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Biomedical subjects

I E Timor-Tritsch

Publications and source records attributed to I E Timor-Tritsch.

At least 73 records · Page 4Linked to original sources

High-frequency transvaginal sonographic examination for the potential malformation assessment of the 9-week to 14-week fetus.

A study was undertaken to evaluate the ability of the high-frequency transvaginal scanning method to consistently image first- and early second-trimester fetal structures, such as body contours, long bones, fingers, face, palate, feet, toes, and the four-chamber view. Ninety-seven low-risk pregnancies were scanned from 9 weeks to 14 menstrual weeks inclusive. Accurate dating was ascertained. The results showed that consistent detection of the respective structures was achieved at the following menstrual ages: sagittal contours at 9 weeks to 10 weeks, long bones at 10 weeks to 11 weeks, fingers at 12 weeks, face and palate at 12 weeks, feet and toes at 13 weeks, and the four-chamber view at 14 weeks. The organs and structures examined could be detected at 9 weeks to 14 weeks inclusive. An increasing number of structure were detected consistently with the increasing menstrual age. The study supports the possibility of searching for specific malformations at or after the menstrual ages mentioned, or performing a more comprehensive malformation evaluation after 13 weeks.

Female↗

Fetal stomach measurements: not reproducible by the same observer.

We hypothesized that because fetal stomach filling and emptying is a dynamic process, measurements of the stomach dimensions might not be reproducible. Serial measurements 20 minutes apart were made of the stomach in 146 fetuses at 14 to 41 weeks of gestation. In 88 of these fetuses, the biparietal diameter also was measured to provide a standard for comparison. The mean percentage change between each of the paired measurements was 16.6% to 43.1% for the different stomach dimensions, compared with only 2% for the biparietal diameter (P < 0.001). We suggest that caution be excised in the diagnostic use of stomach measurements owing to their dynamically changing nature.

Anthropometry↗

Transvaginal sonography in gynecologic office practice.

Recent technologic developments have made transvaginal ultrasound an important adjunct to gynecologic examination in both the office and the emergency room settings. Important advantages of using transvaginal ultrasonography to supplement bimanual examination are presented and discussed. Training and equipment issues, as well as medicolegal issues, are addressed.

Equipment Design↗

Sonographic evolution of cornual pregnancies treated without surgery.

Transvaginal sonography allows early and accurate diagnosis of cornual pregnancy, as well as providing a means for puncture injection treatment of certain ectopic pregnancies. We describe four cases of cornual pregnancy managed nonsurgically and followed with transvaginal sonography for 47-64 weeks. Sonographic evidence of cornual pregnancy persisted throughout the period of follow-up, despite resumption of normal menstrual cyclicity. We conclude that some early live cornual pregnancies can be managed by puncture injection, and cornual pregnancies in which the embryo has died can be followed conservatively.

Female↗

Classification of tubal gestations by transvaginal sonography.

Transvaginal sonographic images of tubal pregnancies were correlated with the surgical findings in 191 patients having this condition. The sonographic appearance of the ectopic gestations was classified by the absence or presence of structures such as a 'tubal ring' containing the yolk sac, embryonic structures, heart activity, a sonolucent or irregularly echogenic gestational sac, dilated Fallopian tube with amorphous content, fluid in the pelvis and an empty uterus. The following classifications were made: Type Ia (n = 43) A well-defined 'tubal ring' and a beating heart with or without discrete embryonic or extra-embryonic structures. Type Ib (n = 48) A 'tubal ring' containing embryonic and/or extra-embryonic structures without heart beats. Type II (n = 64) An ill-defined or thin tubal wall containing sonolucent or an irregularly echogenic core but not embryonic or extra-embryonic structures. Type III (n = 28) Free pelvic fluid and an empty uterus in patients with positive serum beta-hCG levels. The outline of the tube cannot be visualized. Surgery revealed unruptured tubal pregnancies in 90 patients of the combined groups of Types Ia and Ib. In one additional patient, a tubal rupture was found. In the Type II patients, 26 tubal pregnancies with blood clots in the tube but no evidence of bleeding into the pelvis, and 38 tubal ruptures or abortions were diagnosed. All Type III patients had ruptured tubal pregnancies or bleeding tubal abortions. In eight patients (4.2%), the only sonographic finding was an empty uterus, and these cases were erroneously diagnosed as not having an ectopic pregnancy (false negatives). There were two false-positive cases in which a tubal ring was detected, and this was related to an hemorrhagic corpus luteum. When used for diagnosing tubal pregnancy, the transvaginal scanning technique (together with beta-hCG in Type III cases) carries a sensitivity of 95.8% and specificity of 99.9%. It is an invaluable tool in the diagnostic work-up and management of patients with suspected ectopic gestation.

