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利用自门控技术在磁共振成像中实现对运动稳健的直接髓鞘成像

Motion-Robust Direct Myelin Imaging in MRI using Self-Gating.

作者信息

Park Jinil, Sedaghat Sam, Oguz Kader Karli, Jung Youngkyoo, Fu Eddie, Wang Nian, Liu Fang, Jang Hyungseok

机构信息

University of California. Davis.

University Hospital Heidelberg.

出版信息

Res Sq. 2025 Aug 27:rs.3.rs-7199927. doi: 10.21203/rs.3.rs-7199927/v1.

Abstract

Direct myelin imaging with inversion-recovery ultrashort-echo-time (IR-UTE) is highly motion-sensitive, yet extra hardware or longer scans are impractical. We evaluated whether a superior-inferior (SI) self-navigator with bit-reversed spoke-angles mitigates motion artifacts without extending acquisition. Dual-echo IR-UTE was implemented at 3T. After an adiabatic inversion pulse, 21 spokes were acquired per segment around the white-matter null point, and dual-echo subtraction suppressed residual long-T2 signals. Adding SI-navigators at the end of each segment allows motion detection without lengthening TR. And bit-reversal is used to pseudo-randomize the spoke-angles. Bloch simulations of a 2D synthetic brain removed 10% of spokes to mimic gating. Three volunteers were scanned: (i) sequential-ordering, no-motion; (ii) bit-reversed, no-motion; (iii) bit-reversed with deliberate head nods. The navigator rejected 1,280 of 12,000 spokes (10.7%) during nodding, and the same gating was reconstructed on motion-free data. Simulation showed coherent streaks for sequential ordering but an isotropic point-spread function for bit-reversal. In vivo, gating degraded only the sequential dataset. bit-reversal preserved subcortical and deep-white-matter detail. During intentional nodding, gating with bit-reversal enhanced myelin contrast, outperforming the image reconstructed from the ungated data. The SI-navigator plus bit-reversal enables effective motion gating without hardware or time penalty, supporting routine motion-robust myelin mapping.

摘要

采用反转恢复超短回波时间(IR-UTE)的直接髓鞘成像对运动高度敏感,但额外的硬件或更长的扫描时间不切实际。我们评估了具有位反转辐条角度的上下(SI)自导航器是否能在不延长采集时间的情况下减轻运动伪影。在3T场强下实施双回波IR-UTE。在绝热反转脉冲后,围绕白质零点每段采集21根辐条,并通过双回波减法抑制残留的长T2信号。在每段末尾添加SI导航器可实现运动检测而不延长TR。并且使用位反转来伪随机化辐条角度。对二维合成脑进行的布洛赫模拟去除了10%的辐条以模拟门控。对三名志愿者进行了扫描:(i)顺序排列,无运动;(ii)位反转,无运动;(iii)故意点头时进行位反转。在点头过程中,导航器在12000根辐条中剔除了1280根(10.7%),并且在无运动数据上重建了相同的门控。模拟显示顺序排列时有相干条纹,而位反转时有各向同性的点扩散函数。在活体中,门控仅使顺序数据集质量下降。位反转保留了皮质下和深部白质细节。在故意点头期间,采用位反转的门控增强了髓鞘对比度,优于从未门控数据重建的图像。SI导航器加位反转能够在不增加硬件或时间成本的情况下实现有效的运动门控,支持常规的运动稳健性髓鞘成像。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7417/12408034/b720046fb668/nihpp-rs7199927v1-f0001.jpg

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