Characterizing the neural circuitry of postinspiratory behaviors and its coordination with breathing
Characterizing the neural circuitry of postinspiratory behaviors and its coordination with breathing
批准号:
10594394
负责人:
Alyssa Huff
金额:
$7.18万
依托单位国家:
美国
项目类别:
财政年份:
2022
资助国家:
美国
项目状态:
未结题
起止时间:
2022-02-18 至 2025-02-17
关键词:
Anesthesia proceduresAnimalsBehaviorBehavioralBrain StemBreathingCause of DeathCell NucleusComplexCoughingDataDeglutitionDeglutition DisordersDiseaseDorsalElectrophysiology (science)GoalsHealthImplantIndividualInjectionsLarynxLungMusNeurologicNeuronsObstructive Sleep ApneaOralPatientsPatternPeriodicityPhasePlethysmographyPneumoniaPreparationPropertyRespirationRespiratory CenterRiskRoleTechniquesTestingWateradductaspiratedisorder riskexpirationin vivonervous system disorderneuralneural circuitnoveloptogeneticspreBotzinger complexpreventrespiratoryresponsetransmission processventilationvocalization
中文摘要
项目总结
英文摘要
PROJECT SUMMARY
Coordination of breathing with postinspiratory behaviors such as swallowing and laryngeal adduction is
essential to health. Dysregulation of laryngeal activity during postinspiration and swallow occurs in many
neurological and breathing-related disorders, such as obstructive sleep apnea, and can increase the risk of
disordered swallow (dysphagia) and aspiration. Dysphagia is a major problem in patients with these diseases,
and there are currently no treatments to cure or prevent dysphagia. This deficit is due in part to the lack of
studies on coordination of breathing with laryngeal function of postinspiration and swallow. The recently
described brainstem Postinspiratory Complex (PiCo) is thought to control postinspiration, yet its role in other
laryngeal behaviors has not been studied. We test a fundamentally new hypothesis that excitatory medullary
transmission from PiCo to the swallow pattern generator plays a role in swallow-related postinspiratory
behavior. Our goals is to define the role of PiCo in postinspiratory laryngeal activity and swallow, and
investigate potential coordination between the dorsal swallow group (DSG) and the ventral respiratory group
(VRG). Based on preliminary data, we hypothesize that PiCo is a hub for both postinspiratory activity and
swallowing, and has connections to the presumed swallow pattern generator in the nucleus tractus solitarius
(nTS). We believe PiCo plays a role in swallow-related rhythmic activities which includes the nTS as the
presumed swallow rhythm generator with projections to ventral respiratory centers. We use two in-vivo
preparation: anesthetized and alert mouse combined with electrophysiology, novel optogenetics and
Neuropixel recordings to test these hypotheses. We predict neural coordination of PiCo activity with respiratory
and non-respiratory centers is similar between anesthetized and unanesthetized preparations. Investigating
PiCo in an alert animal is important for characterizing the natural behaviors of swallow and laryngeal
postinspiratory activity in a translational manner.
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Characterizing the neural circuitry of postinspiratory behaviors and its coordination with breathing
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批准号:10315099
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项目类别:
-
资助金额:$6.64万
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财政年份:2022
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负责人:Alyssa Huff
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依托单位:
海外基金