Journal Article↗

Puncture procedures utilizing transvaginal ultrasonic guidance.

The introduction of transvaginal sonography has enabled the use of this scanning method for guided puncture procedures. A total of 102 puncture procedures are described: 63 fetal reductions, eight punctures of ectopic pregnancies, 19 drainages of pelvic contents, seven punctures of ovarian cysts, four diagnostic culdocenteses and one injection of a cervical pregnancy. Every procedure is discussed in detail. There was only one procedure-related complication. The advantages of the ultrasound-guided vaginal puncture procedure are its performance under real-time imaging, a low complication rate, a better pregnancy outcome when considering the reduction of multifetal gestations, and, most importantly, the fact that abdominal surgery can be avoided in several cases.

Journal Article↗

Transvaginal ultrasonographic definition of the central nervous system in the first and early second trimesters.

A 6.5 MHz transvaginal sector scanner was used to describe the fetal central nervous system anatomy from 6 to 14 weeks. One hundred thirty-three pregnant patients were scanned after the crown-rump measurements were found to be within a range of less than or equal to 4 days from menstrual age. The number of possible ultrasonographic sections ("slices"), as well as the number of successful views in the axial, coronal, and sagittal sections, was tabulated. A detailed list of central nervous system structures that are seen at each gestational age is presented. The results showed that a significant number of brain structures could be imaged. The number and the clarity of the structures and the number of successful views in the three scanning planes increased with gestational age. We concluded that transvaginal scanning for central nervous system maldevelopment can be started in the late first and early second trimesters.

Central Nervous System↗

Imaging the fetal brain in the second and third trimesters using transvaginal sonography.

High-frequency transvaginal probes were used at 20-40 weeks' gestation to develop a systematic examination of the fetal brain. Modeling the procedure after the standard neonatal neurosonographic examination, we attempted to obtain three coronal sections (anterior, midline, posterior) and two sagittal sections (midsagittal, right or left parasagittal). In 70 normal patients, all planes were imaged with a similar frequency (74-76%) except for the posterior coronal plane, which was imaged 59% of the time. Among the first 35 cases, 17% had a complete study, compared with 71% of the second 35 cases. Transvaginal sonography established or changed the diagnosis in five of the 13 cases with central nervous system or other abnormalities. We recommend that a complete fetal neurosonographic examination include transvaginal sonography to complement and enhance the transabdominal examination, especially for cases in which a fetal abnormality is suspected.

Brain Diseases↗

Transvaginal sonographic characterization of ovarian disease: evaluation of a new scoring system to predict ovarian malignancy.

With the advent of high-frequency transvaginal ultrasonography, new opportunities are presented to better define ovarian lesions. The goal of this study was to develop a scoring system using transvaginal sonographic characterization of pelvic/ovarian lesions. Our purpose was to maximize the discrimination between benign and malignant entities. Transvaginal sonographic pelvic images of 143 patients were correlated with surgical findings or histopathology. Of 281 ovaries, 108 had benign lesions (30 endometriomas, 24 teratomas, 21 simple cysts, and 33 other abnormalities) and 20 had malignancies. The scoring system devised was useful in distinguishing benign from malignant masses, with a specificity of 83%, sensitivity of 100%, and positive and negative predictive values of 37 and 100%, respectively. Further experience and refinements of this method of scoring should maximize the benefit of high-resolution transvaginal sonography of ovarian lesions.

Adult↗

Transvaginal sonographic technique: targeted organ scanning without resorting to "planes".

The orientation of the sonographer performing a transvaginal scan is currently based on a concept of anatomical planes, which is customary in transabdominal sonography. We challenge this concept and propose a different approach altogether based on focusing on target organs rather than anatomic planes. The problem of orientation in transvaginal sonography stems from the following: (1) There is a very short distance between the relatively high-frequency transvaginal transducer-probe and the scanned area; a close-up image is generated encompassing a single organ or only part of it. (2) The scanning angle is initially perpendicular to that of abdominal sonography. (3) Transvaginal sonography is an endocavitary dynamic scanning technique. According to the experience in our department (30,000 examinations during the past 4 years) and in two other medical centers, best results from the transvaginal ultrasonographic examination are achieved when the operator searches for every specific organ as the main target, without resorting to pelvic "planes." The guidelines for targeted organ scanning and the associated change in orientation are reported together with the limitations. Targeted organ scanning without resorting to "planes" helps the operator to resolve the problem of orientation during the transvaginal ultrasonographic examination, and to simplify the procedure to a great extent.

