Title of article
The Influence of Tomograph Sensitivity on Kinetic Parameter Estimation in Positron Emission Tomography Imaging Studies of the Rat Brain
Author/Authors
Kassiou، Michael نويسنده , , Meikle، Steven R. نويسنده , , Eberl، Stefan نويسنده , , Fulton، Roger R. نويسنده , , Fulham، Michael J. نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2000
Pages
-616
From page
617
To page
0
Abstract
Large scale transport events are studied using two different 3-D simulation codes related to resistive ballooning and ion temperature gradient turbulence. The turbulence is driven by a constant incoming flux. In the case of resistive ballooning simulations, the underlying structures are found to be radially elongated on the low field side and distorted by magnetic shear in the parallel direction (streamers). The non-linear character of these structures is emphasized. Bursty transport is investigated in the presence of zonal flows and internal transport barriers generated either by a strong shear flow or with a magnetic shear reversal. In deriving a low dimensional model that captures the main features of bursty transport dynamics, it is found that E x B shear flow is necessary to trigger the bursts.
Keywords
Tracer kinetics , parameter estimation , Small animal imaging , PET , Rat brain
Journal title
NUCLEAR MEDICING & BIOLOGY
Serial Year
2000
Journal title
NUCLEAR MEDICING & BIOLOGY
Record number
29501
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