Breathing in mammals depends on rhythms that originate from the preBötzinger complex (preBötC) of the ventral medulla and a network of brainstem and spinal premotor neurons. The rhythm-generating core of the preBötC, as well as some premotor circuits, consists of interneurons derived from Dbx1-expressing precursors but the structure and function of these networks remain incompletely understood. We previously developed a cell-specific detection and laser ablation system to interrogate respiratory network structure and function in a slice model of breathing that retains the preBötC, premotor circuits, and the respiratory related hypoglossal (XII) motor nucleus such that in spontaneously rhythmic slices, cumulative ablation of Dbx1 preBötC neu...
Breathing is a vital rhythmic behavior essential for life. The preBötzinger complex (preBötC) of the...
All behaviors require coordinated activation of motoneurons from central command and premotor networ...
All behaviors require coordinated activation of motoneurons from central command and premotor networ...
Breathing in mammals depends on rhythms that originate from the preBötzinger complex (preBötC) of th...
Breathing in mammals depends on rhythms that originate from the preBotzinger complex (preBotC) of th...
Breathing in mammals depends on rhythms that originate from the preBotzinger complex (preBotC) of th...
The mammalian breathing rhythm putatively originates from Dbx1-derived interneurons in the preBötzin...
To understand the neural origins of rhythmic behavior one must characterize the central pattern gene...
To understand the neural origins of rhythmic behavior one must characterize the central pattern gene...
The brainstem pre-Botzinger complex (preBotC) generates the rhythm underlying inspiratory breathing ...
The brainstem pre-Botzinger complex (preBotC) generates the rhythm underlying inspiratory breathing ...
How brain functions degenerate in the face of progressive cell loss is an important issue that perta...
How brain functions degenerate in the face of progressive cell loss is an important issue that perta...
Breathing depends on interneurons in the preBötzinger complex (preBötC) derived from Dbx1-expressing...
Breathing depends on interneurons in the preBötzinger complex (preBötC) derived from Dbx1-expressing...
Breathing is a vital rhythmic behavior essential for life. The preBötzinger complex (preBötC) of the...
All behaviors require coordinated activation of motoneurons from central command and premotor networ...
All behaviors require coordinated activation of motoneurons from central command and premotor networ...
Breathing in mammals depends on rhythms that originate from the preBötzinger complex (preBötC) of th...
Breathing in mammals depends on rhythms that originate from the preBotzinger complex (preBotC) of th...
Breathing in mammals depends on rhythms that originate from the preBotzinger complex (preBotC) of th...
The mammalian breathing rhythm putatively originates from Dbx1-derived interneurons in the preBötzin...
To understand the neural origins of rhythmic behavior one must characterize the central pattern gene...
To understand the neural origins of rhythmic behavior one must characterize the central pattern gene...
The brainstem pre-Botzinger complex (preBotC) generates the rhythm underlying inspiratory breathing ...
The brainstem pre-Botzinger complex (preBotC) generates the rhythm underlying inspiratory breathing ...
How brain functions degenerate in the face of progressive cell loss is an important issue that perta...
How brain functions degenerate in the face of progressive cell loss is an important issue that perta...
Breathing depends on interneurons in the preBötzinger complex (preBötC) derived from Dbx1-expressing...
Breathing depends on interneurons in the preBötzinger complex (preBötC) derived from Dbx1-expressing...
Breathing is a vital rhythmic behavior essential for life. The preBötzinger complex (preBötC) of the...
All behaviors require coordinated activation of motoneurons from central command and premotor networ...
All behaviors require coordinated activation of motoneurons from central command and premotor networ...