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1.
J Obstet Gynaecol Res ; 48(1): 271-274, 2022 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-34704307

RESUMO

A 37-year-old multiparous woman complained of uterine prolapse at 14 weeks of gestation. A silicone ring-shaped middle-size vaginal pessary (# 62 mm) was placed into the vagina to reduce prolapsed uterus. Because the cervical length became shortened at 25 weeks of gestation, we decided to start intramuscular administration of progesterone (250 mg) weekly. At 33 weeks of gestation, she complained of the vaginal pessary spontaneous falling out, so we inserted a vaginal pessary of the same size again. The uterocervical angle became acute, going from 100° to 60° after placing the vaginal pessary into the vagina. We took the vaginal pessary out at 37 weeks of gestation. The patient gave birth at 39 weeks by spontaneous vaginal delivery to a healthy baby. A vaginal pessary may help continue a pregnancy via the same mechanism as a cervical pessary, which sharpens the uterocervical angle.


Assuntos
Nascimento Prematuro , Prolapso Uterino , Adulto , Colo do Útero/diagnóstico por imagem , Feminino , Humanos , Pessários , Gravidez , Progesterona , Prolapso Uterino/terapia
2.
Regen Ther ; 18: 76-81, 2021 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-33969162

RESUMO

INTRODUCTION: Large-animal models such as sheep for facial nerve regeneration research have not yet been established because of the lack of methods for assessing the electrophysiological function of regenerated nerves. In this study, we developed a percutaneous measurement method for the evoked compound muscle action potential (CMAP) of the facial nerve in sheep. METHODS: Six 3-year-old castrated male Corriedale sheep were used in this study. Under general anesthesia, an anatomical exploration was performed to identify the course of the buccal branch of the facial nerve and its innervating muscles on one side, followed by the application of surface stimulating electrodes to the contralateral side of the face along the course of the buccal branch of the facial nerve to obtain CMAP measurements of the nasolabial levator muscle. RESULTS: Percutaneous CMAP measurements of the nasolabial levator muscle could be obtained in all animals by placing stimulating electrodes 1 cm apart on the line coinciding with the course of the buccal branch of the facial nerve revealed by the preceding anatomical exploration. Mean values for electrophysiological parameters were amplitude 4.7 ± 0.7 mV, duration 2.1 ± 0.6 ms, and latency 3.6 ± 0.4 ms. CONCLUSION: We have established a percutaneous measurement method for CMAP of the buccal branch of the facial nerve in sheep. This method is expected to be very useful in future studies of facial nerve regeneration for long nerve defects in sheep.

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