Dec 1999· IEEE Pulse· Vol 2, pp. 60-70· 397 citations· ⚡ 29 influential· 44 references
ChemistryMathematicsComputer Science
Abstract
Since the discovery of the X-ray radiation by Wilhelm Conrad Roentgen in 1895, the field of medical imaging has developed into a huge scientific discipline. The analysis of patient data acquired by current image modalities, such as computerized tomography (CT), magnetic resonance tomography (MRT), positron emission tomography (PET), or ultrasound (US), offers previously unattained opportunities for diagnosis, therapy planning, and therapy assessment. Medical image processing is essential to leverage this increasing amount of data and to explore and present the contained information in a way suitable for the specific medical task. In this tutorial, we will approach the analysis and visualization of medical image data in an explorative manner. In particular, we will visually construct the image processing algorithms using the popular graphical data-flow builder MeVisLab, which is available as a free download for noncommercial research. We felt that it could be more interesting for the reader to see and explore examples of medical image processing that go beyond simple image enhancements. The part of exploration, to inspect medical image data and experiment with image-processing pipelines, requires software that encourages this kind of visual exploration.
Medical scenes and images often display degradations caused by poor light and inappropriate angles. These deteriorations impact diagnostic tasks as well as visual effects. X-ray is the more common imaging clinical for checking out and healing the human inner parts. The X-ray images have particular challenges...
Kawther Seaad· International Journal of Adv...· 0 citations
In the future, MRI is expected to achieve breakthroughs by combining artificial intelligence, developing new contrast agents, and upgrading hardware, further expanding its applications in the medical field.
Jun-Wen Chen, Xin-Yi Liu, Yanghongyu Qian et al.· 0 citations
Human structural imaging methods such as Computed Tomography (CT) and Magnetic Resonance Imaging (MRI) are essential to modern clinical medicine. These non-invasive tools allow doctors to clearly observe hidden internal organs, bones, and soft tissues, greatly improving diagnosis rate and survival rate. Detailed struct...
Wen-Hao Li· International Journal of Pub...· 0 citations