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Erschienen in: European Radiology 1/2020

23.07.2019 | Magnetic Resonance

Repeatability of amide proton transfer–weighted signals in the brain according to clinical condition and anatomical location

verfasst von: Jung Bin Lee, Ji Eun Park, Seung Chai Jung, Youngheun Jo, Donghyun Kim, Ho Sung Kim, Choong-Gon Choi, Sang Joon Kim, Dong-Wha Kang

Erschienen in: European Radiology | Ausgabe 1/2020

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Abstract

Objectives

To investigate whether clinical condition, imaging session, and locations affect repeatability of amide proton transfer–weighted (APTw) magnetic resonance imaging (MRI) in the brain.

Materials and methods

Three APTw MRI data sets were acquired, involving two intrasession scans and one intersession scan for 19 healthy, 15 glioma, and 12 acute stroke adult participants (mean age 53.8, 54.6, and 68.5, respectively) on a 3T MR scanner. The mean APTw signals from five locations in healthy brain (supratentorial and infratentorial locations) and from entire tumor and stroke lesions (supratentorial location) were calculated. The within-subject coefficient of variation (wCV) and intraclass correlation coefficient (ICC) were calculated for each clinical conditions, image sessions, and anatomic locations. Differences in APTw signals between sessions were analyzed using repeated-measures analysis of variance.

Results

The ICC and wCV were 0.96 (95% confidence interval [CI], 0.91–0.99) and 16.1 (12.6–21.3) in glioma, 0.93 (0.82–0.98) and 15.0 (11.4–20.6) in stroke, and 0.84 (0.72–0.91) and 34.0 (28.7–41.0) in healthy brain. There were no significant differences in APTw signal between three sessions, irrespective of disease condition and location. The ICC and wCV were 0.85 (0.68–0.94) and 27.4 (21.8–35.6) in supratentorial, and 0.44 (− 0.18 to 0.76) and 32.7 (25.9 to 42.9) in infratentorial locations. There were significant differences in APTw signal between supra- (mean, 0.49%; 95% CI, 0.38–0.61) and infratentorial locations (1.09%, 0.98–1.20; p < 0.001).

Conclusion

The repeatability of APTw signal was excellent in supratentorial locations, while it was poor in infratentorial locations due to severe B0 inhomogeneity and susceptibility which affects MTR asymmetry.

