Abstract
Remote consultation and diagnosis platform has been widespread in market for group diagnosis, education and etc. It provides convenience for people enjoying superior quality of medical service. However, most of platforms cannot meet increasing demands in practice. The most important reason is that they have troubles of navigating in complicated Internet condition. In general, remote rendering is preferred to support data transmission, by which server renders images locally, captures screenshot and delivers them to clients synchronously. As a result of neighborhood DICOM slices serving a high similarity, following frame is compressed according to the difference with last one. Even though necessary demand of bandwidth has been reduced a lot, remaining volume proves too large especially remote 3D volume rendering. In this paper, we proposed a novel method bit difference compression transmission. Compared with traditional algorithm, it redesigns a new data structure, which gives more significances to bit. Consequently, demands of network fall into a desirable amount. Specifically, we improved solution of 3D images sharing and collaboration. Instead of terrible screenshots, synchronization of cameras in clients has been introduced. With a minimal cost our platform realized the cumbersome process. Collected data from experiments demonstrated our proposed methods have an obvious superiority and run robust in different environment of Internet.
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References
Adewale, O.S.: An internet-based telemedicine system in Nigeria. Int. J. Inf. Manage. 24(3), 221–234 (2004)
Arka, I.H., Chellappan, K.: Collaborative compressed i-cloud medical image storage with decompress viewer. Proc. Comput. Sci. 42, 114–121 (2014)
Bernabé, G., García, J.M., González, J.: A lossy 3D wavelet transform for high-quality compression of medical video. J. Syst. Softw. 82(3), 526–534 (2009)
Cooke Jr, R.E., Gaeta, M.G., Kaufman, D.M., Henrici, J.G.: Picture archiving and communication system, US Patent 6,574,629, 3 June 2003
Doi, K.: Diagnostic imaging over the last 50 years: research and development in medical imaging science and technology. Phys. Med. Biol. 51(13), R5 (2006)
Dong, L.X.G.C.L., Yunshan, C.: Carrying out extension and popularization of agricultural technology to promote sustainable development of rural economy, based on investigation and analysis of extension and popularization of agricultural technology in Anhui province. Manage. Agric. Sci. Technol. 1, 024 (2010)
Dragan, D., Ivetić, D.: Request redirection paradigm in medical image archive implementation. Comput. Methods Programs Biomed. 107(2), 111–121 (2012)
Erickson, B.J.: Irreversible compression of medical images. J. Digital Imaging 15(1), 5–14 (2002)
He, L., Ming, X., Liu, Q.: A medical application integrating remote 3D visualization tools to access picture archiving and communication system on mobile devices. J. Med. Syst. 38(4), 44 (2014)
He, L., Xu, L., Ming, X., Liu, Q.: A web service system supporting three-dimensional post-processing of medical images based on wado protocol. J. Med. Syst. 39(2), 6 (2015)
Johnson, P.T., Zimmerman, S.L., Heath, D., Eng, J., Horton, K.M., Scott, W.W., Fishman, E.K.: The ipad as a mobile device for CT display and interpretation: diagnostic accuracy for identification of pulmonary embolism. Emerg. Radiol. 19(4), 323–327 (2012)
Junping, Z., Zhenjiang, Z., Huayuang, G., Yi, L., Wanguo, X., Yunqi, C.: E-health in China, our practice and exploration. In: Engineering in Medicine and Biology Society, 2009. EMBC 2009, Annual International Conference of the IEEE, pp. 4888–4893. IEEE (2009)
Kammerer, F.J., Hammon, M., Schlechtweg, P.M., Uder, M., Schwab, S.A.: A web based cross-platform application for teleconsultation in radiology. J. Telemed. Telecare 21, 1357633X15575237 (2015)
