Behavioral and neural characteristics of adaptive speech motor control
Behavioral and neural characteristics of adaptive speech motor control
批准号:
10562043
负责人:
LUDO MAX
金额:
$49.18万
依托单位:
依托单位国家:
美国
项目类别:
财政年份:
2023
资助国家:
美国
项目状态:
未结题
起止时间:
2023-01-15 至 2027-12-31
关键词:
AccelerationAcousticsAdultAffectArticulationAuditoryBasal GangliaBehaviorBehavioralBrainCell NucleusCentral Nervous SystemCharacteristicsChildClientClinicalClinical ProtocolsCompensationComplexComputer AssistedComputer ModelsDatabasesDeep Brain StimulationDevelopmentDevelopmental apraxiaElectrodesEtiologyFeedbackFrequenciesFutureGenerationsGoalsHearingImpairmentImplantIndividualInstructionJordanKnowledgeLaboratoriesLearningLimb structureLongevityMaintenanceModelingMotorMovementNatureNeurologicOutputParticipantPathway interactionsPatientsPlayPoliciesProceduresProcessProductionPublic HealthResearchRoleSensorySeriesSignal TransductionSpeechSpeech DevelopmentSpeech DisordersSpeech SoundStructure of subthalamic nucleusStutteringTechniquesThalamic structureTheoretical modelTimeTranslational ResearchUpdateWorkauditory feedbackbaseexperimental studyimprovedinnovationinsightmotor behaviormotor controlmotor learningneuralneural circuitneurophysiologyneuroregulationnovelnovel strategiespreventprogramssensor technologysequence learningskillsspeech accuracytherapy development
中文摘要
项目摘要/摘要
感觉运动学习在获得和完善所有熟练动作方面起着关键作用,包括
演讲稿。从早期的胡言乱语到完全成熟的语音清晰度,听觉运动学习反映了
中枢神经系统过程参与获取和更新复杂的
从运动指令到声道运动和语音输出的运动到听觉的转换。
听觉-运动学习也被认为在发育性言语的病因中起着重要作用
口吃和儿童期言语失用等障碍。在过去的二十年里,私家侦探的实验室
为实地了解这种讲话背后的关键机制作出了重要贡献
儿童和成人的听觉-运动学习。我们现在提出一系列新颖的实验,结合
具有高度创新的神经生理学方法的行为学习范例,使我们能够
调节和记录皮质下神经活动。具体地说,我们的目标是调查(A)语音听觉-
运动学习可以得到加强,以及如何最大限度地减少学习的衰退,(B)前馈
听觉-运动学习也推动反馈控制策略的更新,(C)哪些理论见解可以
从作为“追随者”的个人子集获得,并且矛盾地使用一种控制策略
增加听觉误差而不是适应,以及(D)在神经水平上,小脑和基底是否
与其他形式的言语运动相比,神经节回路在言语听觉-运动学习中发挥着独特的作用
学习。在听觉-运动学习的神经基础上的实验利用了最先进的技术
在最近的深部脑刺激(DBS)植入物中可用的传感技术
丘脑腹侧中间核(接受小脑输出)或丘脑底核(基底节)。
总体而言,这些综合实验将阐明过程、机制和神经基础。
参与了言语听觉-运动学习。它们还将揭示听觉的发育进程-
运动学习,儿童和成人在听觉-运动学习上的差异,以及相似性和
言语感觉运动学习与肢体感觉运动学习的差异。此外,鉴于听觉上的-
运动适应范例使说话者不费吹灰之力快速地隐含地改变他们的语音输出,
这项工作支持开发新的计算机辅助临床程序的未来长期目标
通过系统地改变说话人的听觉反馈来诱导言语行为的适应性变化。
因此,这项工作与公共卫生直接相关,因为产生的知识将加深我们对
典型的言语发展,在一生中保持言语清晰度技能,以及
发育性言语障碍的基本感觉运动机制
为治疗各种语言障碍的高度创新的临床技术铺平了道路。
英文摘要
PROJECT SUMMARY/ABSTRACT
Sensorimotor learning plays a critical role in the acquisition and refining of all skilled movements, including
speech production. From early babbling to fully mature speech articulation, auditory-motor learning reflects
central nervous system processes involved in acquiring and updating neural representations of the intricate
motor-to-auditory transformations from motor commands to vocal tract movements and speech sound output.
Auditory-motor learning is also believed to play an important role in the etiology of developmental speech
disorders such as stuttering and childhood apraxia of speech. Over the past two decades, the PI’s laboratory
has made important contributions to the field’s understanding of the key mechanisms underlying such speech
auditory-motor learning in children and adults. We now propose a novel series of experiments, combining
behavioral learning paradigms with a highly innovative neurophysiological approach that allows us to both
modulate and record subcortical neural activity. Specifically, we aim to investigate (a) how speech auditory-
motor learning can be enhanced and how decay of learning can be minimized, (b) whether feedforward
auditory-motor learning also drives updates in feedback control policies, (c) which theoretical insights can be
gained from the subset of individuals who are “followers” and paradoxically use a control strategy that leads to
increasing auditory error rather than adaptation, and (d) whether, at the neural level, cerebellar and basal
ganglia circuits play a distinct role in speech auditory-motor learning versus other forms of speech motor
learning. The inclusion of experiments on the neural bases of auditory-motor learning leverages state-of-the-art
sensing technology available in very recent Deep Brain Stimulation (DBS) implants with electrodes in either
thalamic ventral intermediate nucleus (receiving cerebellar output) or subthalamic nucleus (basal ganglia).
Overall, these integrated experiments will elucidate the processes, mechanisms, and neural substrates
involved in speech auditory-motor learning. They will also reveal the developmental progression of auditory-
motor learning, differences in auditory-motor learning between children and adults, as well as similarities and
differences in speech sensorimotor learning vs. limb sensorimotor learning. Furthermore, given that auditory-
motor adaptation paradigms cause speakers to implicitly alter their speech output quickly and without effort,
this line of work supports the future long-term goal of developing novel, computer-assisted clinical procedures
that induce adaptive changes in speech behavior by systematically altering the speaker’s auditory feedback.
Thus, the work is directly relevant to public health as the generated knowledge will deepen our understanding
of typical speech development, the maintenance of speech articulation skills throughout the lifespan, and
fundamental sensorimotor mechanisms underlying developmental speech disorders while simultaneously
paving the way for highly innovative clinical techniques for the treatment of a variety of speech disorders.
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
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批准号:10321598
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项目类别:
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资助金额:$32.0万
-
财政年份:2019
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负责人:LUDO MAX
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依托单位:
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批准号:9044747
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资助金额:$41.92万
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Neural control and sensorimotor mechanisms in stuttering
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批准号:7145964
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资助金额:$38.62万
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依托单位:
Neural control and sensorimotor mechanisms in stuttering
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批准号:7896061
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资助金额:$44.4万
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财政年份:2006
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Neural control and sensorimotor mechanisms in stuttering
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资助金额:$36.83万
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Neural control and sensorimotor mechanisms in stuttering
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资助金额:$37.03万
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财政年份:2006
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Neural control and sensorimotor mechanisms in stuttering
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批准号:7649266
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资助金额:$37.13万
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财政年份:2006
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负责人:LUDO MAX
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资助金额:$18.1万
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资助金额:$17.31万
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资助金额:$19.62万
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Computer Resources
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资助金额:$18.59万
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财政年份:--
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负责人:LUDO MAX
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依托单位:
海外基金