PURPOSE: To compare a double-excitation combined arterial-spin labeling/blood-oxygenation level dependent (ASL/BOLD) functional imaging method to a double-echo method. ASL provides a useful complement to standard BOLD functional imaging, to map effects of cerebral hemodynamics. Whole-brain imaging is necessary to properly characterize large functional networks. A challenge of whole-brain ASL/BOLD is that images for ASL functional contrast must be acquired before significant longitudinal relaxation of the inverted spins occurs; however, a longer echo time (TE) is required for optimal BOLD functional contrast, lengthening the acquisition time. Thus, existing combined ASL/BOLD studies have only partial-brain coverage. MATERIALS AND METHODS: The proposed method allows acquisition of images for ASL contrast within a short period after the ASL labeling pulse and postinversion delay, then subsequent acquisition of images with longer TE for BOLD contrast. The technique is demonstrated using a narrative comprehension task in 35 normal children, and the double-excitation method is empirically compared with the double-echo method in 7 normal adults. RESULTS: Compared with a double-echo sequence, simulations show the double-excitation method improves ASL contrast-to-noise ratio (CNR) (∼50%) in later-acquired slices with minimal (<1%) reduction in BOLD CNR in earlier-acquired slices if reduced excitation flip angles for the ASL acquisitions are used. Empirical results from adult data are in agreement with the simulations. Group analyses from the narrative comprehension task also show greater intersubject sensitivity in BOLD versus ASL. CONCLUSION: Our method simultaneously optimizes ASL and BOLD acquisitions for CNR while economizing acquisition time.
PURPOSE: To compare a double-excitation combined arterial-spin labeling/blood-oxygenation level dependent (ASL/BOLD) functional imaging method to a double-echo method. ASL provides a useful complement to standard BOLD functional imaging, to map effects of cerebral hemodynamics. Whole-brain imaging is necessary to properly characterize large functional networks. A challenge of whole-brain ASL/BOLD is that images for ASL functional contrast must be acquired before significant longitudinal relaxation of the inverted spins occurs; however, a longer echo time (TE) is required for optimal BOLD functional contrast, lengthening the acquisition time. Thus, existing combined ASL/BOLD studies have only partial-brain coverage. MATERIALS AND METHODS: The proposed method allows acquisition of images for ASL contrast within a short period after the ASL labeling pulse and postinversion delay, then subsequent acquisition of images with longer TE for BOLD contrast. The technique is demonstrated using a narrative comprehension task in 35 normal children, and the double-excitation method is empirically compared with the double-echo method in 7 normal adults. RESULTS: Compared with a double-echo sequence, simulations show the double-excitation method improves ASL contrast-to-noise ratio (CNR) (∼50%) in later-acquired slices with minimal (<1%) reduction in BOLD CNR in earlier-acquired slices if reduced excitation flip angles for the ASL acquisitions are used. Empirical results from adult data are in agreement with the simulations. Group analyses from the narrative comprehension task also show greater intersubject sensitivity in BOLD versus ASL. CONCLUSION: Our method simultaneously optimizes ASL and BOLD acquisitions for CNR while economizing acquisition time.
Authors: Andreas Kastrup; Gunnar Krüger; Tobias Neumann-Haefelin; Gary H Glover; Michael E Moseley Journal: Neuroimage Date: 2002-01 Impact factor: 6.556
Authors: María A Fernández-Seara; Ze Wang; Jiongjiong Wang; Heng-Yi Rao; Matthias Guenther; David A Feinberg; John A Detre Journal: Magn Reson Med Date: 2005-11 Impact factor: 4.668
Authors: Arthur W Toga; Kristi A Clark; Paul M Thompson; David W Shattuck; John Darrell Van Horn Journal: Neurosurgery Date: 2012-07 Impact factor: 4.654
Authors: Vincent J Schmithorst; Jennifer Vannest; Gregory Lee; Luis Hernandez-Garcia; Elena Plante; Akila Rajagopal; Scott K Holland Journal: Hum Brain Mapp Date: 2014-08-19 Impact factor: 5.038
Authors: Vincent J Schmithorst; Daryaneh Badaly; Sue R Beers; Vincent K Lee; Jacqueline Weinberg; Cecilia W Lo; Ashok Panigrahy Journal: Semin Thorac Cardiovasc Surg Date: 2021-11-10
Authors: Axel Montagne; Daniel A Nation; Judy Pa; Melanie D Sweeney; Arthur W Toga; Berislav V Zlokovic Journal: Acta Neuropathol Date: 2016-04-01 Impact factor: 17.088
Authors: Antonio M Chiarelli; Michael Germuska; Hannah Chandler; Rachael Stickland; Eleonora Patitucci; Emma Biondetti; Daniele Mascali; Neeraj Saxena; Sharmila Khot; Jessica Steventon; Catherine Foster; Ana E Rodríguez-Soto; Erin Englund; Kevin Murphy; Valentina Tomassini; Felix W Wehrli; Richard G Wise Journal: J Cereb Blood Flow Metab Date: 2022-02-02 Impact factor: 6.960