Background: Axon calibers vary widely among different animals, neuron classes, and even within the same neuron. What determines the diameter of axon branches? Results: We pursue the hypothesis that the axon caliber has evolved to minimize signal propagation delays, while keeping arbor volume to a minimum. For a general cost function, we show that the optimal diameters of mother and daughter branches at a bifurcation satisfy a power law. The derivation relies on the fact that the axon conduction speed scales as a power of axon diameter. Although available data are consistent with the law, there is a large spread in the data. Future experimental tests will determine whether this spread is due to biological variability or measurement error. Co...
<p>The power-law relationship is valid at both proximal (left-pointed triangle) and distal (right-po...
Electrical coupling provides an important pathway for signal transmission between neurons. In severa...
We investigate rules that govern neuronal arborization, specifically the local geometry of the bifur...
Abstract Background Axon calibers vary widely among different animals, neuron classes, and even with...
CNS axons differ in diameter (d) by nearly 100-fold (∼0.1-10 μm); therefore, they differ in cross-se...
CNS axons differ in diameter (d) by nearly 100-fold (∼0.1–10 μm); therefore, they differ in cross-se...
CNS axons differ in diameter (d) by nearly 100-fold (∼0.1–10 μm); therefore, they differ in cross-se...
Why Do Axons Differ in Caliber? CNS axons differ in diameter (d) by nearly 100-fold (∼0.1–10 μm); th...
Faculty Mentor: Michael Garcia, Biological SciencesAbstract only availableMyelination evolved as a m...
Neurons are connected by complex branching processes-axons and dendrites-that process information fo...
SummaryThe tree-like structures of a neuron that are responsible for distributing (axons) or collect...
Abstract Neurons are connected by complex branching processes—axons and dendrites—that process infor...
AbstractWiring a brain presents a formidable problem because neural circuits require an enormous num...
The brain contains a complex network of axons rapidly communicating information between billions of ...
In developing brain, axons and dendrites are capable of connecting to each other with high precision...
<p>The power-law relationship is valid at both proximal (left-pointed triangle) and distal (right-po...
Electrical coupling provides an important pathway for signal transmission between neurons. In severa...
We investigate rules that govern neuronal arborization, specifically the local geometry of the bifur...
Abstract Background Axon calibers vary widely among different animals, neuron classes, and even with...
CNS axons differ in diameter (d) by nearly 100-fold (∼0.1-10 μm); therefore, they differ in cross-se...
CNS axons differ in diameter (d) by nearly 100-fold (∼0.1–10 μm); therefore, they differ in cross-se...
CNS axons differ in diameter (d) by nearly 100-fold (∼0.1–10 μm); therefore, they differ in cross-se...
Why Do Axons Differ in Caliber? CNS axons differ in diameter (d) by nearly 100-fold (∼0.1–10 μm); th...
Faculty Mentor: Michael Garcia, Biological SciencesAbstract only availableMyelination evolved as a m...
Neurons are connected by complex branching processes-axons and dendrites-that process information fo...
SummaryThe tree-like structures of a neuron that are responsible for distributing (axons) or collect...
Abstract Neurons are connected by complex branching processes—axons and dendrites—that process infor...
AbstractWiring a brain presents a formidable problem because neural circuits require an enormous num...
The brain contains a complex network of axons rapidly communicating information between billions of ...
In developing brain, axons and dendrites are capable of connecting to each other with high precision...
<p>The power-law relationship is valid at both proximal (left-pointed triangle) and distal (right-po...
Electrical coupling provides an important pathway for signal transmission between neurons. In severa...
We investigate rules that govern neuronal arborization, specifically the local geometry of the bifur...