederberg, P. B., Hanson, S. J., Haxby, J. V., and Pollmann, S., PyMVPA: A python toolbox for multivariate pattern analysis of fMRI data., Neuroinformatics, vol. 7, no. 1, pp. 37-53, 2009.
J. D. Halamka, Mandl, K. D., and Tang, P. C., Early experiences with personal health records., Journal of the American Medical Informatics Association : JAMIA, vol. 15, no. 1, pp. 1-7, 2008.
M. Hagland, A glass slipper? For cash-strapped organizations with EMR dreams, open-source software may be a perfect fit., Healthcare informatics : the business magazine for information and communication systems, vol. 26, pp. 32–36, 2009.
M. S. Hadlich, Oliveira, G. M. M., Feijóo, R. A., Azevedo, C. F., Tura, B. R., Ziemer, P. G. P., Blanco, P. J., Pina, G., Meira, M., and de Souza E Silva, N. A., Free and open-source software application for the evaluation of coronary computed tomography angiography images., Arq Bras Cardiol, 2012.
T. Hackländer, Martin, J., and Kleber, K., Informatics in radiology (infoRAD): an open source framework for modification and communication of DICOM objects., Radiographics : a review publication of the Radiological Society of North America, Inc, vol. 25, no. 6, pp. 1709-21, 2005.
B. Haarbrandt, Tute, E., and Marschollek, M., Automated population of an i2b2 clinical data warehouse from an {openEHR}-based data repository, Journal of Biomedical Informatics, vol. 63, pp. 277–294, 2016.
D. Haak, Page, C. - E., Reinartz, S., Krüger, T., and Deserno, T. M., DICOM for Clinical Research: PACS-Integrated Electronic Data Capture in Multi-Center Trials., J Digit Imaging, 2015.