This study was designed to evaluate the accuracy of ultrasonography alone and in combination with fine-needle aspiration biopsy (FNAB) for detection of axillary metastases of nonpalpable lymph nodes in breast cancer patients. Ultrasonography was carried out in 150 axillas of 148 patients (mean age 57 years, range 30-80 years); and in 93 axillas lymph nodes were detected. Nodes were described according to their dimension and echo patterns and were compared with histopathologic results. FNAB was carried out in 81 axillas (122 nodes). The sensitivity of ultrasonography was highest (87%) when size (length >5 mm) was used as criterion for malignancy, but the specificity was rather low (56%). When nodes with a malignant pattern (echo-poor or inhomogeneous) were visualized, specificity was 95%. Ultrasound-guided FNAB had a sensitivity of 80% and a specificity of 100% and detected metastases in 63% of node-positive patients. It is concluded that FNAB is an easy, reliable, inexpensive method for identifying patients with positive nodes. In the case of negative findings, other diagnostic procedures to exclude lymph node metastases, such as sentinel node mapping, could be performed.
As only about 20% of sentinel node (SN) positive melanoma patients have additional non-SN lymph node involvement in the Completion Lymph Node Dissection (CLND) specimen, we tried to identify a SN positive patient group, which can be spared CLND. Micro anatomic analyses of metastatic SNs were performed to identify patient/tumor and/or SN factors predicting additional non-SN positivity as well as disease-free and overall survival. SN positivity was found in 77 of 262 stage I/II patients, included into a prospective database (10/97-5/04). Of 74 patients pathology material was available for re-evaluation. Micro anatomic analyses categorized topography of SN-metastases, Starz classification and amount of SN tumor burden. Additional non-SN positivity, DFS, OS and was calculated for all analyses. Mean Breslow thickness was 3.5 mm (0.8-12.0); mean FU was 35 (6-81) months. There was no additional non-SN positivity for SN-micrometastases <0.1 mm. Topography of SN involvement had no impact on OS. Estimated 5-year OS rates for the different groups of <0.1 mm, 0.1-1.0 mm and >1.0 mm SN tumor burden were 100%, 63% and 35% respectively. Distant metastases were exceedingly rare (1/16 = 6.3%) in <0.1 mm SN-positive patients. On multivariate analysis the SN tumor burden was the most important prognostic factor for DFS (P = 0.005) and OS (P = 0.03). Distant metastasis-free survival was identical (91%) to the 5-yr OS of SN negative patients, the estimated 5-yr OS was 100% for these patients and additional non-SN positivity was not observed. Therefore, our data suggest that patients with sub-micrometastases (<0.1 mm) in the SN may be judged as SN negative, as non-stage III, and are highly unlikely to benefit from CLND, which we no longer recommend.
In patients without palpable axillary nodes, a sentinel node biopsy could be avoided in 17 per cent since ultrasonography combined with FNAC had already diagnosed axillary metastases. The method is particularly valuable in larger breast cancers.
It is possible to identify young women at high risk for breast cancer. The number of cancers detected was significantly greater than expected in an age-matched average-risk population and related to the risk category. Overall, screening parameters were comparable to population screening data, with less favorable results in the youngest age group (< 40) and BRCA1/2 carriers.
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