PubMed Health⌕ Search

Biomedical subjects

Falko Kuester

Publications and source records attributed to Falko Kuester.

2 recordsLinked to original sources

Collaborative biomedical data exploration in distributed virtual environments.

Imaging techniques such as MRI, fMRI, CT and PET have provided doctors with a means to acquire high-resolution biomedical images that serve as the foundation for the diagnosis and treatment of diseases. Experts with a multitude of backgrounds, including radiologists, anatomists, psychiatrists and neuroscientists now collaboratively analyze the same images to extract a better understanding of the encoded information. Unfortunately, access to these specialists at the same physical location is not always possible and new tools and techniques are required to facilitate simultaneous and collaborative exploration of volumetric data between spatially separated domain experts. This paper presents CVMED, a collaborative visualization environment for volumetric biomedical data-sets, supporting heterogeneous hardware, rendering and display systems connected via heterogeneous networks. CVMED provides the user with the algorithms and tools for stereoscopic as well as monoscopic data visualization and annotation along with the middleware needed to exchange the resulting visuals between all participants in real-time.

Biomedical Technology↗

Hybrid-reality: collaborative biomedical data exploration exploiting 2-D and 3-D correspondence.

Doctors and radiologists are trained to infer and interpret three-dimensional information from two-dimensional images. Traditionally, they analyze sets of two-dimensional images obtained from imaging systems based on x-rays, computed tomography, and magnetic resonance. These images correspond to slices or projections to a single plane. With the resolution of the scanners increasing in all directions, so is the complexity of the data that can be used for diagnostic purposes. Using volume rendering techniques, massive stacks of image slices can be combined into a single image and important features stressed, increasing the doctor's ability to extract useful information from the image. A hybrid visualization approach combining 2D slices and 3D visuals is presented, drawing from the best features of both of these approaches. 2D slices emulate conventional medical images while 3D images provide additional information, such as better spatial location of the features in the surrounding structures as well as the 3D shape of features.

Diagnostic Imaging↗