Literature DB >> 19472385

Optimized high-resolution mapping of magnetization transfer (MT) at 3 Tesla for direct visualization of substructures of the human thalamus in clinically feasible measurement time.

Tabea Gringel1, Walter Schulz-Schaeffer, Erck Elolf, Andreas Frölich, Peter Dechent, Gunther Helms.   

Abstract

PURPOSE: To optimize contrast-to-noise and spatial resolution of a FLASH-based magnetization transfer (MT) protocol for visualization of substructures in human thalamus.
MATERIALS AND METHODS: Healthy adults were examined at 3 Tesla with a three-dimensional (3D) spoiled gradient-echo sequence. The signal-to-noise ratio (SNR) was increased by averaging eight bipolar echo acquisitions (mean echo time = 12.3 ms; bandwidth = 370 Hz/pixel). Three isotropic datasets with different weighting (proton density: flip angle/repetition time = 7 degrees /30 ms; T(1): 20 degrees /30 ms and MT: 10 degrees /48 ms, Gaussian MT prepulse) yielded maps of T(1), signal amplitude, MT ratio and MT saturation for comparison to MP-RAGE images. Measuring time was 23 min using partial k-space acquisition. First, the SNR of MT saturation maps in thalamus was optimized by means of the excitation flip angle. Then, noise and partial volume effects were traded off by means of the resolution. Finally, the contrast within the thalamus and to adjacent structures was compared between different maps.
RESULTS: The optimized MT saturation maps at 0.95 mm isotropic resolution provided the highest contrast. It was most prominent between structures of high axonal content (internal medullary lamina, ventral nuclei) and those containing predominantly neuronal somata (pulvinar, mediodorsal thalamus, geniculate bodies).
CONCLUSION: Semiquantitative MT saturation maps provide an enhanced intra-thalamic contrast. The borders and nuclear groups of the thalamus are reliably delineated; individual assignment of singular nuclei seems feasible.

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Year:  2009        PMID: 19472385     DOI: 10.1002/jmri.21756

Source DB:  PubMed          Journal:  J Magn Reson Imaging        ISSN: 1053-1807            Impact factor:   4.813


  19 in total

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3.  Visualization of intra-thalamic nuclei with optimized white-matter-nulled MPRAGE at 7T.

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4.  Imaging for deep brain stimulation: The zona incerta at 7 Tesla.

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Journal:  World J Radiol       Date:  2013-01-28

5.  Super-resolution track-density imaging of thalamic substructures: comparison with high-resolution anatomical magnetic resonance imaging at 7.0T.

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6.  Direct visualization of anatomic subfields within the superior aspect of the human lateral thalamus by MRI at 7T.

Authors:  M Kanowski; J Voges; L Buentjen; J Stadler; H-J Heinze; C Tempelmann
Journal:  AJNR Am J Neuroradiol       Date:  2014-05-22       Impact factor: 3.825

7.  Optimized depiction of thalamic substructures with a combination of T1-MPRAGE and phase: MPRAGE.

Authors:  Benjamin Bender; Stefan Wagner; Uwe Klose
Journal:  Clin Neuroradiol       Date:  2016-04-27       Impact factor: 3.649

8.  Visualisation of the zona incerta for deep brain stimulation at 3.0 Tesla.

Authors:  H U Kerl; L Gerigk; S Huck; M Al-Zghloul; C Groden; I S Nölte
Journal:  Clin Neuroradiol       Date:  2012-02-17       Impact factor: 3.649

9.  A longitudinal magnetization transfer imaging evaluation of brain injury in a macaque model of neuroAIDS.

Authors:  Chun-Xia Li; James G Herndon; Francis J Novembre; Xiaodong Zhang
Journal:  AIDS Res Hum Retroviruses       Date:  2014-11-06       Impact factor: 2.205

10.  An assessment of current brain targets for deep brain stimulation surgery with susceptibility-weighted imaging at 7 tesla.

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Journal:  Neurosurgery       Date:  2010-12       Impact factor: 4.654

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