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Suzanne L Franklin

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Articles 12
Citations 77
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Recent Articles
1.
Franklin S, Schuurmans M, Otikovs M, Borman P, van Osch M, Bos C
Magn Reson Med . 2022 Nov; 89(3):1092-1101. PMID: 36420871
Purpose: To evaluate the feasibility of spatio-temporal encoding (SPEN) readout for pseudo-continuous ASL (pCASL) in brain, and its robustness to susceptibility artifacts as introduced by aneurysm clips. Methods: A 2D...
2.
Veeger T, Hirschler L, Baligand C, Franklin S, Webb A, De Groot J, et al.
NMR Biomed . 2022 Jul; 35(11):e4796. PMID: 35778859
Microvascular function is an important component in the physiology of muscle. One of the major parameters, blood perfusion, can be measured noninvasively and quantitatively by arterial spin labeling (ASL) MRI....
3.
Franklin S, Voormolen N, Bones I, Korteweg T, Wasser M, Dankers H, et al.
J Magn Reson Imaging . 2021 Jun; 54(4):1282-1291. PMID: 34121250
Background: Dynamic contrast-enhanced (DCE) MRI is the most sensitive method for detection of breast cancer. However, due to high costs and retention of intravenously injected gadolinium-based contrast agent, screening with...
4.
Baligand C, Hirschler L, Veeger T, Vaclavu L, Franklin S, van Osch M, et al.
Magn Reson Med . 2021 Jun; 86(5):2441-2453. PMID: 34105189
Purpose: Multislice arterial spin labeling (ASL) MRI acquisitions are currently challenging in skeletal muscle because of long transit times, translating into low-perfusion SNR in distal slices when large spatial coverage...
5.
Bones I, Franklin S, Harteveld A, van Osch M, Schmid S, Hendrikse J, et al.
Magn Reson Med . 2021 Feb; 86(1):131-142. PMID: 33538350
Purpose: Velocity-selective arterial spin labeling (VSASL) has been proposed for renal perfusion imaging to mitigate planning challenges and effects of arterial transit time (ATT) uncertainties. In VSASL, label generation may...
6.
Franklin S, Bones I, Harteveld A, Hirschler L, van Stralen M, Qin Q, et al.
Magn Reson Med . 2020 Nov; 85(5):2580-2594. PMID: 33251644
Purpose: Flow-based arterial spin labeling (ASL) techniques provide a transit-time insensitive alternative to the more conventional spatially selective ASL techniques. However, it is not clear which flow-based ASL technique performs...
7.
de Boer A, Harteveld A, Stemkens B, Blankestijn P, Bos C, Franklin S, et al.
J Magn Reson Imaging . 2020 Apr; 53(3):859-873. PMID: 32297700
Background: Renal multiparametric magnetic resonance imaging (MRI) is a promising tool for diagnosis, prognosis, and treatment monitoring in kidney disease. Purpose: To determine intrasubject test-retest repeatability of renal MRI measurements....
8.
Bones I, Franklin S, Harteveld A, van Osch M, Hendrikse J, Moonen C, et al.
Magn Reson Med . 2020 Mar; 84(4):1919-1932. PMID: 32180263
Purpose: Arterial transit time uncertainties and challenges during planning are potential issues for renal perfusion measurement using spatially selective arterial spin labeling techniques. To mitigate these potential issues, a spatially...
9.
Harteveld A, Hutter J, Franklin S, Jackson L, Rutherford M, Hajnal J, et al.
Magn Reson Med . 2020 Mar; 84(4):1828-1843. PMID: 32141655
Purpose: Placental function is key for successful human pregnancies. Perfusion may be a sensitive marker for the in vivo assessment of placental function. Arterial spin labeling (ASL) MRI enables noninvasive...
10.
Franklin S, Schmid S, Bos C, van Osch M
Magn Reson Med . 2019 Sep; 83(3):872-882. PMID: 31483531
Purpose: In this study, the influence of the cardiac cycle on the amount of label produced by a velocity-selective (VSASL) and acceleration-selective arterial spin labeling (AccASL) module was investigated. Methods:...