The nervous system is a complex organ that functions in most metazoans to sense and respond to a constantly changing world. How the nervous system does this is a major focus of systems-level neuroscience. This dissertation investigates the neural basis of the sensorimotor transformation underlying a spatial orientation strategy in the nematode Caenorhabditis elegans. Motile organisms rely on spatial orientation strategies to navigate to environments that are conducive to organismal fitness and comfort, e.g. environments with the correct temperature, light level, or access to food and mates. As such, spatial orientation strategies as a class represent a key behavior common to most forms of life on earth. To explore the behavioral mecha...
One of the fundamental problems in neuroscience is how behavior is generated from sensory input and ...
The nematode Caenorhabditis elegans possesses a relatively simple nervous system of only 302 neurons...
The nematode Caenorhabditis elegans possesses a relatively simple nervous system of only 302 neurons...
This article describes the fabrication and use of microfluidic devices for investigating spatial ori...
Understanding the neural circuits and genes that underlie behavior is a fundamental question in the ...
Understanding the neural circuits and genes that underlie behavior is a fundamental question in the ...
<div><p>Increased efforts in the assembly and analysis of connectome data are providing new insights...
Increased efforts in the assembly and analysis of connectome data are providing new insights into th...
Introduction Caenorhabditis elegans orients to both chemical (chemotaxis) and thermal (thermotaxis)...
Neural circuits coordinate with muscles and sensory feedback to generate motor behaviors appropriate...
One of the fundamental questions in biological science is to understand how the nervous system funct...
A fundamental goal of systems neuroscience is to probe the dynamics of neural activity that generate...
An essential part of the animal survival strategy comprises the ability to control body movement and...
Understanding how information about external stimuli is transformed into behavior is one of the cent...
DoctorThe goal of behavioral science is to understand biological mechanisms underlying animal behavi...
One of the fundamental problems in neuroscience is how behavior is generated from sensory input and ...
The nematode Caenorhabditis elegans possesses a relatively simple nervous system of only 302 neurons...
The nematode Caenorhabditis elegans possesses a relatively simple nervous system of only 302 neurons...
This article describes the fabrication and use of microfluidic devices for investigating spatial ori...
Understanding the neural circuits and genes that underlie behavior is a fundamental question in the ...
Understanding the neural circuits and genes that underlie behavior is a fundamental question in the ...
<div><p>Increased efforts in the assembly and analysis of connectome data are providing new insights...
Increased efforts in the assembly and analysis of connectome data are providing new insights into th...
Introduction Caenorhabditis elegans orients to both chemical (chemotaxis) and thermal (thermotaxis)...
Neural circuits coordinate with muscles and sensory feedback to generate motor behaviors appropriate...
One of the fundamental questions in biological science is to understand how the nervous system funct...
A fundamental goal of systems neuroscience is to probe the dynamics of neural activity that generate...
An essential part of the animal survival strategy comprises the ability to control body movement and...
Understanding how information about external stimuli is transformed into behavior is one of the cent...
DoctorThe goal of behavioral science is to understand biological mechanisms underlying animal behavi...
One of the fundamental problems in neuroscience is how behavior is generated from sensory input and ...
The nematode Caenorhabditis elegans possesses a relatively simple nervous system of only 302 neurons...
The nematode Caenorhabditis elegans possesses a relatively simple nervous system of only 302 neurons...