Non‐Cartesian slice‐GRAPPA and slice‐SPIRiT reconstruction methods for multiband spiral cardiac MRI.

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Title: Non‐Cartesian slice‐GRAPPA and slice‐SPIRiT reconstruction methods for multiband spiral cardiac MRI.
Authors: Sun, Changyu1 (AUTHOR), Yang, Yang2,3 (AUTHOR), Cai, Xiaoying1,4 (AUTHOR), Salerno, Michael1,2,5 (AUTHOR), Meyer, Craig H.1,5 (AUTHOR), Weller, Daniel1,5,6 (AUTHOR), Epstein, Frederick H.1,5 (AUTHOR) fredepstein@virginia.edu
Source: Magnetic Resonance in Medicine. Apr2020, Vol. 83 Issue 4, p1235-1249. 15p.
Subjects: Spiral computed tomography, Cardiac imaging, Analysis of variance
Abstract: Purpose: Spiral MRI has advantages for cardiac imaging, and multiband (MB) spiral MRI of the heart shows promise. However, current reconstruction methods for MB spiral imaging have limitations. We sought to develop improved reconstruction methods for MB spiral cardiac MRI. Methods: Two reconstruction methods were developed. The first is non‐Cartesian slice‐GRAPPA (NCSG), which uses phase demodulation and gridding operations before application of a Cartesian slice‐separating kernel. The second method, slice‐SPIRiT, formulates the reconstruction as a minimization problem that enforces in‐plane coil consistency and consistency with the acquired MB data, and uses through‐plane coil sensitivity information in the iterative solution. These methods were compared with conjugate‐gradient SENSE in phantoms and volunteers. Temporal alternation of CAIPIRINHA (controlled aliasing in parallel imaging results in higher acceleration) phase and the use of a temporal filter were also investigated. Results: Phantom experiments with 3 simultaneous slices (MB = 3) showed that mean artifact power was highest for conjugate‐gradient SENSE, lower for NCSG, and lowest for slice‐SPIRiT. For volunteer cine imaging (MB = 3, N = 5), the artifact power was 0.182 ± 0.037, 0.148 ± 0.036, and 0.139 ± 0.034 for conjugate‐gradient SENSE, NCSG, and slice‐SPIRiT, respectively (P <.05, analysis of variance). Temporal alternation of CAIPIRINHA reduced artifacts for both NCSG and slice‐SPIRiT. Conclusion: The NCSG and slice‐SPIRiT methods provide more accurate reconstructions for MB spiral cine imaging compared with conjugate‐gradient SENSE. These methods hold promise for non‐Cartesian MB imaging. [ABSTRACT FROM AUTHOR]
Copyright of Magnetic Resonance in Medicine is the property of Wiley-Blackwell and its content may not be copied or emailed to multiple sites without the copyright holder's express written permission. Additionally, content may not be used with any artificial intelligence tools or machine learning technologies. However, users may print, download, or email articles for individual use. This abstract may be abridged. No warranty is given about the accuracy of the copy. Users should refer to the original published version of the material for the full abstract. (Copyright applies to all Abstracts.)
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  Label: Title
  Group: Ti
  Data: Non‐Cartesian slice‐GRAPPA and slice‐SPIRiT reconstruction methods for multiband spiral cardiac MRI.
– Name: Author
  Label: Authors
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  Data: &lt;searchLink fieldCode=&quot;AR&quot; term=&quot;%22Sun%2C+Changyu%22&quot;&gt;Sun, Changyu&lt;/searchLink&gt;&lt;relatesTo&gt;1&lt;/relatesTo&gt; (AUTHOR)&lt;br /&gt;&lt;searchLink fieldCode=&quot;AR&quot; term=&quot;%22Yang%2C+Yang%22&quot;&gt;Yang, Yang&lt;/searchLink&gt;&lt;relatesTo&gt;2,3&lt;/relatesTo&gt; (AUTHOR)&lt;br /&gt;&lt;searchLink fieldCode=&quot;AR&quot; term=&quot;%22Cai%2C+Xiaoying%22&quot;&gt;Cai, Xiaoying&lt;/searchLink&gt;&lt;relatesTo&gt;1,4&lt;/relatesTo&gt; (AUTHOR)&lt;br /&gt;&lt;searchLink fieldCode=&quot;AR&quot; term=&quot;%22Salerno%2C+Michael%22&quot;&gt;Salerno, Michael&lt;/searchLink&gt;&lt;relatesTo&gt;1,2,5&lt;/relatesTo&gt; (AUTHOR)&lt;br /&gt;&lt;searchLink fieldCode=&quot;AR&quot; term=&quot;%22Meyer%2C+Craig+H%2E%22&quot;&gt;Meyer, Craig H.&lt;/searchLink&gt;&lt;relatesTo&gt;1,5&lt;/relatesTo&gt; (AUTHOR)&lt;br /&gt;&lt;searchLink fieldCode=&quot;AR&quot; term=&quot;%22Weller%2C+Daniel%22&quot;&gt;Weller, Daniel&lt;/searchLink&gt;&lt;relatesTo&gt;1,5,6&lt;/relatesTo&gt; (AUTHOR)&lt;br /&gt;&lt;searchLink fieldCode=&quot;AR&quot; term=&quot;%22Epstein%2C+Frederick+H%2E%22&quot;&gt;Epstein, Frederick H.&lt;/searchLink&gt;&lt;relatesTo&gt;1,5&lt;/relatesTo&gt; (AUTHOR)&lt;i&gt; fredepstein@virginia.edu&lt;/i&gt;
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  Data: &lt;searchLink fieldCode=&quot;JN&quot; term=&quot;%22Magnetic+Resonance+in+Medicine%22&quot;&gt;Magnetic Resonance in Medicine&lt;/searchLink&gt;. Apr2020, Vol. 83 Issue 4, p1235-1249. 15p.
