An engineering perspective of vacuum assisted delivery devices in obstetrics: A review
- PMID: 32928047
- PMCID: PMC7780266
- DOI: 10.1177/0954411920956467
An engineering perspective of vacuum assisted delivery devices in obstetrics: A review
Abstract
Complications during childbirth result in the need for clinicians to use 'assisted delivery' in over 12% of cases (UK). After more than 50 years in clinical practice, vacuum assisted delivery (VAD) devices remain a mainstay in physically assisting child delivery; sometimes preferred over forceps due to their ease of use and reduced maternal morbidity. Despite their popularity and enduring track-record, VAD devices have shown little evidence of innovation or design change since their inception. In addition, evidence on the safety and functionality of VAD devices remains limited but does present opportunities for improvements to reduce adverse clinical outcomes. Consequently in this review we examine the literature and patent landscape surrounding VAD biomechanics, design evolution and performance from an engineering perspective, aiming to collate the limited but valuable information from a disparate field and provide a series of recommendations to inform future research into improved, safer, VAD systems.
Keywords: Vacuum assistive delivery; birth; maternal trauma; neonatal trauma; obstetrics; operative vaginal delivery; vacuum extraction; ventouse.
Conflict of interest statement
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References
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- World Health Organization and UNICEF. Trends in maternal mortality: 1990-2015: estimates from WHO, UNICEF, UNFPA, World Bank Group and the United Nations Population Division. Geneva: World Health Organization, 2015.
-
- Di Renzo GC, Simeoni U. The prenate and neonate: an illustrated guide to the transition to extrauterine life. Florida: CRC Press; (Now subsidiary of Informa PLC London, UK), 2006.
-
- Sorbe B, Dahlgren S. Some important factors in the molding of the fetal head during vaginal delivery - a photographic study. Int J Gynecol Obstet 1983; 21: 205–212. - PubMed
-
- Berger KS. The developing person through the life span. 9th ed New York, NY: Worth Publishers, 2014.
-
- Buttin R, Zara F, Shariat B, et al. Biomechanical simulation of the fetal descent without imposed theoretical trajectory. Comput Methods Programs Biomed 2013; 111: 389–401. - PubMed
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