2006PubMedOpen access

Optimizing dynamic T2* MR imaging for measurement of cerebral blood flow using infusions for cerebral blood volume.

George C. Newman, F.E. Hospod, Sean B. Fain, Thomas D. Cook

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Abstract

We describe an approach to measuring cerebral blood flow (CBF) based on independent measurements of cerebral blood volume (CBV) and mean transit time (MTT) with calculation of CBF by using the central volume theorem: CBF = CBV / MTT. This permits optimization of the individual acquisitions and analyses. In particular, measurement of CBV during contrast infusion, rather than simultaneously with MTT from a single bolus, yields values more consistent with those of other methods.

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What this paper is about

We describe an approach to measuring cerebral blood flow (CBF) based on independent measurements of cerebral blood volume (CBV) and mean transit time (MTT) with calculation of CBF by using the central volume theorem: CBF = CBV / MTT. This permits optimization of the individual acquisitions and analyses. In particular, measurement of CBV during contrast infusion, rather than simultaneously with MTT from a single bolus, yields values more consistent with those of other methods.

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Available abstract

We describe an approach to measuring cerebral blood flow (CBF) based on independent measurements of cerebral blood volume (CBV) and mean transit time (MTT) with calculation of CBF by using the central volume theorem: CBF = CBV / MTT. This permits optimization of the individual acquisitions and analyses. In particular, measurement of CBV during contrast infusion, rather than simultaneously with MTT from a single bolus, yields values more consistent with those of other methods.

Key concepts: Cerebral blood volume, Cerebral blood flow, Medicine, Mean transit time, Bolus (digestion), Blood volume, Blood flow, Anesthesia

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Optimizing dynamic T2* MR imaging for measurement of cerebral blood flow using infusions for cerebral blood volume. — Research Paper | ScholarLens