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Biomedical subjects

P O Forsgren

Publications and source records attributed to P O Forsgren.

3 recordsLinked to original sources

Visualization and coding in three-dimensional image processing.

A system for calculating orthographic views of three-dimensional objects from a confocal microscope has been implemented in a high-level language. It is used on a regular basis in a number of projects and on different computers. The system enables the user to filter the original data and make a selection of which points and parts of the objects to show in a projective view. The information to be shown is coded in a compact format that is well suited for projection calculations. Several display principles were implemented that enhance different aspects of the objects.

Animals

Computerized assessment of radiological changes of the hand in rheumatic diseases.

Evaluations of radiological changes in rheumatic diseases are subject to great inconsistency. In this study, digital image analysis is shown to be a promising tool in the evaluation of joint space narrowing. The repeatability of the measurements is shown to be better than that of manual methods and is also less dependent on the observer.

Aged

Applications of a computerized adjustable brain atlas in positron emission tomography.

A computerized brain atlas, adjustable to the patient's anatomy, has been developed. It is primarily intended for use in positron emission tomography (PET), but may also be employed in other fields utilizing neuro-imaging, such as stereotactic surgery. The atlas is based on anatomic information obtained from digitized cryosectioned cadaver brains. It can be adjusted to fit a wide range of individual brains with reasonable accuracy. The corresponding transformation is chosen so that the modified atlas agrees with a set of CT or MR images of the patient. The computerized atlas can be used to facilitate and improve the quantification and evaluation of PET data by: enabling the merging and comparison of results from different individuals or groups of individuals; serving as a vehicle in the comparison of different examinations of the same patient, thus reducing the need of reproducible fixation systems; supplying external information to be used in the image reconstruction, such as proper three-dimensional regions of interest; improving the attenuation and scatter corrections; helping to select suitable patient orientation during the PET study. By applying the inverse atlas transformation to the PET data volume it is possible to relate the PET information to the anatomy of the reference atlas. Reformatted PET data from different patients can thus be averaged, and averages from different categories of patients can be compared. The method will facilitate the identification of statistically significant differences in the PET information from different groups of patients.

Brain