Mei, Z., Zirong, Y.: Design of epidemic monitoring platform based on ArcGIS. In: 14th International Symposium on Distributed Computing and Applications for Business Engineering and Science (DCABES), 2015, pp. 380–383. IEEE (2015)
Mitchell, J.R., Sharma, P., Modi, J., Simpson, M., Thomas, M., Hill, M.D., Goyal, M.: A smartphone client-server teleradiology system for primary diagnosis of acute stroke. J. Med. Internet Res. 13(2), e31 (2011)
Panayides, A., Antoniou, Z.C., Mylonas, Y., Pattichis, M.S., Pitsillides, A., Pattichis, C.S.: High-resolution, low-delay, and error-resilient medical ultrasound video communication using H. 264/AVC over mobile wimax networks. IEEE J. Biomed. Health Inform. 17(3), 619–628 (2013)
Panayides, A., Pattichis, M.S., Pattichis, C.S., Loizou, C.P., Pantziaris, M., Pitsillides, A.: Atherosclerotic plaque ultrasound video encoding, wireless transmission, and quality assessment using H. 264. IEEE Trans. Inf. Technol. Biomed. 15(3), 387–397 (2011)
Qiao, L., Li, Y., Chen, X., Yang, S., Gao, P., Liu, H., Feng, Z., Nian, Y., Qiu, M.: Medical high-resolution image sharing and electronic whiteboard system: a pure-web-based system for accessing and discussing lossless original images in telemedicine. Comput. Methods Programs Biomed. 121(2), 77–91 (2015)
Renambot, L., Rao, A., Singh, R., Jeong, B., Krishnaprasad, N., Vishwanath, V., Chandrasekhar, V., Schwarz, N., Spale, A., Zhang, C., et al.: Sage: the scalable adaptive graphics environment. In: Proceedings of WACE, vol. 9, pp. 2004–2009. Citeseer (2004)
Shen, H., Ma, D., Zhao, Y., Sun, H., Sun, S., Ye, R., Huang, L., Lang, B., Sun, Y.: Miaps: a web-based system for remotely accessing and presenting medical images. Comput. Methods Programs Biomed. 113(1), 266–283 (2014)
Tachakra, S., Wang, X., Istepanian, R.S., Song, Y.: Mobile e-health: the unwired evolution of telemedicine. Telemed. J. E-health 9(3), 247–257 (2003)
Tian, Y., Cai, W., Sun, J., Zhang, J.: A novel strategy to access high resolution DICOM medical images based on JPEG2000 interactive protocol. In: Medical Imaging, p. 691912. International Society for Optics and Photonics (2008)
Verhoeven, F., van Gemert-Pijnen, L., Dijkstra, K., Nijland, N., Seydel, E., Steehouder, M.: The contribution of teleconsultation and videoconferencing to diabetes care: a systematic literature review. J Med. Internet Res. 9(5), e37 (2007)
Xu, Y., Mao, S.: A survey of mobile cloud computing for rich media applications. IEEE Wireless Commun. 20(3), 46–53 (2013)
Yoo, J.c.: Remote-medical-diagnosis system method, US Patent 8,630,867, 14 January 2014
Yu, Z.w., Zhou, G.h., Wang, B.: Analysis on the starting point and path of informatization in the underdeveloped rural areas: a survey of 52 undeveloped rural villages of ningbo. In: Advances in Computer Science and Education Applications, pp. 217–224. Springer (2011)
Acknowledgments
This research was supported in part by the Grant-in Aid for Scientific Research from the Japanese Ministry for Education, Science, Culture and Sports (MEXT) under the Grant No. 16H01436, in part by the MEXT Support Program for the Strategic Research Foundation at Private Universities (2013–2017).
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Deng, Z., Chen, Yw., Zhu, Z., Li, Y., Li, H., Wang, Y. (2019). Advanced Transmission Methods Applied in Remote Consultation and Diagnosis Platform. In: De Pietro, G., Gallo, L., Howlett, R., Jain, L., Vlacic, L. (eds) Intelligent Interactive Multimedia Systems and Services. KES-IIMSS-18 2018. Smart Innovation, Systems and Technologies, vol 98. Springer, Cham. https://doi.org/10.1007/978-3-319-92231-7_24
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DOI: https://doi.org/10.1007/978-3-319-92231-7_24
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