Fig.6 The neuropil of lamina Ⅱ in L4 spinal dorsal horn of rat; showing type Ⅲ complex terminal (CⅢ) and dendrite(D).
图6大鼠L4脊髓后角Ⅱ板层食管癌神经毡,示Ⅲ型复合终末(CⅢ)和树突(D)。
Fig.4 The neuropil of lamina Ⅱ in L4 spinal dorsal horn of rat; showing type Ⅰ complex terminal (CⅠ) and dendrite(D).
图4大鼠L4脊髓后角Ⅱ板层食管癌神经毡,示Ⅰ型复合终末(CⅠ)和树突(D)。
Rapid growth of “mother dendrites” in a given location of a melt at just below the liquidus temperature, that growth being the result of rapid heat extraction from the melt, or from recalescence.
在特定的熔点,以低于液相线的温度快速生成“母晶枝”,这是使熔融金属或复辉快速散热的结果。
Neurons receive signals through their dendrites.
神经元通过树突接收信号。
Dendrites are important for transmitting electrical signals within the brain.
树突对于在大脑内传递电信号很重要。
Dendrites help integrate information from other neurons.
树突帮助整合来自其他神经元的信息。
Damage to dendrites can impair neuronal communication.
树突受损可能影响神经元间的通信。
Dendrites extend from the cell body of a neuron.
树突从神经元的细胞体延伸出来。
Fig.6 The neuropil of lamina Ⅱ in L4 spinal dorsal horn of rat; showing type Ⅲ complex terminal (CⅢ) and dendrite(D).
图6大鼠L4脊髓后角Ⅱ板层食管癌神经毡,示Ⅲ型复合终末(CⅢ)和树突(D)。
Fig.4 The neuropil of lamina Ⅱ in L4 spinal dorsal horn of rat; showing type Ⅰ complex terminal (CⅠ) and dendrite(D).
图4大鼠L4脊髓后角Ⅱ板层食管癌神经毡,示Ⅰ型复合终末(CⅠ)和树突(D)。
Rapid growth of “mother dendrites” in a given location of a melt at just below the liquidus temperature, that growth being the result of rapid heat extraction from the melt, or from recalescence.
在特定的熔点,以低于液相线的温度快速生成“母晶枝”,这是使熔融金属或复辉快速散热的结果。
Neurons receive signals through their dendrites.
神经元通过树突接收信号。
Dendrites are important for transmitting electrical signals within the brain.
树突对于在大脑内传递电信号很重要。
Dendrites help integrate information from other neurons.
树突帮助整合来自其他神经元的信息。
Damage to dendrites can impair neuronal communication.
树突受损可能影响神经元间的通信。
Dendrites extend from the cell body of a neuron.
树突从神经元的细胞体延伸出来。
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