Understanding the underlying mechanisms of how axons and dendrites develop is a fundamental problem in neuroscience and a main goal of research on nervous system development and regeneration. Previous studies have provided a tremendous amount of information on signaling and cytoskeletal proteins regulating axonal and dendritic growth and guidance. However, relatively little is known about the relative contribution and role of cytoskeletal dynamics, transport of organelles and cytoskeletal components, and force generation to axonal elongation. Advancing the knowledge of these biomechanical processes is critical to better understand the development of the nervous system, the pathological progression of neurodegenerative diseases, acute trauma...
AbstractWhether the axonal framework is stationary or moves is a central debate in cell biology. To ...
The focus of regeneration therapy for traumatic brain injuries and Alzheimer\u27s disease is on the ...
The formation of neuron networks is a process of fundamental importance for understanding the develo...
Many molecular and cellular pathogenic mechanisms of neurodegenerative diseases have been revealed. ...
Neuronal growth is a complex process involving many intra- and extracellular mechanisms which are co...
Axonal growth is a phenomenon of great interest for the community of neuroscientists. However, the k...
markdownabstractBrain cells are uniquely shaped among the many cell types of the body. While most ce...
Neurons are the basic communication element in the nervous system of nearly all animals. They commun...
ABSTRACT Whether the axonal framework is stationary or moves is a central debate in cell biology. To...
The coordinated action of the different cytoskeletal polymers--microtubules, actin filaments and neu...
Physical forces are ubiquitous in biological processes across scales and in diverse contexts. This r...
Quantifying mechanical force in axonal growth and guidance. Front. Cell. Neurosci. 9:359. doi: 10.33...
During nervous system development, neurons extend axons along well-defined pathways. The current und...
Axonal growth is a complex phenomenon in which many intra- and extra-cellular signals collaborate si...
Axonal growth has attracted considerable interest in the last decades. Historically, axon outgrowth ...
AbstractWhether the axonal framework is stationary or moves is a central debate in cell biology. To ...
The focus of regeneration therapy for traumatic brain injuries and Alzheimer\u27s disease is on the ...
The formation of neuron networks is a process of fundamental importance for understanding the develo...
Many molecular and cellular pathogenic mechanisms of neurodegenerative diseases have been revealed. ...
Neuronal growth is a complex process involving many intra- and extracellular mechanisms which are co...
Axonal growth is a phenomenon of great interest for the community of neuroscientists. However, the k...
markdownabstractBrain cells are uniquely shaped among the many cell types of the body. While most ce...
Neurons are the basic communication element in the nervous system of nearly all animals. They commun...
ABSTRACT Whether the axonal framework is stationary or moves is a central debate in cell biology. To...
The coordinated action of the different cytoskeletal polymers--microtubules, actin filaments and neu...
Physical forces are ubiquitous in biological processes across scales and in diverse contexts. This r...
Quantifying mechanical force in axonal growth and guidance. Front. Cell. Neurosci. 9:359. doi: 10.33...
During nervous system development, neurons extend axons along well-defined pathways. The current und...
Axonal growth is a complex phenomenon in which many intra- and extra-cellular signals collaborate si...
Axonal growth has attracted considerable interest in the last decades. Historically, axon outgrowth ...
AbstractWhether the axonal framework is stationary or moves is a central debate in cell biology. To ...
The focus of regeneration therapy for traumatic brain injuries and Alzheimer\u27s disease is on the ...
The formation of neuron networks is a process of fundamental importance for understanding the develo...