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Published on: December 19, 2019
Risk factors for brachial plexus injury and permanent sequelae due to shoulder dystocia
B Elmas1, N Ercan2, D T Ersak1
1Department of Gynecology and Obstetrics, University of Health Sciences Ankara City Hospital, Ankara, Nigeria.
Insights
Shoulder dystocia can lead to brachial plexus injury, especially when advanced maneuvers or clavicle fractures occur during delivery. These factors significantly increase the risk of nerve damage in newborns.
Area of Science:
- Obstetrics and Gynecology
- Pediatric Neurology
- Traumatology
Background:
- Shoulder dystocia is a known complication of childbirth.
- Brachial plexus injury is a potential consequence of shoulder dystocia.
- Identifying risk factors is crucial for prevention and management.
Purpose of the Study:
- To identify risk factors for brachial plexus injury during shoulder dystocia.
- To determine factors associated with permanent sequelae after brachial plexus injury.
Main Methods:
- Retrospective analysis of ICD-10 codes from 2012-2018.
- Comparison of shoulder dystocia cases with and without brachial plexus injury.
- Inclusion of birth data, maternal characteristics, and delivery maneuvers.
Main Results:
- Of 560 shoulder dystocia cases, 88 infants had brachial plexus injury.
- Advanced maneuvers and clavicle fractures were more common in infants with brachial plexus injury.
- Brachial plexus injury risk was 4.7 times higher with advanced maneuvers and 3.6 times higher with clavicle fractures.
Conclusions:
- Advanced maneuvers during shoulder dystocia delivery increase the risk of brachial plexus injury.
- Clavicle fractures at birth are associated with a higher risk of brachial plexus injury.
- Early identification of these risk factors can guide obstetric interventions.
Aim:
The primary aim of this study was to determine the risk factors for the occurrence of brachial plexus injury in cases of shoulder dystocia. Secondly, it was aimed to determine the factors affecting the occurrence of permanent sequelae in cases with brachial plexus injury.
Subjects And Methods:
ICD-10 codes were scanned from the records of patients who gave birth between 2012 and 2018, and the records of patients with brachial plexus injury and shoulder dystocia were reached. Shoulder dystocia cases with brachial plexus damage were accepted as the study group, and shoulder dystocia cases without brachial plexus damage were considered the control group. Shoulder dystocia patients with brachial plexus injury and without injury were compared for 2-year orthopedics clinic follow-up reports, surgical intervention, permanent sequelae status as well as birth data, maternal characteristics, and maneuvers applied to the management of shoulder dystocia.
Results:
Five hundred sixty births with shoulder dystocia were detected. Brachial plexus injury was observed in 88 of them, and permanent sequelae were detected in 12 of these patients. Maneuvers other than McRobert's (advanced maneuvers) were used more and clavicle fracture was seen more in the group with plexus injury (P < 0.05, P < 0.05, respectively). Logistic regression analysis was performed to determine the risk factors of brachial plexus injury. Brachial plexus injury was observed 4.746 times more in infants who were delivered with advanced maneuvers and 3.58 times more in infants with clavicle fractures at birth.
Conclusion:
In patients with shoulder dystocia, the risk of brachial plexus injury increased in deliveries in which advanced maneuvers were used and clavicle fracture occurred.
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