CORRECTION article
Front. Oncol.
Sec. Radiation Oncology
Volume 15 - 2025 | doi: 10.3389/fonc.2025.1682399
Correction: Validating a T1-weighted cine MRI for a 1.5T MR-Linac with temporal resolution appropriate for respiratory motion
Provisionally accepted- 1The University of Iowa Roy J Carver Department of Biomedical Engineering, Iowa City, United States
- 2Department of MR Therapy, Philips Healthcare, Cleveland OH, United States
- 3Department of Radiation Oncology, University of Iowa, Iowa City, United States
- 4Philips Healthcare Nederland, Eindhoven, Netherlands
- 5Department of Radiation Oncology, University of Iowa, Iowa City, IA, United States
- 6Department of therapeudtc Radiology, School of Medicine, Yale University, New Haven, CT, United States
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Correction on: Shaffer Nathan , Dresner Alex , Ying Qi , Alberts Eveline , Kruiskamp Marijn , Caster Joseph , Hyer Daniel , Snyder Jeffrey , St-Aubin Joel, "Validating a T1-weighted cine MRI for a 1.5T MR-Linac with temporal resolution appropriate for respiratory motion," Front Oncol vol 15 (2025) DOI=10.3389/fonc.2025.1575001 Incorrect supplementary material File missing "Missing Supplementary Material In the published article, Supplementary T1MM_SupportingDoc_Frontiers.docx was mistakenly not included in the publication. The missing material appears below: Images from the remaining eight patients scanned with both the T1-weighted cine MRI scan and the bTFE sequence are shown in supplemental Figures below (Figures 1 – 8). The T1-weighted cine MRI showed improved tracking accuracy for every case studied and improved CNR for the liver cancer patients investigated. Figure Captions: Figure 1: Images from patient 2. The shown images are T1-weighted cine MRI sagittal (a) and coronal (b), bTFE cine MRI sagittal (c) and coronal (d). The target is lightly outlined in red. Figure 2: Images from patient 3. The shown images are T1-weighted cine MRI sagittal (a) and coronal (b), bTFE cine MRI sagittal (c) and coronal (d). The target is lightly outlined in red. Figure 3: Images from patient 4. The shown images are T1-weighted cine MRI sagittal (a) and coronal (b), bTFE cine MRI sagittal (c) and coronal (d). The target is lightly outlined in red. St-Aubin et al. Frontiers Media SA 2 Figure 4: Images from patient 5. The shown images are T1-weighted cine MRI sagittal (a) and coronal (b), bTFE cine MRI sagittal (c) and coronal (d). The target is lightly outlined in red. Figure 5: Images from patient 6. The shown images are T1-weighted cine MRI sagittal (a) and coronal (b), bTFE cine MRI sagittal (c) and coronal (d). The target is lightly outlined in red. Figure 6: Images from patient 8. The shown images are T1-weighted cine MRI sagittal (a) and coronal (b), bTFE cine MRI sagittal (c) and coronal (d). The target is lightly outlined in red. Figure 7: Images from patient 10. The shown images are T1-weighted cine MRI sagittal (a) and coronal (b), bTFE cine MRI sagittal (c) and coronal (d). The target is lightly outlined in red. Figure 8: Images from patient 11. The shown images are T1-weighted cine MRI sagittal (a) and coronal (b), bTFE cine MRI sagittal (c) and coronal (d). The target is lightly outlined in red.
Keywords: MR-linac, T1-weighted cine MRI, motion monitoring, tumor tracking, T1-weighted imaging
Received: 08 Aug 2025; Accepted: 13 Oct 2025.
Copyright: © 2025 Shaffer, Dresner, Ying, Alberts, Kruiskamp, Caster, Hyer, Snyder and St-Aubin. This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
* Correspondence: Joel St-Aubin, joel-st-aubin@uiowa.edu
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