Qualitative and quantitative hard-tissue MRI with portable Halbach scanners

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Hauptverfasser: Borreguero, Jose, Santos, Luiz G. C., Cid, Lorena Vega, Castañón, Elisa, Fernández-García, Marina, Benlloch, Pablo, Bosch, Rubén, Conejero, Jesús, García-Cristóbal, Pablo, González-Cebrián, Alba, Guallart-Naval, Teresa, Pallás, Eduardo, Porcar, Laia, Swistunow, Lucas, Algarín, Jose Miguel, Galve, Fernando, Alonso, Joseba
Format: Preprint
Veröffentlicht: 2025
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author Borreguero, Jose
Santos, Luiz G. C.
Cid, Lorena Vega
Castañón, Elisa
Fernández-García, Marina
Benlloch, Pablo
Bosch, Rubén
Conejero, Jesús
García-Cristóbal, Pablo
González-Cebrián, Alba
Guallart-Naval, Teresa
Pallás, Eduardo
Porcar, Laia
Swistunow, Lucas
Algarín, Jose Miguel
Galve, Fernando
Alonso, Joseba
author_facet Borreguero, Jose
Santos, Luiz G. C.
Cid, Lorena Vega
Castañón, Elisa
Fernández-García, Marina
Benlloch, Pablo
Bosch, Rubén
Conejero, Jesús
García-Cristóbal, Pablo
González-Cebrián, Alba
Guallart-Naval, Teresa
Pallás, Eduardo
Porcar, Laia
Swistunow, Lucas
Algarín, Jose Miguel
Galve, Fernando
Alonso, Joseba
contents Purpose: To demonstrate the feasibility of performing in vivo imaging and quantitative relaxation mapping of soft and hard tissues using a low-cost, portable MRI scanner, and to establish the methodological foundations for zero echo time (ZTE) imaging in systems affected by strong field inhomogeneities. Methods: A complete framework for artifact-free ZTE imaging at low field was developed, including: (i) RF pulse pre/counteremphasis calibration to minimize ring-down and electronics switching time; (ii) an extension of a recent single-point double-shot (SPDS) protocol for simultaneous B0 and B1 mapping; and (iii) a model-based reconstruction incorporating these field maps into the encoding matrix. ZTE imaging and variable flip angle (VFA) T1 mapping were performed on phantoms and in vivo human knees and ankles, and benchmarked against standard RARE and STIR acquisitions. Results: The optimized PETRA sequence produced 3D images of knees and ankles within clinically compatible times (< 15 min), revealing hard tissues such as ligaments, tendons, cartilage, and bone that are invisible in spin-echo sequences. The extended SPDS method enabled accurate field mapping, while the VFA approach provided the first in vivo T1 measurements of hard tissues at B0 < 0.1 T. Conclusions: The proposed framework broadens the range of pulse sequences feasible in portable low-field MRI and demonstrates the potential of ZTE for quantitative and structural imaging of musculoskeletal tissues in affordable Halbach-based systems.
format Preprint
id arxiv_https___arxiv_org_abs_2511_15617
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Qualitative and quantitative hard-tissue MRI with portable Halbach scanners
Borreguero, Jose
Santos, Luiz G. C.
Cid, Lorena Vega
Castañón, Elisa
Fernández-García, Marina
Benlloch, Pablo
Bosch, Rubén
Conejero, Jesús
García-Cristóbal, Pablo
González-Cebrián, Alba
Guallart-Naval, Teresa
Pallás, Eduardo
Porcar, Laia
Swistunow, Lucas
Algarín, Jose Miguel
Galve, Fernando
Alonso, Joseba
Medical Physics
Purpose: To demonstrate the feasibility of performing in vivo imaging and quantitative relaxation mapping of soft and hard tissues using a low-cost, portable MRI scanner, and to establish the methodological foundations for zero echo time (ZTE) imaging in systems affected by strong field inhomogeneities. Methods: A complete framework for artifact-free ZTE imaging at low field was developed, including: (i) RF pulse pre/counteremphasis calibration to minimize ring-down and electronics switching time; (ii) an extension of a recent single-point double-shot (SPDS) protocol for simultaneous B0 and B1 mapping; and (iii) a model-based reconstruction incorporating these field maps into the encoding matrix. ZTE imaging and variable flip angle (VFA) T1 mapping were performed on phantoms and in vivo human knees and ankles, and benchmarked against standard RARE and STIR acquisitions. Results: The optimized PETRA sequence produced 3D images of knees and ankles within clinically compatible times (< 15 min), revealing hard tissues such as ligaments, tendons, cartilage, and bone that are invisible in spin-echo sequences. The extended SPDS method enabled accurate field mapping, while the VFA approach provided the first in vivo T1 measurements of hard tissues at B0 < 0.1 T. Conclusions: The proposed framework broadens the range of pulse sequences feasible in portable low-field MRI and demonstrates the potential of ZTE for quantitative and structural imaging of musculoskeletal tissues in affordable Halbach-based systems.
title Qualitative and quantitative hard-tissue MRI with portable Halbach scanners
topic Medical Physics
url https://arxiv.org/abs/2511.15617