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A Controlled-flow Vacuum-free Bottle System Enhances Preterm Infants’ Nutritive Sucking Skills

机译:控流无真空奶瓶系统增强了早产婴儿的营养吮吸技能

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摘要

We have shown that a controlled-flow vacuum-free bottle system (CFVFB) vs. a standard bottle (SB) facilitates overall transfer and rate of milk transfer, and shortens oral feeding duration in very-low-birth-weight (VLBW) infants. We aimed to understand the basis by which this occurs. Thirty infants (19 males; 27 ± 1 weeks gestation) were randomized to a CFVFB or SB. Outcomes monitored at 1−2 and 6−8 oral feedings/day when infants were around 34 and 36 weeks postmenstrual age, respectively, included: overall transfer (% volume taken/volume prescribed), rate of milk transfer (ml/min), sucking stage, frequency of suction (#S/s) and expression (#E/s), suction amplitude (mmHg), and sucking burst duration (s). At both periods we confirmed that infants using a CFVFB vs. SB demonstrated greater overall transfer and rate of milk transfer, along with more mature sucking stages. Suction and expression frequencies were decreased with CFVFB vs. SB at 1−2 oral feeding/day; only that of suction was reduced at 6−8 oral feedings/day. No group differences in suction amplitude and burst duration were observed. We speculate that oral feeding performance improves without significant change in sucking effort with a CFVFB vs. SB. In addition, we have shown that VLBW infants can tolerate faster milk flow than currently presumed. Finally, the use of a CFVFB may reduce energy expenditure as it enhances feeding performance without increasing sucking effort.
机译:我们已经证明,与标准奶瓶(SB)相比,控制流无真空奶瓶系统(CFVFB)促进了总体转移和牛奶转移的速度,并缩短了极低出生体重(VLBW)婴儿的口服喂养时间。我们旨在了解发生这种情况的基础。将30例婴儿(19例男性;妊娠27±1周)随机分为CFVFB或SB。当婴儿分别在月经后34周和36周时,每天以1-2和6-8口服喂食监测的结果包括:总转移量(摄入量的百分比/规定量),乳汁转移率(毫升/分钟),抽吸阶段,抽吸频率(#S / s)和表达式(#E / s),抽吸幅度(mmHg)和抽吸爆发持续时间(s)。在这两个时期,我们都证实了使用CFVFB vs. SB的婴儿表现出更高的总体转移和牛奶转移速度,以及更成熟的吮吸阶段。 CFVFB与SB在每天1-2次口服喂食/天时的吸血和表达频率降低;每天口服喂食6-8次后,吸力降低了。没有观察到吸气幅度和爆发持续时间的组差异。我们推测,CFVFB与SB相比,口服喂养性能得到了改善,而吸吮力没有显着变化。此外,我们已经表明,VLBW婴儿比目前所能忍受的牛奶流动速度更快。最后,CFVFB的使用可以减少能量消耗,因为它可以提高饲喂性能而不会增加吸力。

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