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

Thiorphan reprograms neurons to promote functional recovery after spinal cord injury

硫吗啡烷通过重编程神经元来促进脊髓损伤后的功能恢复

van Niekerk, E A; de Freria, C Marques; Mancarci, B O; Groeniger, K; Kulinich, D; Riley, T; Kawaguchi, R; Okawa, S; Vokes, T; Rosenzweig, E S; Sinopoulou, E; Castle, M J; Huie, R; Ferguson, A R; Kfoury-Beaumont, N; Khalessi, A; Pavlidis, P; Tuszynski, M H

Neuroinflammation: targeting microglia for neuroprotection and repair after spinal cord injury

神经炎症:靶向小胶质细胞以进行脊髓损伤后的神经保护和修复

Cavalcanti, Roberta Ramos; Almeida, Fernanda Martins; Martinez, Ana Maria Blanco; Freria, Camila Marques

Combining neural progenitor cell transplant and rehabilitation for enhanced recovery after cervical spinal cord injury

结合神经祖细胞移植和康复治疗以促进颈椎脊髓损伤后的康复

Freria, Camila M; Lu, Paul

Adaptation of a cervical bilateral contusive spinal cord injury for study of skilled forelimb function

适应双侧颈部挫伤性脊髓损伤以研究熟练的前肢功能

Camila Marques Freria, Lori Graham, Ali Azimi, Paul Lu

Rehabilitation combined with neural progenitor cell grafts enables functional recovery in chronic spinal cord injury

康复治疗结合神经祖细胞移植能够促进慢性脊髓损伤患者的功能恢复。

Paul Lu ,Camila M Freria ,Lori Graham ,Amanda N Tran ,Ashley Villarta ,Dena Yassin ,J Russell Huie ,Adam R Ferguson ,Mark H Tuszynski

Methods for culturing adult CNS neurons reveal a CNS conditioning effect

培养成年中枢神经系统神经元的方法揭示了中枢神经系统调节效应

Erna A van Niekerk ,Riki Kawaguchi ,Camila Marques de Freria ,Kimberly Groeniger ,Maria C Marchetto ,Sebastian Dupraz ,Frank Bradke ,Daniel H Geschwind ,Fred H Gage ,Mark H Tuszynski

Neural Stem Cells: Promoting Axonal Regeneration and Spinal Cord Connectivity

神经干细胞:促进轴突再生和脊髓连接

de Freria, Camila Marques; Van Niekerk, Erna; Blesch, Armin; Lu, Paul

Serial Systemic Injections of Endotoxin (LPS) Elicit Neuroprotective Spinal Cord Microglia through IL-1-Dependent Cross Talk with Endothelial Cells

连续系统性注射内毒素 (LPS) 通过与内皮细胞的 IL-1 依赖性串扰引发神经保护性脊髓小胶质细胞

Camila M Freria, Faith H Brennan, David R Sweet, Zhen Guan, Jodie C Hall, Kristina A Kigerl, Daniel P Nemeth, Xiaoyu Liu, Steve Lacroix, Ning Quan, Phillip G Popovich

Deletion of the Fractalkine Receptor, CX3CR1, Improves Endogenous Repair, Axon Sprouting, and Synaptogenesis after Spinal Cord Injury in Mice

删除 Fractalkine 受体 CX3CR1 可改善小鼠脊髓损伤后的内源性修复、轴突发芽和突触形成

Camila M Freria, Jodie C E Hall, Ping Wei, Zhen Guan, Dana M McTigue, Phillip G Popovich

Impairment of toll-like receptors 2 and 4 leads to compensatory mechanisms after sciatic nerve axotomy

坐骨神经轴突切断术后,Toll样受体2和4的功能障碍会导致代偿机制的出现。

Freria, C M; Bernardes, D; Almeida, G L; Simões, G F; Barbosa, G O; Oliveira, A L R