1. SPET of a computerised model of diffuse lung disease
- Author
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Peter Chicco, John Magnussen, George J. Bautovich, Geoffrey Storey, Louise Emmett, Douglas W. Mackey, Vivienne Bush, and Hans Van der Wall
- Subjects
Adult ,Lung Diseases ,Male ,medicine.medical_specialty ,medicine.medical_treatment ,Lung volume reduction surgery ,Scintigraphy ,Models, Biological ,medicine ,Humans ,Lung transplantation ,Computer Simulation ,Radiology, Nuclear Medicine and imaging ,Emphysema ,Tomography, Emission-Computed, Single-Photon ,Lung ,medicine.diagnostic_test ,business.industry ,Respiratory disease ,General Medicine ,respiratory system ,medicine.disease ,respiratory tract diseases ,medicine.anatomical_structure ,Respiratory failure ,Orthopedic surgery ,Radiology ,Tomography ,Nuclear medicine ,business ,Monte Carlo Method - Abstract
Emphysema is a common and debilitating disease that is the commonest cause of end-stage respiratory failure. Treatment is either by lung transplantation or by lung volume reduction surgery (LVRS) that improves the biomechanics of respiration. Patient selection for LVRS hinges on the demonstration of heterogeneous disease, predominantly involving the upper lobes, as a good surgical outcome is most likely in these patients. We used a virtual model of lung scintigraphy to compare planar with tomographic scintigraphy for the detection of diffuse lung disease. Lesions of the magnitude of the lung acinus, as well as larger and smaller lesions, were distributed throughout the lungs in volumes from 2% to 50%. Single-photon emission tomography does not add incremental value to planar images for the detection of diffuse lung disease.
- Published
- 2001
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