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Sensorimotor Control of the Human Orofacial System

Sensorimotor Control of the Human Orofacial System
人类口面部系统的感觉运动控制
批准号:
7528830
负责人:
STEVEN M BARLOW
金额:
$53.49万
依托单位国家:
美国
项目类别:
财政年份:
2002
资助国家:
美国
项目状态:
已结题
起止时间:
2002-01-15 至 2013-06-30

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中文摘要
翻译
描述(由申请人提供):一种新的合成模式口腔皮肤刺激技术(NTrainer)先前已被证明可以在人类婴儿中携带吸吮中心模式生成器(SCPG)。NTrainer的有效性将在四组早产儿中进行随机试验。选择的临床人群中有三个特别容易出现严重的运动功能障碍和喂养困难,包括有(1)中-重度呼吸窘迫综合征(RDS)病史的婴儿,(2)慢性肺部疾病和/或支气管肺发育不良(CLD/BPD),和(3)唐氏综合征(DS)婴儿。将出生胎龄在26周到32周之间的早产儿随机分配到试验组和对照组(无治疗假刺激)。第四组将由健康的早产儿组成。据推测,有明显RDS、CLD/BPD和唐氏综合征病史的早产儿在接受NTrainer治疗后将表现出显著的sCPG重组和激活。主要结果变量包括每日非营养性吸吮动力学测量(NeoSuck)、非营养性吸吮的时空指数(STI-NNS)、节律运动行为、NNS周期分析、早期喂养技能评估、从管-口喂养过渡时间、喂养效率和住院时间。第二个主要目标将包括对3岁时神经发育结果的全面评估。贝利III发展量表和一系列标准化的发音、词汇、语法和语音-语言探测将提供有关产出和接受的重要信息。这些措施将评估早产儿的口腔运动状态、NTrainer刺激的影响和神经发育结果之间的潜在联系。早产是导致儿童发育障碍的主要原因,包括脑瘫、智力低下、失明、慢性肺部问题、注意力缺陷和言语/语言障碍。喂养能力是许多早产儿面临的另一个具有挑战性的障碍,特别是对于那些有广泛的氧气史的早产儿来说,这些病史与呼吸系统疾病、神经侮辱或某些损害运动发育的遗传缺陷有关。漫长的插管过程让婴儿在大脑发育的关键时期失去了宝贵的感觉和运动经验,这是产生口腔运动模式的关键时期。使用一种新的方法将模式化的口腔皮肤刺激传递到口腔感觉器官,加速口腔运动技能的发展,将直接使这一不断增长的脆弱婴儿群体受益,从而提高吸吮技能,缩短从灌胃管到口腔喂养的过渡时间,缩短住院时间,并促进更积极的神经发育结果。与公共卫生相关:在美国,早产正以惊人的速度上升,每8个活产中就有1个早产。早产发生在大脑发育的关键时期,是导致儿童发育障碍的主要原因,包括脑瘫、智力低下、失明、慢性肺部问题、注意力缺陷和言语/语言障碍。喂养能力是许多早产儿面临的另一个具有挑战性的障碍,他们患有呼吸道疾病、脑损伤或某些基因缺陷,这些缺陷损害了口腔发育。一种名为NTrainer的新型医疗设备将在240名管饲早产儿中进行随机试验,以确定一种新的合成口腔刺激疗法是否能有效地促进吸吮和喂养技能的发展,促进大脑发育,缩短住院时间,并改善3岁时的言语语言和运动技能。
英文摘要
DESCRIPTION (provided by applicant): A new synthetic patterned orocutaneous stimulation technique (NTrainer) has been shown previously to entrain the suck central pattern generator (sCPG) in human infants. The effectiveness of the NTrainer will be tested in a randomized trial among four groups of preterm infants. Three of the clinical populations selected are especially at risk for significant oromotor dysfunction and feeding difficulties, including babies with (1) moderate-severe history of respiratory distress syndrome (RDS), (2) chronic lung disease and/or bronchopulmonary dysplasia (CLD/BPD), and (3) infants with Down syndrome (DS). Preterm infants distributed among these groups with birth gestational ages between 26 and 32 weeks will be randomly assigned to experimental (Treatment w/NTrainer) and control (No Treatment sham stimulation) subgroups. The fourth group will consist of HEALTHY preterm infants. It is hypothesized that premature infants with a significant history of RDS, CLD/BPD, and Down syndrome will demonstrate significant reorganization and activation of the sCPG following NTrainer treatment. Primary outcome variables include daily measures of non-nutritive suck dynamics (NeoSuck), spatiotemporal index of the non-nutritive suck (STI NNS), ororhythmic motor behavior, NNS cycle period analysis, early feeding skills assessment, transition time from tube-to-oral feed, feeding efficiency, and length of hospital stay. A second major objective will include a comprehensive assessment of neurodevelopmental outcome at 3 years of age. The Bayley III Developmental