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10.5T下健康人类的介观全脑T*加权及相关定量磁共振成像

Mesoscopic whole-brain T *-weighted and associated quantitative MRI in healthy humans at 10.5 T.

作者信息

Liu Jiaen, van Gelderen Peter, de Zwart Jacco A, Duyn Jeff H, Huang Yujia, Grant Andrea, Auerbach Edward, Waks Matt, Lagore Russell, Delabarre Lance, Sadeghi-Tarakameh Alireza, Eryaman Yigitcan, Adriany Gregor, Ugurbil Kamil, Wu Xiaoping

出版信息

bioRxiv. 2025 Apr 24:2025.04.21.649819. doi: 10.1101/2025.04.21.649819.

Abstract

PURPOSE

To demonstrate the feasibility and performance of mesoscopic whole brain T *-weighted (T *w) MRI at 10.5 T by combining a motion-robust multi-echo gradient-echo (GRE) method with high-density RF receive arrays.

METHODS

Multi-echo GRE data were collected in healthy adults at isotropic 0.5 mm resolution using a custom-built 16-channel transmit/80-channel receive (16Tx/80Rx) RF coil. Whole brain images were reconstructed with navigator-guided joint motion and field correction and were used for quantitative * and susceptibility ( ) mapping. Intrinsic signal-to-noise ratio (iSNR) and quantification precision for * and were also estimated. The results were compared with those obtained in the same subjects with matched resolution at 7 T using the commercial Nova 1Tx/32Rx coil, to demonstrate the iSNR and quantification precision gains at 10.5 T. G-factors were also calculated at each field strength to evaluate parallel imaging performances. To demonstrate the benefit of increased parallel imaging performances at 10.5 T, whole brain images with higher acceleration were also obtained using a custom-built 16Tx/128Rx coil.

RESULTS

the utilized motion robust GRE sequence and reconstruction effectively reduced artifacts from motion and field changes during scans, producing high-quality whole-brain T *w images and multi-parametric maps at 10.5 T with delineation of fine-scale brain structures. Compared to 7 T, the 10.5 T approach led to gains in both iSNR and quantification precision of * and . Quantitatively, iSNR estimated in the peripheral cortical gray matter increased by 42%. Parallel imaging performances were also improved at 10.5 T owing to the utilized high-density coils compared to the commonly used commercially available coil at 7 T, allowing high-quality images with up to 12-fold combined acceleration when using the 128Rx coil.

CONCLUSION

It is feasible to perform motion-robust whole-brain mesoscopic multi-echo gradient echo imaging of the human brain at 10.5 T. Intrinsic SNR and quantification precision of * and were estimated and compared with 7 T results. The results presented here may shed light on future optimal implementation of anatomic T *w brain MRI at ultrahigh field beyond 7 T.

摘要

目的

通过将运动稳健的多回波梯度回波(GRE)方法与高密度射频接收阵列相结合,展示在10.5 T场强下进行介观全脑T加权(Tw)磁共振成像(MRI)的可行性和性能。

方法

使用定制的16通道发射/80通道接收(16Tx/80Rx)射频线圈,以各向同性0.5 mm分辨率在健康成年人中采集多回波GRE数据。采用导航器引导的联合运动和场校正重建全脑图像,并用于定量T和磁化率(χ)映射。还估计了T和χ的固有信噪比(iSNR)和定量精度。将结果与使用商用Nova 1Tx/32Rx线圈在7 T场强下对相同受试者进行匹配分辨率扫描所获得的结果进行比较,以证明10.5 T场强下iSNR和定量精度的提高。还计算了每个场强下的G因子,以评估并行成像性能。为了证明10.5 T场强下并行成像性能提高的益处,还使用定制的16Tx/128Rx线圈获得了更高加速倍数的全脑图像。

结果

所采用的运动稳健GRE序列和重建方法有效减少了扫描过程中运动和场变化产生的伪影,在10.5 T场强下生成了高质量的全脑Tw图像和多参数图,清晰显示了精细尺度的脑结构。与7 T相比,10.5 T的方法使T和χ的iSNR和定量精度均有所提高。定量分析表明,外周皮质灰质中的iSNR提高了42%。与7 T常用的商用线圈相比,由于采用了高密度线圈,10.5 T场强下的并行成像性能也得到了改善,使用128Rx线圈时可实现高达12倍的联合加速,从而获得高质量图像。

结论

在10.5 T场强下对人脑进行运动稳健的全脑介观多回波梯度回波成像是可行的。估计了T和χ的固有信噪比和定量精度,并与7 T的结果进行了比较。本文结果可能为7 T以上超高场强下解剖学Tw脑MRI的未来最佳实施提供参考。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/345c/12190817/1bbd7ae02061/nihpp-2025.04.21.649819v1-f0001.jpg

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