Compressed-sensing accelerated 4D flow MRI of cerebrospinal fluid dynamics

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  • Philips HealthTech
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OriginalspracheEnglisch
Aufsatznummer43
FachzeitschriftFluids and Barriers of the CNS
Jahrgang17
Ausgabenummer1
PublikationsstatusVeröffentlicht - 16 Juli 2020

Abstract

Background: 4D flow magnetic resonance imaging (MRI) of CSF can make an important contribution to the understanding of hydrodynamic changes in various neurological diseases but remains limited in clinical application due to long acquisition times. The aim of this study was to evaluate the accuracy of compressed SENSE accelerated MRI measurements of the spinal CSF flow. Methods: In 20 healthy subjects 4D flow MRI of the CSF in the cervical spine was acquired using compressed sensitivity encoding [CSE, a combination of compressed sensing and parallel imaging (SENSE) provided by the manufacturer] with acceleration factors between 4 and 10. A conventional scan using SENSE was used as reference. Extracted parameters were peak velocity, absolute net flow, forward flow and backward flow. Bland-Altman analysis was performed to determine the scan-rescan reproducibility and the agreement between SENSE and compressed SENSE. Additionally, a time accumulated flow error was calculated. In one additional subject flow of the spinal canal at the level of the entire spinal cord was assessed. Results: Averaged acquisition times were 10:21 min (SENSE), 9:31 min (CSE4), 6:25 min (CSE6), 4:53 min (CSE8) and 3:51 min (CSE10). Acquisition of the CSF flow surrounding the entire spinal cord took 14:40 min. Bland-Altman analysis showed good agreement for peak velocity, but slight overestimations for absolute net flow, forward flow and backward flow (< 1 ml/min) in CSE4-8. Results of the accumulated flow error were similar for CSE4 to CSE8. Conclusion: A quantitative analysis of acceleration factors CSE4-10 showed that CSE with an acceleration factor up to 6 is feasible. This allows a scan time reduction of 40% and enables the acquisition and analysis of the CSF flow dynamics surrounding the entire spinal cord within a clinically acceptable scan time.

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Compressed-sensing accelerated 4D flow MRI of cerebrospinal fluid dynamics. / Jaeger, Elena; Sonnabend, Kristina; Schaarschmidt, Frank et al.
in: Fluids and Barriers of the CNS, Jahrgang 17, Nr. 1, 43, 16.07.2020.

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Jaeger, E, Sonnabend, K, Schaarschmidt, F, Maintz, D, Weiss, K & Bunck, AC 2020, 'Compressed-sensing accelerated 4D flow MRI of cerebrospinal fluid dynamics', Fluids and Barriers of the CNS, Jg. 17, Nr. 1, 43. https://doi.org/10.1186/s12987-020-00206-3
Jaeger, E., Sonnabend, K., Schaarschmidt, F., Maintz, D., Weiss, K., & Bunck, A. C. (2020). Compressed-sensing accelerated 4D flow MRI of cerebrospinal fluid dynamics. Fluids and Barriers of the CNS, 17(1), Artikel 43. https://doi.org/10.1186/s12987-020-00206-3
Jaeger E, Sonnabend K, Schaarschmidt F, Maintz D, Weiss K, Bunck AC. Compressed-sensing accelerated 4D flow MRI of cerebrospinal fluid dynamics. Fluids and Barriers of the CNS. 2020 Jul 16;17(1):43. doi: 10.1186/s12987-020-00206-3
Jaeger, Elena ; Sonnabend, Kristina ; Schaarschmidt, Frank et al. / Compressed-sensing accelerated 4D flow MRI of cerebrospinal fluid dynamics. in: Fluids and Barriers of the CNS. 2020 ; Jahrgang 17, Nr. 1.
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AU - Jaeger, Elena

AU - Sonnabend, Kristina

AU - Schaarschmidt, Frank

AU - Maintz, David

AU - Weiss, Kilian

AU - Bunck, Alexander C.

