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

Hyperreflexia after corticospinal tract lesion reflects 1 A afferent circuit changes not increased KCC2 hyperexcitability

皮质脊髓束损伤后的反射亢进反映的是1A传入回路的改变,而非KCC2过度兴奋。

Bethea, Thelma; Adegbenro, Temitope; Martin, John H

Repeated tDCS at Clinically Relevant Field Intensity Can Boost Concurrent Motor Learning in Rats

重复进行临床相关场强的经颅直流电刺激可以增强大鼠的同步运动学习能力

Farahani, Forouzan; Vöröslakos, Mihály; Birnbaum, Andrew M; FallahRad, Mohamad; Williams, Preston T J A; Martin, John H; Parra, Lucas C

Hyperreflexia after corticospinal tract lesion reflects 1A afferent circuit changes not increased KCC2 hyperexcitability

皮质脊髓束损伤后的反射亢进反映的是1A传入回路的改变,而非KCC2兴奋性增强。

Bethea, Thelma; Adegbenro, Temitope; Martin, John H

Repeated tDCS at clinically-relevant field intensity can boost concurrent motor learning in rats

重复进行临床相关场强的经颅直流电刺激可以促进大鼠的同步运动学习。

Farahani, Forouzan; Vöröslakos, Mihály; Birnbaum, Andrew M; FallahRad, Mohamad; Williams, Preston T J A; Martin, John H; Parra, Lucas C

Activity Protects Spinal Premotor Interneurons from Microglial Phagocytosis and Transneuronal Degeneration After Corticospinal Injury

皮质脊髓损伤后,该活动可保护脊髓前运动中间神经元免受小胶质细胞吞噬和跨神经元变性的影响

Pathan, Jasmine; Amer, Alzahraa; Yoshida, Yutaka; Martin, John H

Combined biomaterial scaffold and neuromodulation strategy to promote tissue repair and corticospinal connectivity after spinal cord injury in a rodent model.

结合生物材料支架和神经调控策略,促进啮齿动物脊髓损伤后组织修复和皮质脊髓连接

Williams P T J A, Schelbaum Eva, Ahmanna Chaimae, Alexander Heather, Kanté Kadia, Soares Sylvia, Sharif Hisham, Nothias Fatiha, Martin John H

Effects of motor cortex neuromodulation on the specificity of corticospinal tract spinal axon outgrowth and targeting in rats

运动皮层神经调控对大鼠皮质脊髓束脊髓轴突生长和靶向特异性的影响

Yang, Lillian; Martin, John H

Boosting corticospinal system synaptic plasticity to recover motor functions

增强皮质脊髓系统突触可塑性以恢复运动功能

Song, Weiguo; Martin, John H

Repeated motor cortex theta-burst stimulation produces persistent strengthening of corticospinal motor output and durable spinal cord structural changes in the rat

反复刺激大鼠运动皮层θ节律脉冲可导致皮质脊髓运动输出的持续增强和脊髓结构的持久性改变。

Amer, Alzahraa; Martin, John H

Trans-Spinal Direct Current Stimulation Targets Ca(2+) Channels to Induce Persistent Motor Unit Responses

经脊髓直流电刺激靶向Ca(2+)通道以诱导持续性运动单元反应

Song, Weiguo; Martin, John H