Dystrophic calcification in breast tissue and the chest wall is a common finding in patients undergoing definitive therapy including radiation treatment for breast cancer. In this report, we correlate significant and symptomatic dystrophic dense calcification as a late treatment effect associated with radiation therapy and correlate dosimetry and radiation dose and daily dose fractionation asymmetry to the development of calcifications.
Background Breast deformity is common following lumpectomy. Use of ptotic lower pole tissue for restoration of volume in the upper pole is quite appealing since it allows for a concomitant lift. This study presents the medial pillar island flap technique of oncoplastic breast reconstruction of upper pole defects. Methods Vascular anatomy of the lower pole of the breast was investigated with cadaver study. The medial pillar island flap was designed utilizing the territory of the inferior pole of the breast as an island flap pedicled medially by the internal mammary artery perforators surrounded by the soft tissue of the medial pillar. It was transposed to the upper pole lumpectomy defect as an independent flap from superomedial pedicle which was utilized for nipple transposition. Results The dominant internal mammary artery perforator supplying the medial pillar island flap was consistently found in the fourth interspace at a mean distance of 8.5 cm (range, 8 to 10) from the sternal midline. Thirty patients underwent the procedure, with a mean age of 61 years and mean body mass index of 28.9. The average size of the defect was 170 cm3 (range, 48 to 295 cm3). The majority of the patients (n = 28) underwent opposite breast symmetry surgery as well. The average follow up was 12 months. Complication rate was 23.3%. Reoperation rate was 16.7%. There was no evidence of flap compromise or nipple areola complex necrosis. Patient satisfaction was high, with a mean score of 4.1 (range, 2 to 5) out of 5. Conclusions The medial pillar island flap has reliable vascularity based on the internal mammary artery system. The flap carries lower pole breast tissue as confined by the medial and lateral pillars of a vertical mastopexy design, offering unrestricted arc of rotation for effective reconstruction of upper pole lumpectomy defects as it is completely dissected from the chest wall and the inframammary fold. The two flap design, along with superomedial pedicle, accomplishes versatility for flap inset. The technique was proven to result in safe outcomes without major complications.
Results:Mean(SD)follow-upwas47(33)months.Treatment involved mastectomy in 29 (91%) PD vs 16 (25%) non-PDpatients(P.001),radiotherapyin14(44%)PD vs 53 (83%) non-PD patients (P.001), and hormonal therapy in 14 (44%) PD vs 33 (52%) non-PD patients (P=.004). Biological markers were not significantly different except for ERBB2 (formerly HER2 or HER2/neu) overexpression in 14 (44%) PD vs 16 (25%) non-PD patients(P=.008).ThePDgrouphadanoverall5-yearsurvival of 81.2% vs 93.8% of the non-PD group (KaplanMeier log-rank,P=.03). The unadjusted hazard ratio for the PD vs non-PD group was 5.31 (95% CI, 1.74-16.27; P=.003). The corresponding hazard ratio after adjusting for local and systemic treatment was 2.26 (95% CI, 0.46-11.06; P=.32). Conclusions:These exploratory data show that PD may haveanegativeeffectonbreastcancersurvival.Thisfinding needs to be substantiated in larger data sets.
BACKGROUND: A short course of potassium iodide (SSKI) has been traditionally used to prepare patients with Graves' disease for thyroidectomy. The rationale for this treatment has evolved over time; from control of hyperthyroidism to facilitating surgery by making the gland less friable and bloody.METHODS: Randomized trial of preoperative SSKI vs no SSKI to test whether that is true.RESULTS: Mean estimated blood loss in the SSKI group (62 mL) was less than in the control group (162 mL) as was the median estimated blood loss (50 vs 140 mL). Mean (142 vs 162 minutes) and median (138 vs 150 minutes) operative times were also less in the SSKI arm. Subjective difficulty of operation was similar. Multivariable comparisons of groups with analysis of covariance showed the SSKI group suffered a mean blood loss 35% of the no treatment group (P = .036), the 9.2% decrease in Operating Room (OR) time between the SSKI group and the no treatment group was not statistically different (P = .464).CONCLUSIONS: SSKI given before operation in patients with Graves' disease reduces blood loss during thyroidectomy. (C) 2016 Elsevier Inc. All rights res erved.
Intraoperative delineation of breast cancer is a significant problem in surgical oncology. A reliable method for demarcation of malignant breast tissue during surgery would reduce the re-excision rate due to positive margins. We present a novel method of identifying breast cancer margins using combined dye-enhanced wide-field fluorescence polarization imaging for en face cancer margins and polarization-sensitive (PS) optical coherence tomography (OCT) for cross-sectional evaluation. Tumor specimens were collected following breast surgery, stained with methylene blue, and imaged. Wide-field fluorescence polarization images were excited at 640 nm and registered between 660 and 750 nm. Standard and PS OCT images were acquired using a commercial 1,310-nm swept-source system. The imaging results were validated against histopathology. Statistically significant higher fluorescence polarization of cancer as compared with both normal and fibrocystic tumor tissue was measured in all the samples. Fluorescence polarization delineated lateral breast cancer margins with contrast superior to that provided by OCT. However, OCT complemented fluorescence polarization imaging by facilitating cross-sectional inspection of tissue. PS OCT yielded higher contrast between cancer and connective tissue, as compared with standard OCT. Combined PS OCT and fluorescence polarization imaging shows promise for intraoperative delineation of breast cancer.
Intra-operative delineation of breast cancer is a challenging problem. We used dye-enhanced wide-field polarization imaging for rapid demarcation of en face cancer margins and optical coherence tomography (OCT) for cross-sectional evaluation. Ductal carcinoma specimens were stained with methylene blue. Wide-field reflectance images were acquired at 440 and 640 nm. Wide-field fluorescence images were excited at 640 nm and registered between 660 nm and 750 nm. OCT images were acquired using a 1310 nm swept-source system. The results were validated against histopathology. Both imaging modalities provided diagnostic information on cancer margins. Combined OCT and wide-field polarization imaging shows promise for intra-operative detection of ductal breast carcinoma.
The goal of the study was to evaluate wide-field and high-resolution multimodal optical imaging, including polarization, reflectance, and fluorescence for the intraoperative detection of breast cancer. Lumpectomy specimens were stained with 0.05 mg/ml aqueous solution of methylene blue (MB) and imaged. Wide-field reflectance images were acquired between 390 and 750 nm. Wide-field fluorescence images were excited at 640 nm and registered between 660 and 750 nm. High resolution confocal reflectance and fluorescence images were excited at 642 nm. Confocal fluorescence images were acquired between 670 nm and 710 nm. After imaging, the specimens were processed for hematoxylin and eosin (H&E) histopathology. Histological slides were compared with wide-field and high-resolution optical images to evaluate correlation of tumor boundaries and cellular morphology, respectively. Fluorescence polarization imaging identified the location, size, and shape of the tumor in all the cases investigated. Averaged fluorescence polarization values of tumor were higher as compared to normal tissue. Statistical analysis confirmed the significance of these differences. Fluorescence confocal imaging enabled cellular-level resolution. Evaluation and statistical analysis of MB fluorescence polarization values registered from single tumor and normal cells demonstrated higher fluorescence polarization from cancer. Wide-field high-resolution fluorescence and fluorescence polarization imaging shows promise for intraoperative delineation of breast cancers.