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Updated: Aug 16, 2026

A Modified Sonographic Algorithm for Image Acquisition in Life-Threatening Emergencies in the Critically Ill Newborn
Published on: April 7, 2023
Intrapartum sonography for difficult labor
Ilenia Mappa1, Giuseppe Rizzo1
1Department of Mother and Child Health and Urological Sciences, Sapienza University of Rome, Policlinico Umberto I, Rome, Italy.
Abstract:
Difficult labor-protracted or arrested dilatation in the first stage, arrest of descent in the second stage, and the decision whether to attempt an assisted vaginal delivery-accounts for a large proportion of intrapartum cesarean deliveries and for most of the maternal and neonatal morbidity attributable to instrumental delivery. The decisions made in these situations rest almost entirely on 3 pieces of information obtained by digital vaginal examination: the position of the fetal occiput, the attitude of the fetal head, and the station of the leading bony point. Digital examination is uncomfortable, must be repeated, and is least reliable when the clinical stakes are highest. Caput succedaneum, molding, deflection of the head, and a high presenting part obscure the sutures and fontanelles on which the examination depends, and the ischial spines are palpated rather than visualized. Studies comparing digital examination with sonography before assisted vaginal delivery have reported discordant assessments of occiput position in approximately one-fifth to one-third of examinations, and digital estimation of station is similarly imprecise, particularly in the presence of substantial caput. Sonography in labor is performed with the curvilinear transducer, which is already available on most labor wards, requires a small number of images, and is better tolerated by women than repeated digital examinations. This article is written for general obstetricians, laborists, and residents who manage labor but who do not routinely scan during labor, rather than for clinicians who are already practicing intrapartum sonography. It is organized around 3 clinical situations in which a scan may change management-an uncertain fetal head position, slow or arrested labor, and the period immediately before an assisted vaginal delivery-and around 5 clinical questions that arise within them. The 5 questions, and the sonographic answer to each, are: what is the position of the fetal head, answered by transabdominal identification of the midline cerebral echo, orbits, cerebellum, and cervical spine; if the occiput is posterior, is spontaneous rotation likely, as suggested by the orientation of the fetal spine; is the head well flexed and is it asynclitic, quantified by the occiput-spine angle in occiput-anterior and occiput-transverse positions and by the chin-to-chest angle in occiput-posterior positions; how low is the head and has it engaged, quantified transperineally by the angle of progression and the head-perineum distance; and is the head descending during pushing, assessed by serial measurements and by the direction of the fetal head. The evidence supporting these measurements is uneven and should be described accurately. Sonographic determination of occiput position is more accurate than digital examination. Of note, 2 randomized trials show that adding a scan improves the accuracy with which the position is known, and 1 randomized trial reported more accurate placement of the vacuum cup. The measurements of station and attitude are reproducible and are consistently associated with the mode of delivery, but their published thresholds are derived from modest cohorts, are correlated with digital station, and are influenced by transducer pressure, caput, molding, parity, and occiput position. No trial has yet shown that acting on these measurements reduces maternal or neonatal morbidity. Sonography should therefore be used as an adjunct when clinical examination is uncertain or when a more accurate assessment could alter management and not as a replacement for it.
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