PY - 2020/7/16

Y1 - 2020/7/16

N2 - Background: 4D flow magnetic resonance imaging (MRI) of CSF can make an important contribution to the understanding of hydrodynamic changes in various neurological diseases but remains limited in clinical application due to long acquisition times. The aim of this study was to evaluate the accuracy of compressed SENSE accelerated MRI measurements of the spinal CSF flow. Methods: In 20 healthy subjects 4D flow MRI of the CSF in the cervical spine was acquired using compressed sensitivity encoding [CSE, a combination of compressed sensing and parallel imaging (SENSE) provided by the manufacturer] with acceleration factors between 4 and 10. A conventional scan using SENSE was used as reference. Extracted parameters were peak velocity, absolute net flow, forward flow and backward flow. Bland-Altman analysis was performed to determine the scan-rescan reproducibility and the agreement between SENSE and compressed SENSE. Additionally, a time accumulated flow error was calculated. In one additional subject flow of the spinal canal at the level of the entire spinal cord was assessed. Results: Averaged acquisition times were 10:21 min (SENSE), 9:31 min (CSE4), 6:25 min (CSE6), 4:53 min (CSE8) and 3:51 min (CSE10). Acquisition of the CSF flow surrounding the entire spinal cord took 14:40 min. Bland-Altman analysis showed good agreement for peak velocity, but slight overestimations for absolute net flow, forward flow and backward flow (< 1 ml/min) in CSE4-8. Results of the accumulated flow error were similar for CSE4 to CSE8. Conclusion: A quantitative analysis of acceleration factors CSE4-10 showed that CSE with an acceleration factor up to 6 is feasible. This allows a scan time reduction of 40% and enables the acquisition and analysis of the CSF flow dynamics surrounding the entire spinal cord within a clinically acceptable scan time.

AB - Background: 4D flow magnetic resonance imaging (MRI) of CSF can make an important contribution to the understanding of hydrodynamic changes in various neurological diseases but remains limited in clinical application due to long acquisition times. The aim of this study was to evaluate the accuracy of compressed SENSE accelerated MRI measurements of the spinal CSF flow. Methods: In 20 healthy subjects 4D flow MRI of the CSF in the cervical spine was acquired using compressed sensitivity encoding [CSE, a combination of compressed sensing and parallel imaging (SENSE) provided by the manufacturer] with acceleration factors between 4 and 10. A conventional scan using SENSE was used as reference. Extracted parameters were peak velocity, absolute net flow, forward flow and backward flow. Bland-Altman analysis was performed to determine the scan-rescan reproducibility and the agreement between SENSE and compressed SENSE. Additionally, a time accumulated flow error was calculated. In one additional subject flow of the spinal canal at the level of the entire spinal cord was assessed. Results: Averaged acquisition times were 10:21 min (SENSE), 9:31 min (CSE4), 6:25 min (CSE6), 4:53 min (CSE8) and 3:51 min (CSE10). Acquisition of the CSF flow surrounding the entire spinal cord took 14:40 min. Bland-Altman analysis showed good agreement for peak velocity, but slight overestimations for absolute net flow, forward flow and backward flow (< 1 ml/min) in CSE4-8. Results of the accumulated flow error were similar for CSE4 to CSE8. Conclusion: A quantitative analysis of acceleration factors CSE4-10 showed that CSE with an acceleration factor up to 6 is feasible. This allows a scan time reduction of 40% and enables the acquisition and analysis of the CSF flow dynamics surrounding the entire spinal cord within a clinically acceptable scan time.

KW - 4D flow MRI

KW - Cerebrospinal fluid

KW - Compressed sensing

KW - CSF

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DO - 10.1186/s12987-020-00206-3

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AN - SCOPUS:85088493883

VL - 17

JO - Fluids and Barriers of the CNS

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ER -

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