A Ducted, Biomimetic Nipple Improves Aspects of Infant Feeding Physiology and Performance in an Animal Model.

IF 2.2 3区 医学 Q1 OTORHINOLARYNGOLOGY Dysphagia Pub Date : 2024-11-02 DOI:10.1007/s00455-024-10780-5
C J Mayerl, E B Kaczmarek, A E Smith, H E Shideler, M E Blilie, C E Edmonds, K E Steer, K Adjerid, S Howe, M L Johnson, N Danos, R Z German
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Abstract

Breastfeeding is widely regarded as the optimal form of feeding infants, as it provides both nutritional and physiological benefits. For example, breastfed infants generate greater intraoral suction and have higher amplitude muscle activities compared to bottle-fed infants, with downstream implications for motor function, development, and health. One mechanism that might explain these physiological differences is the structure of the nipple an infant is feeding on. Breasts in most mammals are ducted soft-tissue structures that require suction to be generated for milk to be released, whereas bottle nipples are hollow and allow milk to be acquired by compression of the nipple. We used a validated animal model (pigs) to test how being raised on a novel ducted nipple impacted feeding physiology and performance compared to infants raised on a standard (cisternic) nipple. At the end of infancy, we fed both groups with both nipple types and used high-speed videofluoroscopy synchronized with intraoral pressure measurements to evaluate feeding function. Nipple type did not have a profound impact on sucking or swallowing rates. However, when feeding on a ducted nipple, infant pigs raised on a ducted nipple generated more suction, consumed milk at a faster rate, swallowed larger boluses of milk, and had decreased likelihood of penetration and aspiration than those raised on a cisternic nipple. These data replicate those found when comparing breast- and bottle-fed infants, suggesting that a ducted, biomimetic nipple may provide bottle-fed infants with the physiologic benefits of breastfeeding.

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管道式仿生乳头可改善动物模型中婴儿的喂养生理和表现。
母乳喂养被广泛认为是喂养婴儿的最佳方式,因为它既能提供营养,又能带来生理上的益处。例如,与用奶瓶喂养的婴儿相比,母乳喂养的婴儿口内吸力更大,肌肉活动振幅更高,对运动功能、发育和健康都有下游影响。解释这些生理差异的一个机制可能是婴儿吃奶时乳头的结构。大多数哺乳动物的乳房都是导管状软组织结构,需要产生吸力才能排出乳汁,而奶瓶的乳头是中空的,可以通过挤压乳头获得乳汁。我们使用经过验证的动物模型(猪)来测试,与使用标准(蓄水池式)乳头喂养的婴儿相比,使用新型导管式乳头喂养的婴儿对喂养生理和表现有何影响。在婴儿期结束时,我们用两种类型的乳头喂养两组婴儿,并使用高速视频荧光镜与口腔内压力测量同步评估喂养功能。乳头类型对吸吮率和吞咽率的影响不大。然而,与使用贮水池式乳头饲养的猪相比,使用导管式乳头饲养的猪产生的吸力更大,吃奶速度更快,吞咽的奶量更大,穿透和吸入的可能性更小。这些数据与比较母乳喂养和奶瓶喂养婴儿时发现的数据相同,表明导管式仿生乳头可为奶瓶喂养婴儿提供母乳喂养的生理益处。
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来源期刊
Dysphagia
Dysphagia 医学-耳鼻喉科学
CiteScore
4.90
自引率
15.40%
发文量
149
审稿时长
6-12 weeks
期刊介绍: Dysphagia aims to serve as a voice for the benefit of the patient. The journal is devoted exclusively to swallowing and its disorders. The purpose of the journal is to provide a source of information to the flourishing dysphagia community. Over the past years, the field of dysphagia has grown rapidly, and the community of dysphagia researchers have galvanized with ambition to represent dysphagia patients. In addition to covering a myriad of disciplines in medicine and speech pathology, the following topics are also covered, but are not limited to: bio-engineering, deglutition, esophageal motility, immunology, and neuro-gastroenterology. The journal aims to foster a growing need for further dysphagia investigation, to disseminate knowledge through research, and to stimulate communication among interested professionals. The journal publishes original papers, technical and instrumental notes, letters to the editor, and review articles.
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