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The axon hillock has a high density of Na+ channels, which lowers the threshold for initiating an action potential. MetaNeuton can be used to measure the effect of Na-channel density on the threshold of action potential generation. Vary "gNa max" from 200 to 380 mS/cm2 in 20 mS/cm2 steps. (Na+ channel density is proportional to gNa max.)


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MetaNeuron, a neuron simulation program, is an effective interactive tool for teaching cellular neurophysiology and is designed foremost as a platform for conducting neurophysiological experiments in silico. MetaNeuron, a neuron simulation program, is an effective interactive tool for teaching cellular neurophysiology. The computer program simulates a wide range of neuronal behavior in its six.


MetaNeuron Lesson 4 1. Action Potential Threshold.

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MetaNeuron, a neuron simulation program, is an effective interactive tool for teaching cellular neurophysiology. The computer program simulates a wide range of neuronal behavior in its six lessons: i) Resting Membrane Potential, ii) Membrane Time Constant, iii) Membrane Length Constant, iv) Axon Action Potential, v) Axon Voltage Clamp, and vi) Synaptic Potential.


MetaNeuron

MetaNeuron, an application installed on our computers, simulates various aspects of membrane potentials in axons. Before class, read the introductory material on MetaNeuron simulation software, including the description of MetaNeuron's well-designed interface controls, and watch the video that demonstrates how to use the controls. Look through.


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MetaNeuron is a free computer program that models the basic electrical properties of neurons. The program is intended for the beginning neuroscience student and requires no prior experience with computer simulations. Different aspects of neuronal behavior are highlighted in the six lessons presented in MetaNeuron. The first three lessons.


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MetaNeuron

"The Metaneuron activity was quite time-consuming and I didn't really learn a lot from it." Open in a separate window These systematic exercises allow an instructor to illustrate a much greater number neurophysiological concepts in a single laboratory period than would be deliverable if the pedagogy was founded solely on wet lab.


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MetaNeuron. This week, we will run computer simulations of membrane potentials using MetaNeuron, an application written at the University of Minnesota by Professor Eric Newman and Mark Newman. MetaNeuron is already installed on our laboratory computers (look for its icon in the dock), and you should launch it when you are ready to begin..


Metaneuron Lab Open Lesson 1 and restore the default values in the file menu. The default

Version 2.03 - New Features. There are now two options for the stimulus: a square wave pulse and a synaptic potential-shaped pulse with an exponential rise and fall. Stimulus Train parameters are now in a separate window. An option has been added to turn on or off the normalization option. With "Normalize" selected, the stimulus is scaled.


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MetaNeuron can be used to measure the effect of Na+ channel density on the threshold for action potential initiation. Vary gNa max from 200 to 380 mS/cm2 in 20 mS/cm2 steps. (Na+ channel density is proportional to gNa max.) For each gNa max value, determine the threshold for initiating an action. potential.


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MetaNeuron, a neuron simulation program, is an effective interactive tool for teaching cellular neurophysiology. The computer program simulates a wide range of neuronal behavior in its six lessons.


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MetaNeuron represents 1 cm 2 of neuronal membrane and has a capacitance of 1 F. Operation of MetaNeuron. MetaNeuron simulations run automatically when the program is opened. A lesson is selected from the "Lesson" pull-down menu or from the function keys. The six lessons in MetaNeuron run independently of each other.


MetaNeuron

JUNE is a publication of Faculty for Undergraduate Neuroscience (FUN) www.funjournal.org. select parameters appears on the bottom (Figure 1). MetaNeuron lessons are selected from the "Lesson" pull-down menu or from function keys. The six lessons run independently of each other. If the parameters in one lesson are changed, the changes will.


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MetaNeuron, a neuron simulation program, is an effective interactive tool for teaching cellular neurophysiology. The computer program simulates a wide range of neuronal behavior in its six lessons: i) Resting Membrane Potential, ii) Membrane Time Constant, iii) Membrane Length Constant, iv) Axon Action Potential, v) Axon Voltage Clamp, and vi) Synaptic Potential.