Fallopian Tubes↗

The discriminatory zone of beta-hCG for vaginal probes.

Recent developments in both laboratory measurements and ultrasound technology have revolutionized the management of early pregnancy. The discriminatory zone concept is a direct result of these developments. By correlating the serum beta-hCG values to the size of an intrauterine gestational sac, a value can be chosen that corresponds to the threshold of visualization of the sac. If the beta-hCG is above this value, a sac must be seen, and if it is not, aggressive steps should be taken to determine whether the pregnancy is abnormal or ectopic. The discriminatory zone may vary among institutions due to different equipment and assays. Thus, its value should be calculated individually at each institution. A proper discriminatory zone and a management protocol such as the one above can eliminate much of the uncertainty in the management of suspected ectopic and early pregnancies.

Chorionic Gonadotropin↗

Sonoembryology: an organ-oriented approach using a high-frequency vaginal probe.

First trimester gestations of 95 patients were studied by high-frequency transvaginal sonography, which permits the imaging of organs shortly after their development. This new technique has great potential for clinical implementation in such cases as accurate gestational dating and malformation workup.

Cerebral Ventricles↗

Placenta previa--is the traditional diagnostic approach satisfactory?

The accuracy of the diagnosis of placenta previa using transvaginal sonography (TVS) was compared to that of the traditional transabdominal sonography (TAS). Seventy seven women were scanned by both methods and each sonographic diagnosis was compared to the placental location at delivery. TVS was superior to TAS in diagnosing placenta previa and invariably correct in ruling it out. TVS (and TAS) failed to predict the placental location at delivery only in women diagnosed as having marginal placenta previa prior to 35 weeks gestation. The use of the vaginal probe significantly improved the accuracy of the diagnosis of placenta previa.

Abdomen↗

Hemodynamic evaluation of the female pelvic vessels using a high-frequency transvaginal image-directed Doppler system.

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.

Blood Flow Velocity↗

Ultrasonographic evaluation of uteroplacental blood flow patterns of abnormally located and adherent placentas.

Transvaginal ultrasonography was used to evaluate antepartum bleeding in a group of 76 patients at varying gestational ages with suspected placenta previa. The clinical outcome of 16 patients with persistent placenta previa was documented. Nine of the 16 patients had placental lacunar blood flow. Two of the nine patients were lost to follow-up. At cesarean section the seven patients with lacunar flow had a higher incidence of blood loss, transfusion requirements, abnormally implanted placenta, and cesarean hysterectomy than the six patients in whom no lacunar flow patterns were seen (p = 0.002). The finding of these flow patterns with abnormally located placentas suggests the anticipation of significant blood loss and probable extension of operative procedures to stop the blood loss.

Female↗

Is office use of vaginal ultrasonography feasible?

Technical advances involving ultrasonographic equipment in the last years enabled the wide use of the high-resolution, 5.0 to 7.5 MHz transducers as endovaginal probes. The clear images produced are easy to interpret and, if obtained at the same time, can be used effectively to complement a routine bimanual pelvic examination. Formal teaching of the technique is imperative. This should be done by means of incorporating ultrasonography, in general, and transvaginal sonography, in particular, in formal residency training. The reasons for incorporating transvaginal sonographic examination in the standard pelvic examination done in the office or the emergency room are discussed.

Female↗

Early detection of caudal regression syndrome with transvaginal scanning.

High-resolution transvaginal ultrasonography may recognize structures in the first- and early second-trimester fetus. In a patient with pregestational diabetes, caudal regression syndrome in the fetus was diagnosed using transvaginal ultrasonography. At 9 weeks of gestation, a shortening of the crown-rump length and a protuberance of the lower spine suggested caudal regression syndrome. By 17 weeks of gestation, the diagnosis was made with certainty. The transvaginal approach has changed the role of first-trimester ultrasound in the diabetic pregnancy. We suggest that transvaginal ultrasonography be used for purposes of accurate dating and for early detection of diabetic embryopathy, particularly in patients with poor periconceptional glycemic control.

Adult↗