Key Points

• In supratentorial locations, APTw MRI showed excellent intrasession and intersession repeatability in brains of healthy controls and patients with glioma, as well as in stroke-affected regions.
• APTw MRI showed excellent repeatability in supratentorial locations, but poor repeatability in infratentorial locations.
• Considering poor repeatability in the infratentorial locations, the use of APTw MRI in longitudinal assessment in infratentorial locations is not indicated.
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Literatur
1.
Zurück zum Zitat Ward KM, Aletras AH, Balaban RS (2000) A new class of contrast agents for MRI based on proton chemical exchange dependent saturation transfer (CEST). J Magn Reson 143:79–87CrossRef Ward KM, Aletras AH, Balaban RS (2000) A new class of contrast agents for MRI based on proton chemical exchange dependent saturation transfer (CEST). J Magn Reson 143:79–87CrossRef
2.
Zurück zum Zitat van Zijl PC, Yadav NN (2011) Chemical exchange saturation transfer (CEST): what is in a name and what isn’t? Magn Reson Med 65:927–948CrossRef van Zijl PC, Yadav NN (2011) Chemical exchange saturation transfer (CEST): what is in a name and what isn’t? Magn Reson Med 65:927–948CrossRef
3.
Zurück zum Zitat McMahon MT, Gilad AA, Zhou J, Sun PZ, Bulte JW, van Zijl PC (2006) Quantifying exchange rates in chemical exchange saturation transfer agents using the saturation time and saturation power dependencies of the magnetization transfer effect on the magnetic resonance imaging signal (QUEST and QUESP): pH calibration for poly‐L‐lysine and a starburst dendrimer. Magn Reson Med 55:836–847 McMahon MT, Gilad AA, Zhou J, Sun PZ, Bulte JW, van Zijl PC (2006) Quantifying exchange rates in chemical exchange saturation transfer agents using the saturation time and saturation power dependencies of the magnetization transfer effect on the magnetic resonance imaging signal (QUEST and QUESP): pH calibration for poly‐L‐lysine and a starburst dendrimer. Magn Reson Med 55:836–847
4.
Zurück zum Zitat Harston GW, Tee YK, Blockley N et al (2014) Identifying the ischaemic penumbra using pH-weighted magnetic resonance imaging. Brain 138:36–42 Harston GW, Tee YK, Blockley N et al (2014) Identifying the ischaemic penumbra using pH-weighted magnetic resonance imaging. Brain 138:36–42
5.
Zurück zum Zitat Zhou J, Payen JF, Wilson DA, Traystman RJ, van Zijl PC (2003) Using the amide proton signals of intracellular proteins and peptides to detect pH effects in MRI. Nat Med 9:1085–1090 Zhou J, Payen JF, Wilson DA, Traystman RJ, van Zijl PC (2003) Using the amide proton signals of intracellular proteins and peptides to detect pH effects in MRI. Nat Med 9:1085–1090
6.
Zurück zum Zitat Zhou J, Lal B, Wilson DA et al (2003) Amide proton transfer (APT) contrast for imaging of brain tumors. Magn Reson Med 50:1120–1126CrossRef Zhou J, Lal B, Wilson DA et al (2003) Amide proton transfer (APT) contrast for imaging of brain tumors. Magn Reson Med 50:1120–1126CrossRef
7.
Zurück zum Zitat Wu B, Warnock G, Zaiss M et al (2016) An overview of CEST MRI for non-MR physicists. An overview of CEST MRI for non-MR physicists. EJNMMI Phys 3:19 Wu B, Warnock G, Zaiss M et al (2016) An overview of CEST MRI for non-MR physicists. An overview of CEST MRI for non-MR physicists. EJNMMI Phys 3:19
8.
Zurück zum Zitat Choi Y, Ahn S, Lee SK et al (2017) Amide proton transfer imaging to discriminate between low- and high-grade gliomas: added value to apparent diffusion coefficient and relative cerebral blood volume. Eur Radiol 27:3181–3189CrossRef Choi Y, Ahn S, Lee SK et al (2017) Amide proton transfer imaging to discriminate between low- and high-grade gliomas: added value to apparent diffusion coefficient and relative cerebral blood volume. Eur Radiol 27:3181–3189CrossRef
9.
