Literature DB >> 2698430

A method for MR quantification of flow velocities in blood and CSF using interleaved gradient-echo pulse sequences.

F Ståhlberg1, J Mogelvang, C Thomsen, B Nordell, M Stubgaard, A Ericsson, G Sperber, D Greitz, H Larsson, O Henriksen.   

Abstract

The aim of this study was to establish a rapid method for in vivo quantification of a large range of flow velocities using phase information. A basic gradient-echo sequence was constructed, in which flow was encoded along the slice selection direction by variation of the amplitude of a bipolar gradient without changes in sequence timings. The influence of field inhomogeneities and eddy currents was studied in a 1.5 T interleaved sequences for calibration and in vivo flow determination were constructed, and flow information was obtained by pairwise subtraction of velocity-encoded from velocity non-encoded phase images. Calibration was performed in a nongated mode using flow phantoms, and the results were compared with theoretically calculated encoding efficiencies. In vivo flow was studied in healthy volunteers in three different areas using cardiac gating; central blood flow in the great thoracic vessels, peripheral blood flow in the popliteal vessels, and flow of cerebrospinal fluid (CSF) in the cerebral aqueduct. The results show good agreement with results obtained with other techniques. The proposed method for flow determination was shown to be rapid and flexible, and we thus conclude that it seems well suited for routine clinical MR examinations.

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Year:  1989        PMID: 2698430     DOI: 10.1016/0730-725x(89)90535-3

Source DB:  PubMed          Journal:  Magn Reson Imaging        ISSN: 0730-725X            Impact factor:   2.546


  7 in total

1.  Phase-contrast MR imaging of the cervical CSF and spinal cord: volumetric motion analysis in patients with Chiari I malformation.

Authors:  E Hofmann; M Warmuth-Metz; M Bendszus; L Solymosi
Journal:  AJNR Am J Neuroradiol       Date:  2000-01       Impact factor: 3.825

2.  Changes in systemic and pulmonary blood flow distribution in normal adult volunteers in response to posture and exercise: a phase contrast magnetic resonance imaging study.

Authors:  Derek T H Wong; Kyong-Jin Lee; Shi-Joon Yoo; George Tomlinson; Lars Grosse-Wortmann
Journal:  J Physiol Sci       Date:  2014-01-03       Impact factor: 2.781

3.  Colour-coded echographic flow imaging and spectral analysis of cerebrospinal fluid (CSF) in infants. Part II. CSF-dynamics.

Authors:  P Winkler
Journal:  Pediatr Radiol       Date:  1992

4.  Assessment of CSF dynamics and venous flow in the superior sagittal sinus by MRI in idiopathic intracranial hypertension: a preliminary study.

Authors:  P Gideon; P S Sørensen; C Thomsen; F Ståhlberg; F Gjerris; O Henriksen
Journal:  Neuroradiology       Date:  1994-07       Impact factor: 2.804

5.  Cerebrospinal fluid flow and production in patients with normal pressure hydrocephalus studied by MRI.

Authors:  P Gideon; F Ståhlberg; C Thomsen; F Gjerris; P S Sørensen; O Henriksen
Journal:  Neuroradiology       Date:  1994-04       Impact factor: 2.804

6.  Accuracy and reproducibility of phase-contrast MR imaging measurements for CSF flow.

Authors:  Andrew L Wentland; O Wieben; F R Korosec; V M Haughton
Journal:  AJNR Am J Neuroradiol       Date:  2010-03-04       Impact factor: 3.825

7.  Phase contrast MRI measurements of net cerebrospinal fluid flow through the cerebral aqueduct are confounded by respiration.

Authors:  Jolanda M Spijkerman; Lennart J Geurts; Jeroen C W Siero; Jeroen Hendrikse; Peter R Luijten; Jaco J M Zwanenburg
Journal:  J Magn Reson Imaging       Date:  2018-05-09       Impact factor: 4.813

  7 in total

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