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High resolution computer tomography (HRCT) shows a distinctive pattern of sub pleural shadowing and later in the disease honeycomb fibrosis [ 1].
Every single myositis patient's thorax was controlled by high resolution computer tomography and the diffusing capacity of the lung for carbon monoxide (DLCO).
A high resolution computer tomography showed severe diffuse parenchymal lung disease, while the patient's pulmonary function tests were normal and he was asymptomatic.
We developed the algorhythm of patients examination: high resolution computer tomography (HRCT) of four levels with assessment of densitometric index in four points of each level.
In patients 1 and 3 a high resolution computer tomography scan of the lungs with contrast was obtained, but the findings were nonspecific with alveolar consolidations and pleural fluid, even in the presence of some interstitial abnomalities with some ground glass appearance in patient 3.
However, to determine the underlying pathophysiological substrate, histological investigation of lung biopsies or high resolution computer tomography scans would be needed, procedures that are not part of the routine assessment in clinical practice and thus were not available for this study [ 8, 19].
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High-resolution computer tomography and comparative cranial histology are required.
This paper presents a 3-D (3-dimensional) CFD (Computational Fluid Dynamics) study of an anatomically realistic 17-generation lung bronchial tree model based on the high-resolution computer tomography (HRCT) data by Schmidt et al. (2004).
Small animal High-Resolution Computer Tomography (Explorer RS Micro CT System): This high-resolution microCT system allows acquisition of 3-D images of both in vivo and in vitro specimens at 45 or 90 μM for whole body small animals and in vitro specimens at 27 µM.
High-resolution computer tomography (HRCT) was performed in all the patients.
The technique involves the segmentation and geometrical description of muscles and neurovascular structures from high-resolution computer tomography scanning for the reconstruction of generic anatomical models.
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