Rhythmic motor patterns underlying many types of locomotion are thought to be produced by central pattern generators (CPGs). Our knowledge of how CPG networks generate motor patterns in complex nervous systems remains incomplete, despite decades of work in a variety of model organisms. Substrate borne locomotion in Drosophila larvae is driven by waves of muscular contraction that propagate through multiple body segments. We use the motor circuitry underlying crawling in larval Drosophila as a model to try to understand how segmentally coordinated rhythmic motor patterns are generated. Whereas muscles, motoneurons and sensory neurons have been well investigated in this system, far less is known about the identities and function of interneuro...
Abstract: Typical patterned movements in animals are achieved through combinations of contraction an...
Animal locomotion requires spatiotemporally coordinated contraction of muscles throughout the body. ...
Animal locomotion requires spatiotemporally coordinated contraction of muscles throughout the body. ...
<div><p>Rhythmic motor patterns underlying many types of locomotion are thought to be produced by ce...
This work was supported by a MEXT/JSPS KAKENHI Grant Numbers, 22115002 (to A.N.) and 221S0003 (to A....
Rhythmic motor patterns underlying many types of locomotion are thought to be produced by central pa...
SummaryBackgroundAnimals control the speed of motion to meet behavioral demands. Yet, the underlying...
Locomotor systems generate diverse motor patterns to produce the movements underlying behavior, requ...
Locomotor systems generate diverse motor patterns to produce the movements underlying behavior, requ...
The ability to adjust the speed of locomotion is essential for survival. In limbed animals, the freq...
Abstract: Animal locomotion requires spatiotemporally coordinated contraction of muscles throughout ...
SummaryLocomotor systems generate diverse motor patterns to produce the movements underlying behavio...
Drosophila larval crawling is an attractive system to study patterned motor output at the level of a...
We have established a preparation in larval Drosophila to monitor fictive locomotion simultaneously ...
Funder: Howard Hughes Medical InstituteTypical patterned movements in animals are achieved through c...
Abstract: Typical patterned movements in animals are achieved through combinations of contraction an...
Animal locomotion requires spatiotemporally coordinated contraction of muscles throughout the body. ...
Animal locomotion requires spatiotemporally coordinated contraction of muscles throughout the body. ...
<div><p>Rhythmic motor patterns underlying many types of locomotion are thought to be produced by ce...
This work was supported by a MEXT/JSPS KAKENHI Grant Numbers, 22115002 (to A.N.) and 221S0003 (to A....
Rhythmic motor patterns underlying many types of locomotion are thought to be produced by central pa...
SummaryBackgroundAnimals control the speed of motion to meet behavioral demands. Yet, the underlying...
Locomotor systems generate diverse motor patterns to produce the movements underlying behavior, requ...
Locomotor systems generate diverse motor patterns to produce the movements underlying behavior, requ...
The ability to adjust the speed of locomotion is essential for survival. In limbed animals, the freq...
Abstract: Animal locomotion requires spatiotemporally coordinated contraction of muscles throughout ...
SummaryLocomotor systems generate diverse motor patterns to produce the movements underlying behavio...
Drosophila larval crawling is an attractive system to study patterned motor output at the level of a...
We have established a preparation in larval Drosophila to monitor fictive locomotion simultaneously ...
Funder: Howard Hughes Medical InstituteTypical patterned movements in animals are achieved through c...
Abstract: Typical patterned movements in animals are achieved through combinations of contraction an...
Animal locomotion requires spatiotemporally coordinated contraction of muscles throughout the body. ...
Animal locomotion requires spatiotemporally coordinated contraction of muscles throughout the body. ...