PubMed Health⌕ Search

PubMed · 10644108

MR hysterosalpingography: protocol development and refinement for simulating normal and abnormal fallopian tube patency--feasibility study with a phantom.

Abstract

PURPOSE: To develop and refine a pulse sequence and protocol for testing the feasibility of magnetic resonance (MR) hysterosalpingography in a phantom model. MATERIALS AND METHODS: A phantom simulating the uterus, fallopian tubes, and surrounding pelvic cavity was constructed. T2-weighted acquisition strategies-breath-hold fast spin-echo, rapid acquisition with relaxation enhancement (RARE), and haff-Fourier RARE-were refined to acquire sequential 70-mm coronal imaging volumes. Contrast agent was injected into the introducing catheter entering the os of the simulated uterus. Interacquisition interval, type of contrast agent (eg, sterile saline solution or water), and quantity of contrast agent (eg, 1-5 mL per acquisition) were varied. Digital image subtraction was used to enhance image quality. Images were qualitatively analyzed and rated good, fair, or poor for temporal resolution, spatial resolution, fallopian tube conspicuity, and free spill conspicuity. Once the technique was refine, the phantom was reconfigured to simulate unilateral and bilateral hydrosalpinx. RESULTS: The RARE sequence with an 8-second interacquisition interval and a 5-mL interacquisition of sterile water produced good images of the simulated fallopian tubes and free spill. Depiction of unilateral and bilateral hydrosalpinx was also reliably demonstrated. CONCLUSION: This study with a phantom model demonstrates the feasibility of MR hysterosalpingography to depict normal and diseased fallopian tubes.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

R E Frye, S M Ascher, D Thomasson. 2000. MR hysterosalpingography: protocol development and refinement for simulating normal and abnormal fallopian tube patency--feasibility study with a phantom.. https://doi.org/10.1148/radiology.214.1.r00ja42107

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Hydatid cyst of the liver presenting as an inferior vena cava obstruction.

A 48-year-old woman presented with clinical features suggestive of an obstruction of the inferior vena cava (IVC). Abdominal sonography showed a 15- x 14-cm cystic mass involving the medial segment of the left hepatic lobe and the anterior segment of the right hepatic lobe. We visualized multiple intracystic floating membranes, a detached endocyst, and a daughter cyst within the main cyst. The cyst was compressing and effacing the intrahepatic portion of the IVC and the right atrium. Sonography of the right and left hepatic veins showed blood flow in the normal direction, but spectral analysis showed that the flow was continuous, possibly owing to extrinsic compression of the IVC at the site where the hepatic veins drained into the IVC. The patient responded well to percutaneous treatment of the hydatid cyst. This case represents a rare presentation of a hydatid cyst of the liver.

Constriction, Pathologic↗

[Intraoperative spinal sonography].

AIM: Our intention was to examine the value of ultrasonography in the case of spinal stenosis caused by bony fragments or a tumour. Pre- and postoperative computed tomographies were compared with intraoperative ultrasound images. METHOD: Intraoperative sonography during spinal surgery was used after laminotomy or laminectomy in twenty patients with a stenosis of the spinal canal, caused by fragments or tumours. RESULTS: The posterior vertebral wall as well as tumour-tissue and myelon can be well distinguished by sonography. The dural sheath remains sonographically visible as a white line between tumour-tissue and myelon even in the case of immense compression. Small bony fragments or herniated disc material are also visible in the spinal canal. Thin surgical instruments can be guided into their target region under ultrasonographic control. When the restored epidural space can be demonstrated sonographically, this proves complete decompression of the spinal cord. CONCLUSION: Intraoperative ultrasound is an unrestricted repeatable real-time method for the surgeon to control the restoration and the width of the spinal canal. The extent of the operation depends on the results of the intraoperative sonography.

Constriction, Pathologic↗