Zurück zum Zitat Zhou J, Zhu H, Lim M et al (2013) Three-dimensional amide proton transfer MR imaging of gliomas: initial experience and comparison with gadolinium enhancement. J Magn Reson Imaging 38:1119–1128CrossRef Zhou J, Zhu H, Lim M et al (2013) Three-dimensional amide proton transfer MR imaging of gliomas: initial experience and comparison with gadolinium enhancement. J Magn Reson Imaging 38:1119–1128CrossRef
10.
Zurück zum Zitat Zhou J, Tryggestad E, Wen Z et al (2011) Differentiation between glioma and radiation necrosis using molecular magnetic resonance imaging of endogenous proteins and peptides. Nat Med 17:130CrossRef Zhou J, Tryggestad E, Wen Z et al (2011) Differentiation between glioma and radiation necrosis using molecular magnetic resonance imaging of endogenous proteins and peptides. Nat Med 17:130CrossRef
11.
Zurück zum Zitat Wang M, Hong X, Chang CF et al (2015) Simultaneous detection and separation of hyperacute intracerebral hemorrhage and cerebral ischemia using amide proton transfer MRI. Magn Reson Med 74:42–50CrossRef Wang M, Hong X, Chang CF et al (2015) Simultaneous detection and separation of hyperacute intracerebral hemorrhage and cerebral ischemia using amide proton transfer MRI. Magn Reson Med 74:42–50CrossRef
12.
Zurück zum Zitat Park JE, Kim HS, Park KJ, Kim SJ, Kim JH, Smith SA (2016) Pre- and posttreatment glioma: comparison of amide proton transfer imaging with MR spectroscopy for biomarkers of tumor proliferation. Radiology 278:514–523 Park JE, Kim HS, Park KJ, Kim SJ, Kim JH, Smith SA (2016) Pre- and posttreatment glioma: comparison of amide proton transfer imaging with MR spectroscopy for biomarkers of tumor proliferation. Radiology 278:514–523
13.
Zurück zum Zitat Park JE, Lee JY, Kim HS et al (2018) Amide proton transfer imaging seems to provide higher diagnostic performance in post-treatment high-grade gliomas than methionine positron emission tomography. Eur Radiol 28:3285–3295CrossRef Park JE, Lee JY, Kim HS et al (2018) Amide proton transfer imaging seems to provide higher diagnostic performance in post-treatment high-grade gliomas than methionine positron emission tomography. Eur Radiol 28:3285–3295CrossRef
14.
Zurück zum Zitat Togao O, Hiwatashi A, Keupp J et al (2015) Scan–rescan reproducibility of parallel transmission based amide proton transfer imaging of brain tumors. J Magn Reson Imaging 42:1346–1353CrossRef Togao O, Hiwatashi A, Keupp J et al (2015) Scan–rescan reproducibility of parallel transmission based amide proton transfer imaging of brain tumors. J Magn Reson Imaging 42:1346–1353CrossRef
15.
Zurück zum Zitat Sun PZ, Benner T, Kumar A, Sorensen AG (2008) Investigation of optimizing and translating pH-sensitive pulsed-chemical exchange saturation transfer (CEST) imaging to a 3T clinical scanner. Magn Reson Med 60:834–841 Sun PZ, Benner T, Kumar A, Sorensen AG (2008) Investigation of optimizing and translating pH-sensitive pulsed-chemical exchange saturation transfer (CEST) imaging to a 3T clinical scanner. Magn Reson Med 60:834–841
16.
Zurück zum Zitat Li S, Dardzinski BJ, Collins CM, Yang QX , Smith MB (1996) Three-dimensional mapping of the static magnetic field inside the human head. Magn Reson Med 36:705–714 Li S, Dardzinski BJ, Collins CM, Yang QX , Smith MB (1996) Three-dimensional mapping of the static magnetic field inside the human head. Magn Reson Med 36:705–714
17.
Zurück zum Zitat Sullivan DC, Obuchowski NA, Kessler LG et al (2015) Metrology standards for quantitative imaging biomarkers. Radiology 277:813–825CrossRef Sullivan DC, Obuchowski NA, Kessler LG et al (2015) Metrology standards for quantitative imaging biomarkers. Radiology 277:813–825CrossRef
18.