Scales and a battery of standardized articulation, vocabulary, grammar, and speech-language probes will provide vital information on production and reception. These measures will assess the potential link between oromotor status in prematurity, effects of NTrainer stimulation, and neurodevelopmental outcome. Prematurity is the leading cause of developmental disabilities in children, including cerebral palsy, mental retardation, blindness, chronic lung problems, attention deficit, and speech/language disorders. Feeding competency is another challenging hurdle facing many premature babies, especially for those who have an extensive oxygen history associated with respiratory disease, neurologic insult, or certain genetic defects which impair oromotor development. The lengthy intubation procedures cost the baby precious sensory and motor experiences during a critical period of brain development for oromotor pattern generation. Accelerated development of oromotor skills using a novel method for delivering patterned orocutaneous stimulation to the oral sensorium will directly benefit this growing population of fragile infants, leading to enhanced suck skills, decreased transition time from gavage tube-to-oral feed, decreased length of hospitalization, and promote a more positive neurodevelopmental outcome. PUBLIC HEALTH RELEVANCE: Prematurity is rising at an alarming rate in the United States, associated with 1 in 8 live births. Prematurity occurs during a critical period of brain development and is the leading cause of developmental disabilities in children, including cerebral palsy, mental retardation, blindness, chronic lung problems, attention deficit, and speech/language disorders. Feeding competency is another challenging hurdle facing many premature babies who have respiratory disease, brain injury, or certain genetic defects which impair oral development. A new medical device known as the NTrainer will be tested in a randomized trial among 240 tube-fed premature infants in order to determine if a novel synthetic oral stimulation therapy can effectively accelerate development of suck and feeding skills, enhance brain development, decrease the length of hospitalization, and improve speech-language and motor skills measured at 3 years of age.
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Somatosensory Modulation of Salivary Gene Expression and Oral Feeding in Preterm Infants
  • 批准号:
    9900587
  • 项目类别:
  • 资助金额:
    $60.05万
  • 财政年份:
    2016
  • 负责人:
    STEVEN M BARLOW
  • 依托单位:
Somatosensory Modulation of Salivary Gene Expression and Oral Feeding in Preterm Infants
  • 批准号:
    9007202
  • 项目类别:
  • 资助金额:
    $60.41万
  • 财政年份:
    2016
  • 负责人:
    STEVEN M BARLOW
  • 依托单位:
Digital and Electrical Engineering
  • 批准号:
    8116464
  • 项目类别:
  • 资助金额:
    $14.85万
  • 财政年份:
    2010
  • 负责人:
    STEVEN M BARLOW
  • 依托单位:
Sensorimotor Control of the Human Orofacial System
  • 批准号:
    7850332
  • 项目类别:
  • 资助金额:
    $5.0万
  • 财政年份:
    2009
  • 负责人:
    STEVEN M BARLOW
  • 依托单位:
海外基金