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添加13字节 、 2022年3月29日 (二) 11:34
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These models represent a minimal biophysical interpretation for an excitable cell in which current flow across the membrane is due to charging of the membrane capacitance, \( I_C \ ,\) and movement of ions across ion channels.  
 
These models represent a minimal biophysical interpretation for an excitable cell in which current flow across the membrane is due to charging of the membrane capacitance, \( I_C \ ,\) and movement of ions across ion channels.  
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这些模型代表了可兴奋电池的最小生物物理解释(?),其中电流跨膜的原因是膜电容的充电,\(I_C\,\)以及离子在离子通道上的运动。
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这些模型代表了可兴奋电池的最小生物物理解释(?),其中电流跨膜的原因是膜电容的充电,\(<math/>I_C\,\<math>)以及离子在离子通道上的运动。
    
In its simplest version, a conductance-based model represents a neuron by a single isopotential electrical compartment, neglects ion movements between subcellular compartments, and represents only ion movements between the inside and outside of the cell.  
 
In its simplest version, a conductance-based model represents a neuron by a single isopotential electrical compartment, neglects ion movements between subcellular compartments, and represents only ion movements between the inside and outside of the cell.  
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