Zurück zum Zitat Louis DN, Ohgaki H, Wiestler OD et al (2007) The 2007 WHO classification of tumours of the central nervous system. Acta Neuropathol 114:97–109CrossRef Louis DN, Ohgaki H, Wiestler OD et al (2007) The 2007 WHO classification of tumours of the central nervous system. Acta Neuropathol 114:97–109CrossRef
19.
Zurück zum Zitat Louis DN, Perry A, Reifenberger G et al (2016) The 2016 World Health Organization classification of tumors of the central nervous system: a summary. Acta Neuropathol 131:803–820CrossRef Louis DN, Perry A, Reifenberger G et al (2016) The 2016 World Health Organization classification of tumors of the central nervous system: a summary. Acta Neuropathol 131:803–820CrossRef
20.
Zurück zum Zitat Togao O, Yoshiura T, Keupp J et al (2012) Effect of saturation pulse length on parallel transmission based amide proton transfer (APT) imaging of different brain tumor types. Proc Intl Soc Mag Reson Med 20:744 Togao O, Yoshiura T, Keupp J et al (2012) Effect of saturation pulse length on parallel transmission based amide proton transfer (APT) imaging of different brain tumor types. Proc Intl Soc Mag Reson Med 20:744
21.
Zurück zum Zitat Keupp J, Baltes C, Harvey PR, van den Brink J (2011) Parallel RF transmission based MRI technique for highly sensitive detection of amide proton transfer in the human brain at 3T. Proc Int Soc Magn Reson Med 19:710 Keupp J, Baltes C, Harvey PR, van den Brink J (2011) Parallel RF transmission based MRI technique for highly sensitive detection of amide proton transfer in the human brain at 3T. Proc Int Soc Magn Reson Med 19:710
22.
Zurück zum Zitat Eggers H, Brendel B, Duijndam A, Herigault G (2011) Dual-echo Dixon imaging with flexible choice of echo times. Magn Reson Med 65:96–107 Eggers H, Brendel B, Duijndam A, Herigault G (2011) Dual-echo Dixon imaging with flexible choice of echo times. Magn Reson Med 65:96–107
23.
Zurück zum Zitat Xiang QS (2006) Two-point water-fat imaging with partially-opposed-phase (POP) acquisition: an asymmetric Dixon method. Magn Reson Med 56:572–584CrossRef Xiang QS (2006) Two-point water-fat imaging with partially-opposed-phase (POP) acquisition: an asymmetric Dixon method. Magn Reson Med 56:572–584CrossRef
24.
Zurück zum Zitat Edwards S, Gong Q, Liu C et al (1999) Infratentorial atrophy on magnetic resonance imaging and disability in multiple sclerosis. Brain 122:291–301CrossRef Edwards S, Gong Q, Liu C et al (1999) Infratentorial atrophy on magnetic resonance imaging and disability in multiple sclerosis. Brain 122:291–301CrossRef
25.
Zurück zum Zitat Guivel-Scharen V, Sinnwell T, Wolff S, Balaban RS (1998) Detection of proton chemical exchange between metabolites and water in biological tissues. J Magn Reson 133:36–45 Guivel-Scharen V, Sinnwell T, Wolff S, Balaban RS (1998) Detection of proton chemical exchange between metabolites and water in biological tissues. J Magn Reson 133:36–45
26.
Zurück zum Zitat Park JE, Han K, Sung YS et al (2017) Selection and reporting of statistical methods to assess reliability of a diagnostic test: conformity to recommended methods in a peer-reviewed journal. Korean J Radiol 18:888–897CrossRef Park JE, Han K, Sung YS et al (2017) Selection and reporting of statistical methods to assess reliability of a diagnostic test: conformity to recommended methods in a peer-reviewed journal. Korean J Radiol 18:888–897CrossRef
27.
Zurück zum Zitat Barnhart HX, Barboriak DP (2009) Applications of the repeatability of quantitative imaging biomarkers: a review of statistical analysis of repeat data sets. Transl Oncol 2:231–235CrossRef Barnhart HX, Barboriak DP (2009) Applications of the repeatability of quantitative imaging biomarkers: a review of statistical analysis of repeat data sets. Transl Oncol 2:231–235CrossRef
28.
Zurück zum Zitat Sappakitkamjorn J, Niwitpong S-A (2013) Confidence intervals for the coefficients of variation with bounded parameters. Int J Math Comput Sci Eng 7:198–203 Sappakitkamjorn J, Niwitpong S-A (2013) Confidence intervals for the coefficients of variation with bounded parameters. Int J Math Comput Sci Eng 7:198–203
