日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Publisher Correction: Ultra-high gradient connectomics and microstructure MRI scanner for imaging of human brain circuits across scales

出版商更正:用于跨尺度成像人类大脑回路的超高梯度连接组学和微结构磁共振成像扫描仪

Ramos-Llordén, Gabriel; Lee, Hong-Hsi; Davids, Mathias; Dietz, Peter; Krug, Andreas; Kirsch, John E; Mahmutovic, Mirsad; Müller, Alina; Ma, Yixin; Lee, Hansol; Maffei, Chiara; Yendiki, Anastasia; Bilgic, Berkin; Park, Daniel J; Tian, Qiyuan; Clifford, Bryan; Lo, Wei-Ching; Stocker, Stefan; Fischer, Jasmine; Ruyters, Gudrun; Roesler, Manuela; Potthast, Andreas; Benner, Thomas; Rummert, Elmar; Schuster, Rebecca; Basser, Peter J; Witzel, Thomas; Wald, Lawrence L; Rosen, Bruce R; Keil, Boris; Huang, Susie Y

Ultra-high gradient connectomics and microstructure MRI scanner for imaging of human brain circuits across scales

用于跨尺度成像人类大脑回路的超高梯度连接组学和微结构磁共振成像扫描仪

Ramos-Llordén, Gabriel; Lee, Hong-Hsi; Davids, Mathias; Dietz, Peter; Krug, Andreas; Kirsch, John E; Mahmutovic, Mirsad; Müller, Alina; Ma, Yixin; Lee, Hansol; Maffei, Chiara; Yendiki, Anastasia; Bilgic, Berkin; Park, Daniel J; Tian, Qiyuan; Clifford, Bryan; Lo, Wei-Ching; Stocker, Stefan; Fischer, Jasmine; Ruyters, Gudrun; Roesler, Manuela; Potthast, Andreas; Benner, Thomas; Rummert, Elmar; Schuster, Rebecca; Basser, Peter J; Witzel, Thomas; Wald, Lawrence L; Rosen, Bruce R; Keil, Boris; Huang, Susie Y

Age-Related Alterations in Hippocampal Microstructure Quantified Using High-Gradient Diffusion MRI (dMRI) in an Unfolded Hippocampal Space

利用高梯度扩散磁共振成像(dMRI)在展开的海马空间中量化与年龄相关的海马微观结构改变

Ma, Yixin; Lee, Hansol; Chan, Kwok-Shing; Eskandarian, Laleh; Gaudet, Kyla; Tian, Qiyuan; Bhatt, Aneri; Gerold, Julianna; Russo, Andrew W; Salat, David H; Klawiter, Eric C; Huang, Susie Y; Lee, Hong-Hsi

What If Each Voxel Were Measured With a Different Diffusion Protocol?

如果每个体素都采用不同的扩散方案进行测量会怎样?

Coelho, Santiago; Lemberskiy, Gregory; Zhu, Ante; Lee, Hong-Hsi; Abad, Nastaren; Foo, Thomas K F; Fieremans, Els; Novikov, Dmitry S

Complementary Sensitivity of Fixed-Time and Fixed-Oscillation Regimes to Exchange and Structural Disorder in the Human Brain Revealed Using Oscillating-Gradient Diffusion MRI With Ultra-Strong Gradients

利用超强梯度振荡梯度扩散磁共振成像揭示固定时间和固定振荡模式对人脑交换和结构紊乱的互补敏感性

Sung, Dongsuk; Chan, Kwok-Shing; Gerold, Julianna; Zhong, Wen; Zheng, Jialan; Tian, Qiyuan; Guo, Hua; Huang, Susie Y; Lee, Hong-Hsi

Scattering approach to diffusion quantifies axonal damage in brain injury

散射扩散法可量化脑损伤中的轴突损伤

Abdollahzadeh, Ali; Coronado-Leija, Ricardo; Lee, Hong-Hsi; Sierra, Alejandra; Fieremans, Els; Novikov, Dmitry S

Quantifying axonal features of human superficial white matter from three-dimensional multibeam serial electron microscopy data assisted by deep learning

利用深度学习辅助,从三维多束连续电子显微镜数据中量化人类浅层白质的轴突特征

Tian, Qiyuan; Ngamsombat, Chanon; Lee, Hong-Hsi; Berger, Daniel R; Wu, Yuelong; Fan, Qiuyun; Bilgic, Berkin; Li, Ziyu; Novikov, Dmitry S; Fieremans, Els; Rosen, Bruce R; Lichtman, Jeff W; Huang, Susie Y

In vivo cortical microstructure mapping using high-gradient diffusion MRI accounting for intercompartmental water exchange effects

利用高梯度扩散磁共振成像技术进行体内皮层微结构映射,并考虑隔室间水交换效应

Dong, Tanxin; Lee, Hong-Hsi; Zang, Han; Lee, Hansol; Tian, Qiyuan; Wan, Liang; Fan, Qiuyun; Huang, SusieY

Simultaneous 3D quantitative magnetization transfer imaging and susceptibility mapping

同步三维定量磁化转移成像和磁化率映射

Jang, Albert; Chan, Kwok-Shing; Mareyam, Azma; Stockmann, Jason; Huang, Susie Yi; Wang, Nian; Jang, Hyungseok; Lee, Hong-Hsi; Liu, Fang

Romer-EPTI: Rotating-view motion-robust super-resolution EPTI for SNR-efficient distortion-free in-vivo mesoscale diffusion MRI and microstructure imaging

Romer-EPTI:一种旋转视角、运动鲁棒的超分辨率EPTI技术,用于信噪比高、无失真的体内介观扩散MRI和微结构成像。

Dong, Zijing; Reese, Timothy G; Lee, Hong-Hsi; Huang, Susie Y; Polimeni, Jonathan R; Wald, Lawrence L; Wang, Fuyixue