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At least 73 records · Page 4Linked to original sources

Fetendo-clip: a fetal endoscopic tracheal clip procedure in a human fetus.

Fetal tracheal occlusion accelerates lung growth and corrects the often fatal pulmonary hypoplasia seen in fetuses with congenital diaphragmatic hernia. Fetoscopy presents a unique opportunity to glimpse into the world of the fetus, but its use, until recently, has been limited to diagnostic and simple procedures. Using fetoscopic techniques ("Fetendo"), we now report successful tracheal occlusion in a 30-week-old fetus for the treatment of congenital diaphragmatic hernia.

Adult↗

To clip or not to clip? Noseclips for spirometry.

The use of noseclips for open-circuit spirometry is sporadic, despite guidelines encouraging their use. The authors aimed to evaluate whether noseclips significantly affected measurements of forced vital capacity (FVC) and forced expiratory volume in one second (FEV1) in children attending a tertiary, paediatric respiratory centre. Children attending the asthma and cystic fibrosis (CF) clinics were asked to perform two sets of spirometry, one with and one without noseclips in random order, 20-min apart. Paired data was obtained on 62 patients (32 asthma, 30 CF) with a median age of 11.4 yrs (range 7.2-17.2 yrs). There were no systematic differences in FEV1 or FVC measured with and without noseclips, although seven children (11%) had clinically significant differences in FEV1 of >190 mL. There is no clear advantage to wearing noseclips when performing open-circuit spirometry. Individuals should be assessed to ascertain their optimal technique, which should then be used consistently in clinical practice. Noseclips should probably be retained for research protocols.

Adolescent↗

Does the placement of surgical clips within the excision cavity influence local control for patients treated with breast-conserving surgery and irradiation.

PURPOSE: A number of authors have demonstrated the importance of using surgical clips to define the tumor bed in the treatment planning of early-stage breast cancer. The clips have been useful in delineating the borders of the tangential fields, especially for very medial and very lateral lesions as the boost volume. If surgical clips better define the tumor bed, then a reduction in true or marginal recurrences should be appreciated. We sought to compare the incidence of breast recurrence in women with and without surgical clips, controlling for other recognized prognostic factors. METHODS AND MATERIALS: Between 1980 and 1992, 1364 women with clinical Stage I or II invasive breast cancer underwent excisional biopsy, axillary dissection, and definitive irradiation. Median follow-up was 60 months. Median age was 55 years. Seventy-one percent of patients were path NO, 22% had one to three nodes, and 7% had > than four nodes. Sixty-one percent were ER positive and 44% PR positive. Margin status was negative in 62%, positive in 10%, close in 9%, and unknown in 19%. Fifty-seven percent of women underwent a reexcision. Adjuvant chemotherapy + tamoxifen was administered in 29%, and tamoxifen alone in 17%. Surgical clips were placed in the excision cavity in 556 patients, while the other 808 did not have clips placed. All patients had a boost of the tumor bed. Patients had their boost planned with CT scanning or stereo shift radiographs. No significant differences between the two groups were noted for median age, T stage, nodal status, race, ER/PR receptor status, region irradiated, or tumor location. Patients without clips had negative margins less often, a higher rate of unknown or positive margins and more often received no adjuvant therapy compared to patients with surgical clips. RESULTS: Twenty-five and 27 patients with and without surgical clips, respectively, developed a true or marginal recurrence in the treated breast. The actuarial probability of a breast recurrence was 2% at 5 years and 5% at 10 years for patients without clips compared to 5 and 11%, respectively, for patients with clips (p=0.01). Comparing the breast recurrence rates for patients with and without clips there was no significant difference for the following factors: chemotherapy, tamoxifen, negative, positive or close margins, reexcision, N1, and central or inner primary. Increased rates of breast recurrence were noted for patients with clips for the following variables: no adjuvant treatment (p < 0.001), unknown margins (p < 0.001), a single excision (p = 0.003), path NO (p = 0.001), and outer location (p= 0.02). A forward stepwise multivariate analysis for all 1364 patients was performed using the aforementioned variables as well as the presence or absence of surgical clips and the primary surgeon. The surgeon (p = 0.03) and no adjuvant treatment (p = 0.01) significantly influenced breast recurrence. For patients with surgical clips the 10 year isolated breast recurrence rate was 21% for a single surgeon vs. 6% in the remainder of the group (p = 0.01). For patients with clips, this surgeon had unknown margins in 48% of cases compared to 10% overall (p = 0.001). Excluding this surgeon from analysis the isolated breast recurrence for patients with clips was 6 vs. 5% for patients without clips (p = 0.18). CONCLUSIONS: Overall, there was a significant difference in the 10-year breast recurrence rate favoring women without clips despite more adverse prognostic factors. There was no difference in the breast recurrence rate for patients with or without surgical clips if careful attention to margin status was addressed. Failure to ink the surgical specimen resulting in unknown margins cannot be compensated for with the placement of .

Antineoplastic Agents, Hormonal↗