29.
Zurück zum Zitat Hallgren KA (2012) Computing inter-rater reliability for observational data: an overview and tutorial. Tutor Quant Methods Psychol 8:23CrossRef Hallgren KA (2012) Computing inter-rater reliability for observational data: an overview and tutorial. Tutor Quant Methods Psychol 8:23CrossRef
30.
Zurück zum Zitat Jiang S, Zou T, Eberhart CG et al (2017) Predicting IDH mutation status in grade II gliomas using amide proton transfer-weighted (APTw) MRI. Magn Reson Med 78:1100–1109CrossRef Jiang S, Zou T, Eberhart CG et al (2017) Predicting IDH mutation status in grade II gliomas using amide proton transfer-weighted (APTw) MRI. Magn Reson Med 78:1100–1109CrossRef
31.
Zurück zum Zitat Yu H, Lou H, Zou T et al (2017) Applying protein-based amide proton transfer MR imaging to distinguish solitary brain metastases from glioblastoma. Eur Radiol 27:4516–4524CrossRef Yu H, Lou H, Zou T et al (2017) Applying protein-based amide proton transfer MR imaging to distinguish solitary brain metastases from glioblastoma. Eur Radiol 27:4516–4524CrossRef
32.
Zurück zum Zitat Zhao X, Wen Z, Huang F, et al (2011) Saturation power dependence of amide proton transfer image contrasts in human brain tumors and strokes at 3 T. Magn Reson Med 66(4):1033–1041 Zhao X, Wen Z, Huang F, et al (2011) Saturation power dependence of amide proton transfer image contrasts in human brain tumors and strokes at 3 T. Magn Reson Med 66(4):1033–1041
33.
Zurück zum Zitat Park J, Kim H, Jung S et al (2017) Depiction of acute stroke using 3-tesla clinical amide proton transfer imaging: saturation time optimization using an in vivo rat stroke model, and a preliminary study in human. Investig Magn Reson Imaging 21:65–70CrossRef Park J, Kim H, Jung S et al (2017) Depiction of acute stroke using 3-tesla clinical amide proton transfer imaging: saturation time optimization using an in vivo rat stroke model, and a preliminary study in human. Investig Magn Reson Imaging 21:65–70CrossRef
34.
Zurück zum Zitat Zhou J, Blakeley JO, Hua J et al (2008) Practical data acquisition method for human brain tumor amide proton transfer (APT) imaging. Magn Reson Med 60:842–849CrossRef Zhou J, Blakeley JO, Hua J et al (2008) Practical data acquisition method for human brain tumor amide proton transfer (APT) imaging. Magn Reson Med 60:842–849CrossRef
35.
Zurück zum Zitat Jacobs MA, Horská A, Van Zijl PC, Barker PB (2001) Quantitative proton MR spectroscopic imaging of normal human cerebellum and brain stem. Magn Reson Med 46:699–705 Jacobs MA, Horská A, Van Zijl PC, Barker PB (2001) Quantitative proton MR spectroscopic imaging of normal human cerebellum and brain stem. Magn Reson Med 46:699–705
36.
Zurück zum Zitat Schmidt H, Schwenzer NF, Gatidis S et al (2016) Systematic evaluation of amide proton chemical exchange saturation transfer at 3 T: effects of protein concentration, pH, and acquisition parameters. Invest Radiol 51:635–646CrossRef Schmidt H, Schwenzer NF, Gatidis S et al (2016) Systematic evaluation of amide proton chemical exchange saturation transfer at 3 T: effects of protein concentration, pH, and acquisition parameters. Invest Radiol 51:635–646CrossRef
Metadaten
Titel
Repeatability of amide proton transfer–weighted signals in the brain according to clinical condition and anatomical location
verfasst von
Jung Bin Lee
Ji Eun Park
Seung Chai Jung
Youngheun Jo
Donghyun Kim
Ho Sung Kim
Choong-Gon Choi
Sang Joon Kim
Dong-Wha Kang
Publikationsdatum
23.07.2019
Verlag
Springer Berlin Heidelberg
Erschienen in
European Radiology / Ausgabe 1/2020
Print ISSN: 0938-7994
Elektronische ISSN: 1432-1084
DOI
https://doi.org/10.1007/s00330-019-06285-7

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