Published 1989 | Version v1
Miscellaneous

A mathematical liver model and its application to system optimization and texture analysis

Description

This dissertation presents realistic mathematical models of normal and diseased livers and a nuclear medicine camera. The mathematical model of a normal liver is developed by creating a data set of points on the surface of the liver and fitting it to a truncated set of spherical harmonics. We model the depth-dependent MTF of a scintillation camera taking into account the effects of Compton scatter, linear attenuation, intrinsic detector resolution, collimator resolution, and Poisson noise. The differential diagnosis on a liver scan includes normal, focal disease, and diffuse disease. Object classes of normal livers are created by randomly perturbing the spherical harmonic coefficients. Object classes of livers with focal disease are created by introducing cold ellipsoids within the liver volume. Cirrhotic livers are created by modelling the gross morphological changes, heterogenous uptake, and decreased overall uptake. Simulated nuclear medicine images are made by projecting livers through nuclear imaging systems. The combination of object classes of simulated livers and models of different imaging systems is applied to imaging-system design optimization in a psycho-physical study. Human observer performance on simulated liver images made on nine different systems is compared to the Hotelling trace criterion (HTC). The system with the best observer performance is judged to be the best system. The correlation between the human performance metric da and the HTC for this study was 0.829, suggesting that the HTC may have value as a predictor of observer performance. Texture in a liver scan is related to the three-dimensional distribution of functional acini, which changes with disease. One measure of texture is the fractal dimension, related to the Fourier power spectrum. We measured the average radial power spectra of 70 liver scans

Availability note (English)

University Microfilms, PO Box 1764, Ann Arbor, MI 48106, Order No.90-14,666.

Additional details

Publishing Information

Publisher
Univ. of Arizona.
Imprint Place
Tucson, AZ (USA)
Imprint Pagination
176 p.

INIS

Country of Publication
United States
Country of Input or Organization
United States
INIS RN
22022919
Subject category
S62: RADIOLOGY AND NUCLEAR MEDICINE;
Resource subtype / Literary indicator
Thesis, Non-conventional Literature
Descriptors DEI
ATTENUATION; DIAGNOSIS; DIGESTIVE SYSTEM DISEASES; LIVER; MATHEMATICAL MODELS; OPTIMIZATION; PERFORMANCE; RADIOISOTOPE SCANNING; RESOLUTION; SCATTERING; SCINTILLATION COUNTING; SIMULATION
Descriptors DEC
BODY; COUNTING TECHNIQUES; DIGESTIVE SYSTEM; DISEASES; GLANDS; ORGANS