neostriatal region
新纹状体区域
neostriatal functions
新纹状体功能
neostriatal activity
新纹状体活动
neostriatal damage
新纹状体损伤
neostriatal circuits
新纹状体回路
neostriatal neurons
新纹状体神经元
neostriatal plasticity
新纹状体可塑性
neostriatal pathways
新纹状体通路
neostriatal projection
新纹状体投射
neostriatal disorders
新纹状体障碍
neostriatal neurons are essential for motor coordination.
尾状核神经元对运动协调至关重要。
damage to neostriatal pathways can cause movement disorders.
尾状核通路损伤可导致运动障碍。
the neostriatal region receives input from the cerebral cortex.
尾状核区域接收来自大脑皮层的输入。
neostriatal degeneration is observed in certain neurological diseases.
在某些神经系统疾病中观察到尾状核退化。
research shows neostriatal function declines with age.
研究表明尾状核功能随年龄增长而下降。
neostriatal circuits play a role in habit formation.
尾状核回路在习惯形成中发挥作用。
scientists study neostriatal activity in parkinson's models.
科学家在帕金森病模型中研究尾状核活动。
neostriatal lesions alter decision-making processes.
尾状核损伤改变决策过程。
the neostriatal system integrates sensory and motor information.
尾状核系统整合感觉和运动信息。
pharmacological agents affect neostriatal neurotransmitter levels.
药理学药物影响尾状核神经递质水平。
neostriatal plasticity allows for motor learning.
尾状核可塑性使运动学习成为可能。
neostriatal region
新纹状体区域
neostriatal functions
新纹状体功能
neostriatal activity
新纹状体活动
neostriatal damage
新纹状体损伤
neostriatal circuits
新纹状体回路
neostriatal neurons
新纹状体神经元
neostriatal plasticity
新纹状体可塑性
neostriatal pathways
新纹状体通路
neostriatal projection
新纹状体投射
neostriatal disorders
新纹状体障碍
neostriatal neurons are essential for motor coordination.
尾状核神经元对运动协调至关重要。
damage to neostriatal pathways can cause movement disorders.
尾状核通路损伤可导致运动障碍。
the neostriatal region receives input from the cerebral cortex.
尾状核区域接收来自大脑皮层的输入。
neostriatal degeneration is observed in certain neurological diseases.
在某些神经系统疾病中观察到尾状核退化。
research shows neostriatal function declines with age.
研究表明尾状核功能随年龄增长而下降。
neostriatal circuits play a role in habit formation.
尾状核回路在习惯形成中发挥作用。
scientists study neostriatal activity in parkinson's models.
科学家在帕金森病模型中研究尾状核活动。
neostriatal lesions alter decision-making processes.
尾状核损伤改变决策过程。
the neostriatal system integrates sensory and motor information.
尾状核系统整合感觉和运动信息。
pharmacological agents affect neostriatal neurotransmitter levels.
药理学药物影响尾状核神经递质水平。
neostriatal plasticity allows for motor learning.
尾状核可塑性使运动学习成为可能。
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