oligodendria damage
寡突胶质细胞损伤
oligodendria loss
寡突胶质细胞丢失
oligodendria regeneration
寡突胶质细胞再生
damaged oligodendria
受损的寡突胶质细胞
healthy oligodendria
健康的寡突胶质细胞
oligodendria repair
寡突胶质细胞修复
oligodendria maturation
寡突胶质细胞成熟
oligodendria injury
寡突胶质细胞保护
oligodendria protection
寡突胶质细胞发育
oligodendria development
oligodendria produce the myelin sheath that insulates nerve fibers in the central nervous system.
少突胶质细胞产生髓鞘,髓鞘包裹中枢神经系统中的神经纤维。
damage to oligodendria can lead to multiple sclerosis and other demyelinating diseases.
少突胶质细胞的损伤可导致多发性硬化症和其他脱髓鞘疾病。
oligodendria transport lipids and proteins to maintain the integrity of myelin sheaths.
少突胶质细胞运输脂质和蛋白质以维持髓鞘的完整性。
the development of oligodendria is regulated by specific growth factors in the brain.
少突胶质细胞的发育受大脑中特定生长因子的调控。
each oligodendrocyte can extend processes to myelinate multiple axons simultaneously.
每个少突胶质细胞可以延伸突起同时髓鞘化多条轴突。
oligodendria play a critical role in maintaining the speed of nerve impulse conduction.
少突胶质细胞在维持神经冲动传导速度方面发挥关键作用。
research has shown that oligodendria can regenerate under certain conditions.
研究表明少突胶质细胞在特定条件下可以再生。
the loss of oligodendria contributes to cognitive decline in aging populations.
少突胶质细胞的丧失导致老年人群认知能力下降。
oligodendria require metabolic support from astrocytes to function properly.
少突胶质细胞需要星形胶质细胞的代谢支持才能正常运作。
abnormal oligodendria development has been linked to certain psychiatric disorders.
少突胶质细胞发育异常与某些精神疾病有关。
advanced imaging techniques allow scientists to observe oligodendria in living tissue.
先进的成像技术使科学家能够观察活体组织中的少突胶质细胞。
oligodendria synthesize myelin basic protein essential for structural stability.
少突胶质细胞合成髓鞘碱性蛋白,这对结构稳定性至关重要。
oligodendria damage
寡突胶质细胞损伤
oligodendria loss
寡突胶质细胞丢失
oligodendria regeneration
寡突胶质细胞再生
damaged oligodendria
受损的寡突胶质细胞
healthy oligodendria
健康的寡突胶质细胞
oligodendria repair
寡突胶质细胞修复
oligodendria maturation
寡突胶质细胞成熟
oligodendria injury
寡突胶质细胞保护
oligodendria protection
寡突胶质细胞发育
oligodendria development
oligodendria produce the myelin sheath that insulates nerve fibers in the central nervous system.
少突胶质细胞产生髓鞘,髓鞘包裹中枢神经系统中的神经纤维。
damage to oligodendria can lead to multiple sclerosis and other demyelinating diseases.
少突胶质细胞的损伤可导致多发性硬化症和其他脱髓鞘疾病。
oligodendria transport lipids and proteins to maintain the integrity of myelin sheaths.
少突胶质细胞运输脂质和蛋白质以维持髓鞘的完整性。
the development of oligodendria is regulated by specific growth factors in the brain.
少突胶质细胞的发育受大脑中特定生长因子的调控。
each oligodendrocyte can extend processes to myelinate multiple axons simultaneously.
每个少突胶质细胞可以延伸突起同时髓鞘化多条轴突。
oligodendria play a critical role in maintaining the speed of nerve impulse conduction.
少突胶质细胞在维持神经冲动传导速度方面发挥关键作用。
research has shown that oligodendria can regenerate under certain conditions.
研究表明少突胶质细胞在特定条件下可以再生。
the loss of oligodendria contributes to cognitive decline in aging populations.
少突胶质细胞的丧失导致老年人群认知能力下降。
oligodendria require metabolic support from astrocytes to function properly.
少突胶质细胞需要星形胶质细胞的代谢支持才能正常运作。
abnormal oligodendria development has been linked to certain psychiatric disorders.
少突胶质细胞发育异常与某些精神疾病有关。
advanced imaging techniques allow scientists to observe oligodendria in living tissue.
先进的成像技术使科学家能够观察活体组织中的少突胶质细胞。
oligodendria synthesize myelin basic protein essential for structural stability.
少突胶质细胞合成髓鞘碱性蛋白,这对结构稳定性至关重要。
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