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Babies born too soon, premature babies, can have complications following birth because their systems are immature. Hospitals help prevent deformities and delays in motor development by using therapeutic positioning to provide containment as they would experience in the womb. They also often have trouble eating. They have discomfort, are irritable, refuse to eat and cry because their digestive system is immature. The neonatal intensive unit can create stress and disrupt their sleep. Going from active to deep sleep is essential for infant brain development, learning and memory formation. Their sleep states early in life predict their developmental outcome. The purpose is to determine whether a conformational positioning system, one that can mold to the baby and contain him or her, will allow more time asleep in premature infants with feeding problems compared to the standard crib mattress. We hypothesize that the number of total sleep time will be longer and the number of arousals out of sleep lower when they are sleeping on the conformational positioning system compared to the mattress.
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Premature infants are at risk for complications due to the immaturity of motor, gastrointestinal, respiratory, cutaneous and behavioral systems. Therapeutic positioning is routinely used to provide containment, maintain a flexed position and prevent skeletal deformities and delays in motor development. Premature infants have feeding difficulties and frequently experience gastroesophageal reflux, discomfort, refusal to feed, irritability, and crying. The neonatal intensive care environment can create stress and disrupts sleep-wake cycles and self-regulatory behaviors. Cycling from active to deep sleep states is required for neurosensory processing, learning, memory formation and brain plasticity. Sleep and waking states for premature infants are predictive of neurodevelopmental outcomes. The purpose of the study is to determine whether the use of conformational positioning will be associated with greater total sleep time in premature infants with a history feeding difficulty compared to positioning on a mattress alone. We hypothesize that the number of arousals and total sleep time will be affected by the support surface. Specifically, the number of arousals will be lower and total sleep time will be greater for infants when they are on a conformational positioning (CP) device compared to when they are on the standard positioning system (mattress) (SP). The use of CP will reduce the number of arousals, increase the total sleep time, and bring about behavioral states that are conducive to regulation of attention, state and motor response relative to SP.
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