4.7 Article

Brain morphometry with multiecho MPRAGE

期刊

NEUROIMAGE
卷 40, 期 2, 页码 559-569

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.neuroimage.2007.12.025

关键词

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资金

  1. NATIONAL CENTER FOR RESEARCH RESOURCES [P41RR014075, R01RR016594, U24RR021382] Funding Source: NIH RePORTER
  2. NATIONAL INSTITUTE OF BIOMEDICAL IMAGING AND BIOENGINEERING [R21EB002530, R01EB006758, U54EB005149, R01EB001550] Funding Source: NIH RePORTER
  3. NATIONAL INSTITUTE OF NEUROLOGICAL DISORDERS AND STROKE [R01NS052585] Funding Source: NIH RePORTER
  4. NCRR NIH HHS [P41 RR014075-086765, R01 RR016594-03, U24 RR021382-037971, U24-RR021382, R01-RR16594-01A1, U24 RR021382, U24 RR021382-02, R01 RR016594-04, P41 RR014075-086767, U24 RR021382-01, U24 RR021382-037970, U24 RR021382-03, P41 RR014075-086766, R01 RR016594-02, P41 RR014075-075753, U24 RR021382-047975, P41-RR-14075, U24 RR021382-047976, P41 RR014075, P41 RR014075-098602, R01 RR016594-01A1, P41 RR014075-075751, P41 RR014075-075752, P41 RR014075-098601, U24 RR021382-04, R01 RR016594] Funding Source: Medline
  5. NIBIB NIH HHS [U54 EB005149-010006, R01 EB001550-01, U54 EB005149-020006, U54 EB005149, U54 EB005149-039001, U54 EB005149-029001, R01-EB006758, R01-EB001550, R01 EB006758-01A1, U54-EB005149, R21 EB002530-02, U54 EB005149-04, U54 EB005149-02, U54 EB005149-049001, R01 EB001550-02, U54 EB005149-04S1, U54 EB005149-03, R01 EB006758, R21-EB02530, R21 EB002530-01, R21 EB002530, U54 EB005149-040006, R01 EB001550-03, U54 EB005149-01, R01 EB001550, U54 EB005149-030006, U54 EB005149-010019, R01 EB001550-04] Funding Source: Medline
  6. NINDS NIH HHS [R01-NS052585-01, R01 NS052585-01A1, R01 NS052585-02S1, R01 NS052585-03, R01 NS052585, R01 NS052585-02] Funding Source: Medline
  7. PHS HHS [BIRN002] Funding Source: Medline

向作者/读者索取更多资源

In brain morphometry studies using magnetic resonance imaging, several scans with a range of contrasts are often collected. The images may be locally distorted due to imperfect shimming in regions where magnetic susceptibility changes rapidly, and all scans may not be distorted in the same way. In multispectral studies it is critical that the edges of structures align precisely across all contrasts. The MPRAGE (NIPR) sequence has excellent contrast properties for cortical segmentation, while multiecho FLASH (MEF) provides better contrast for segmentation of subcortical structures. Here, a multiecho version of the MPRAGE (MEMPR) is evaluated using SIENA and FreeSurfer. The higher bandwidth of the MEMPR results in reduced distortions that match those of the MEF while the SNR is recovered by combining the echoes. Accurate automatic identification of cortex and thickness estimation is frustrated by the presence of dura adjacent to regions such as the entorhinal cortex. In the typical MPRAGE protocol, dura and cortex are approximately isointense. However, dura has substantially smaller T2* than cortex. This information is represented in the multiple echoes ofthe MEMPR. An algorithm is described for correcting cortical thickness using T2*. It is shown that with MEMPR, SIENA generates more reliable percentage brain volume changes and FreeSurfer generates more reliable cortical models. The regions where cortical thickness is affected by dura are shown. MEMPR did not substantially improve subcortical segmentations. Since acquisition time is the same for MEMPR as for MPRAGE, and it has better distortion properties and additional T2* information, MEMPR is recommended for morphometry studies. (C) 2007 Elsevier Inc. All rights reserved.

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