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A Siemens Single-Shot T1 Mapping Sequence as an Alternative to MOLLI.

A Siemens Single-Shot T1 Mapping Sequence as an Alternative to MOLLI.

期刊: La Tunisie medicale 日期: 2026-05-01 PMID: 42578770 DOI: 10.62438/tunismed.v104i05.6107 浏览: 18
作者: Dali M, Benameur N, Arous Y, Labidi S
M, D., N, B., Y, A., & S, L. (2026). A Siemens Single-Shot T1 Mapping Sequence as an Alternative to MOLLI.. La Tunisie medicale. https://doi.org/10.62438/tunismed.v104i05.6107
M D, N B, Y A, S L. A Siemens Single-Shot T1 Mapping Sequence as an Alternative to MOLLI.. La Tunisie medicale. 2026; doi: 10.62438/tunismed.v104i05.6107
M D, N B, Y A, et al. A Siemens Single-Shot T1 Mapping Sequence as an Alternative to MOLLI.[J]. La Tunisie medicale. 2026. DOI: 10.62438/tunismed.v104i05.6107.
@article{m2026,
  author = {Dali M and Benameur N and Arous Y and Labidi S},
  title = {A Siemens Single-Shot T1 Mapping Sequence as an Alternative to MOLLI.},
  journal = {La Tunisie medicale},
  year = {2026},
  doi = {10.62438/tunismed.v104i05.6107},
  note = {PMID: 42578770},
}
TY  - JOUR
AU  - Dali M
AU  - Benameur N
AU  - Arous Y
AU  - Labidi S
TI  - A Siemens Single-Shot T1 Mapping Sequence as an Alternative to MOLLI.
T2  - La Tunisie medicale
PY  - 2026
DO  - 10.62438/tunismed.v104i05.6107
AN  - PMID:42578770
ER  - 

摘要

BACKGROUND: Native T1 mapping has become an essential tool for quantitative myocardial tissue characterization in cardiac magnetic resonance (CMR). However, widely used techniques such as Modified Look-Locker Inversion Recovery (MOLLI) remain limited by their proprietary nature and limited accessibility, particularly in resource-constrained settings. AIM: This study aimed to develop and validate a more accessible Single-Shot T1 mapping technique as a practical alternative to MOLLI, and to assess its agreement and diagnostic performance against a reference standard (Circle Cardiovascular Imaging, CVI⁴²). METHODS: A retrospective study was conducted on 40 subjects (25 healthy controls and 15 patients with cardiac pathologies) who underwent 3T CMR imaging. Native T1 values were acquired using a modified Single-Shot inversion recovery scheme (3(3)3(3)5). Quantitative analysis was performed using custom MATLAB-based post-processing and compared with reference measurements obtained using CVI⁴² software. Agreement was assessed using Bland-Altman analysis, while group differences were evaluated using independent t-tests. RESULTS: Pathological subjects demonstrated significantly elevated native T1 values compared to healthy controls (1566 ± 65 ms vs. 1079 ± 80 ms, p < 0.001). The proposed method showed strong agreement with the reference standard, with a mean difference of 5.7 ms and no statistically significant bias. Additionally, the Single-Shot approach exhibited significantly reduced inter-subject variability compared to CVI⁴²-based measurements. CONCLUSION: The proposed Single-Shot T1 mapping technique provides a reliable, reproducible, and accessible alternative to MOLLI, with comparable accuracy and improved numerical stability. This approach may expand access to advanced myocardial tissue characterization, particularly in low-resource settings.

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