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  Label: Subjects
  Group: Su
  Data: &lt;searchLink fieldCode=&quot;DE&quot; term=&quot;%22Spiral+computed+tomography%22&quot;&gt;Spiral computed tomography&lt;/searchLink&gt;&lt;br /&gt;&lt;searchLink fieldCode=&quot;DE&quot; term=&quot;%22Cardiac+imaging%22&quot;&gt;Cardiac imaging&lt;/searchLink&gt;&lt;br /&gt;&lt;searchLink fieldCode=&quot;DE&quot; term=&quot;%22Analysis+of+variance%22&quot;&gt;Analysis of variance&lt;/searchLink&gt;
– Name: Abstract
  Label: Abstract
  Group: Ab
  Data: Purpose: Spiral MRI has advantages for cardiac imaging, and multiband (MB) spiral MRI of the heart shows promise. However, current reconstruction methods for MB spiral imaging have limitations. We sought to develop improved reconstruction methods for MB spiral cardiac MRI. Methods: Two reconstruction methods were developed. The first is non‐Cartesian slice‐GRAPPA (NCSG), which uses phase demodulation and gridding operations before application of a Cartesian slice‐separating kernel. The second method, slice‐SPIRiT, formulates the reconstruction as a minimization problem that enforces in‐plane coil consistency and consistency with the acquired MB data, and uses through‐plane coil sensitivity information in the iterative solution. These methods were compared with conjugate‐gradient SENSE in phantoms and volunteers. Temporal alternation of CAIPIRINHA (controlled aliasing in parallel imaging results in higher acceleration) phase and the use of a temporal filter were also investigated. Results: Phantom experiments with 3 simultaneous slices (MB = 3) showed that mean artifact power was highest for conjugate‐gradient SENSE, lower for NCSG, and lowest for slice‐SPIRiT. For volunteer cine imaging (MB = 3, N = 5), the artifact power was 0.182 &#177; 0.037, 0.148 &#177; 0.036, and 0.139 &#177; 0.034 for conjugate‐gradient SENSE, NCSG, and slice‐SPIRiT, respectively (P &lt;.05, analysis of variance). Temporal alternation of CAIPIRINHA reduced artifacts for both NCSG and slice‐SPIRiT. Conclusion: The NCSG and slice‐SPIRiT methods provide more accurate reconstructions for MB spiral cine imaging compared with conjugate‐gradient SENSE. These methods hold promise for non‐Cartesian MB imaging. [ABSTRACT FROM AUTHOR]
– Name: AbstractSuppliedCopyright
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  Data: &lt;i&gt;Copyright of Magnetic Resonance in Medicine is the property of Wiley-Blackwell and its content may not be copied or emailed to multiple sites without the copyright holder&#39;s express written permission. Additionally, content may not be used with any artificial intelligence tools or machine learning technologies. However, users may print, download, or email articles for individual use. This abstract may be abridged. No warranty is given about the accuracy of the copy. Users should refer to the original published version of the material for the full abstract.&lt;/i&gt; (Copyright applies to all Abstracts.)
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        Value: 10.1002/mrm.28002
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        Text: English
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        PageCount: 15
        StartPage: 1235
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      – SubjectFull: Spiral computed tomography
        Type: general
      – SubjectFull: Cardiac imaging
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      – SubjectFull: Analysis of variance
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      – TitleFull: Non‐Cartesian slice‐GRAPPA and slice‐SPIRiT reconstruction methods for multiband spiral cardiac MRI.
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            NameFull: Sun, Changyu
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              Text: Apr2020
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              Y: 2020
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