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Pubic Arch Angle Postural Mobility Evaluation in Different Patient's Positions for Clinical Research
Marco Siccardi1, Alessia Selmin2, Cristina Valle3
1Obstetrics and Gynecology, ApsDEHA, Savona, ITA.
Insights
Maternal pelvic mobility, assessed via pubic arch angle (PAA) changes with hip flexion, can predict labor dystocia and birth trauma. Ultrasound offers a new method to measure PAA in various positions for improved childbirth outcomes.
Area of Science:
- Obstetrics and Gynecology
- Biomechanics
- Medical Imaging
Background:
- Childbirth involves maternal pelvis and fetal adaptation.
- Pelvic mobility is key for favorable obstetric outcomes.
- Pubic arch angle (PAA) changes during pregnancy and with hip flexion, influencing pelvic dimensions.
Purpose of the Study:
- To describe a technique for evaluating PAA amplitude changes in various maternal positions using ultrasound.
- To provide a tool for clinical research in labor biomechanics.
- To assess the impact of maternal positioning on pelvic dimensions relevant to labor and birth.
Main Methods:
- Describing a 2D ultrasound technique to assess PAA.
- Evaluating PAA in supine (hyperextension to hyperflexion), kneeling, and standing positions.
- Utilizing perineal transducer placement to visualize pubic symphysis and ischiopubic branches.
Main Results:
- Positional changes in hip flexion significantly alter pelvic diameters and PAA.
- Ultrasound can assess PAA changes in different maternal positions.
- Preliminary studies show significant positional differences in PAA and pelvic measurements.
Conclusions:
- Assessing PAA in various maternal positions using ultrasound is a practical tool for research.
- This method can aid in predicting labor dystocia and birth trauma.
- Further research will refine understanding of pelvic dimensions, fetal progression, and obstetric outcomes for safer childbirth.
Abstract:
Childbirth is a dynamic process involving mutual adaptation between the maternal pelvis and the presenting fetal part. The ability of the pelvis to maintain optimal mobility during labor plays a crucial role in achieving favorable obstetric outcomes. The pubic arch angle (PAA) increases amplitude during pregnancy, showing pelvic tissue adjustment. The PAA evaluated with ultrasound in a single position predicts the risk of dystocia in labor and, consequently, anal sphincter trauma and incontinence after delivery. The hip flexion degree was found to reduce lumbar lordosis, shift the sacral promontory, affect the pubic arch angle, and increase pelvic diameter, creating more space for the fetus to descend during labor. Studies with magnetic resonance have demonstrated the modification of pelvic diameters and the PAA with maternal position change in the degree of hip joint flexion. The present technical report intends to describe the technique for evaluating the PAA amplitude change in supine, kneeling, and standing patients' different leg positions. The procedure is designed for clinical research in labor biomechanics. The supine leg positions for pubic angle measurement can vary from hyperextension, as in Walcher's position, to neutral supine position, mild hip flexion, and hyperflexion, which is the position of the McRoberts maneuver. The kneeling and standing positions mimic labor and delivery in the flexible sacrum maternal positions. The 2D ultrasound technique can assess the PAA in the clinical research setting during the obstetrical examination. The transducer transversely positioned on the perineum shows the pubic symphysis and the two symmetrical ischiopubic branches, as described in the literature. Evidence from ultrasound, magnetic resonance imaging, and computational modeling highlights the adaptability of pelvic structures influenced by hip flexion and soft tissue elasticity. Preliminary studies confirm significant positional differences in pubic arch angle and pelvic measurements, supporting the clinical relevance of assessing pelvic mobility. The proposed ultrasound-based approach for evaluating PAA measurements in various maternal positions offers a practical tool for research in labor management and predicting vaginal birth outcomes. Ongoing research aims to elucidate further the relationship between pelvic dimensions in different maternal positions, fetal progression, and obstetric outcomes, contributing to safer, more effective childbirth practices.
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