Key result
High-frequency transvaginal image-directed Doppler evaluation demonstrated increased diastolic flow in the uterine artery throughout gestation and in the ovarian artery during the luteal phase.
Why the study?
Can a high-frequency transvaginal image-directed Doppler system characterize the perfusion of female pelvic vessels before and during pregnancy?
Observational
Can a high-frequency transvaginal image-directed Doppler system characterize the perfusion of female pelvic vessels before and during pregnancy?
High-frequency transvaginal Doppler ultrasound effectively characterizes the hemodynamic changes in female pelvic vessels during the menstrual cycle and pregnancy.
High-frequency transvaginal Doppler supports pelvic perfusion assessment; leaves open clinical utility pending prospective validation.
Perfusion characteristics of the female pelvic vessels were studied by a high-frequency transvaginal image-directed Doppler system. A 5-MHz Doppler transducer was coupled to a 6.5-MHz probe especially designed for intravaginal use. Distinct patterns of flow velocity waveforms were obtained from the ascending branch of the uterine artery, before and during pregnancy. A gradual increase in diastolic flow throughout gestation was observed, consistent with a decrease in vessel resistance. Flow velocity profiles in the ovarian artery were sampled from the infundibulo-pelvic ligament. Only limited diastolic flow could be detected in either ovary during the follicular phase of the cycle. In the luteal phase there was a marked increase in this flow but only in the ovary containing the corpus luteum. In early pregnancy the high diastolic flow was maintained or even increased, consistent with a low arterial resistance. High image resolution and a higher frequency Doppler transducer increase the usefulness of this technique in the hemodynamic evaluation of the female pelvic vessels.
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Thaler et al. (1990) conducted an observational in Hemodynamic evaluation of female pelvic vessels. High-frequency transvaginal image-directed Doppler system was evaluated on Perfusion characteristics and flow velocity waveforms of the female pelvic vessels. High-frequency transvaginal image-directed Doppler evaluation demonstrated increased diastolic flow in the uterine artery throughout gestation and in the ovarian artery during the luteal phase.
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