Objectives: Despite nearly equivalent outcomes between open and robot-assisted laparoscopic prostatectomy (RALP) for organ-confined prostate cancer (PCa), the role of primary treatment with RALP in men with locally advanced (T3 or greater) PCa has not been described in detail. We report our experience with RALP for pathologically advanced disease.
Patients And Methods: From October 2005 to November 2008, 220 RALPs were performed by a single surgeon (R.B.N.). Outcomes were assessed prospectively in an institutional review board-approved database.
Results: Of 220 RALPs, 35 (15.9%) were performed for pT3 PCa; none of them were identified preoperatively. There was no difference in operative time compared with patients with pT2 disease (271 vs. 295 minutes, p = 0.09). The positive surgical margin (PSM) rate was 20% compared with 4.9% for pT2 (p = 0.004). Sural nerve grafts were performed in 20%, and 57% had bilateral nerve sparing. The use of bilateral or unilateral nerve sparing was not associated with increased PSM (p = 0.85). Biochemical recurrence occurred in 28.6% of men with pT3 disease over an average of 13 months of follow-up time, 30% of which occurred in men with a PSM. At 6 months, an 85% continence rate was achieved, and at 1 year continence was 100% for pT3. Compared with pT2, men with advanced disease had similar recovery after RALP based on postsurgery questionnaires.
Conclusions: RALP is a feasible approach to patients with pathologically advanced PCa as 71% were without evidence of disease at 13 months postoperatively. PSM rate (20%) is comparable to previously reported open PSM rates (24-66%).
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http://dx.doi.org/10.1089/end.2009.0388 | DOI Listing |
Sci Rep
December 2024
Faculty of Dental Medicine and Oral Health Sciences, McGill University, Montreal, Canada.
Accurate diagnosis of oral lesions, early indicators of oral cancer, is a complex clinical challenge. Recent advances in deep learning have demonstrated potential in supporting clinical decisions. This paper introduces a deep learning model for classifying oral lesions, focusing on accuracy, interpretability, and reducing dataset bias.
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December 2024
Department of Thyroid Surgery, Affiliated Hospital of Guizhou Medical University, Guiyang, Guizhou, China.
Although CCL17 has been reported to exert a vital role in many cancers, the related studies in the thyroid carcinoma have never reported. As a chemokine, CCL17 plays a positive role by promoting the infiltration of immune cells into the tumor microenviroment (TME) to influence tumor invasion and metastasis. Therefore, this study is aimed to investigate the association of CCL17 level with potential prognostic value on tumor immunity in the thyroid carcinoma (THCA) based on the bioinformatics analysis.
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December 2024
Department of Biomedical Science and Engineering, Gwangju Institute of Science and Technology, Gwangju, 61005, South Korea.
In optical imaging of solid tumors, signal contrasts derived from inherent tissue temperature differences have been employed to distinguish tumor masses from surrounding tissue. Moreover, with the advancement of active infrared imaging, dynamic thermal characteristics in response to exogenous thermal modulation (heating and cooling) have been proposed as novel measures of tumor assessment. Contrast factors such as the average rate of temperature changes and thermal recovery time constants have been investigated through an active thermal modulation imaging approach, yielding promising tumor characterization results in a xenograft mouse model.
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December 2024
School of Materials Science and Engineering, Peking University, Beijing, 100871, China.
Crystal symmetry, which governs the local atomic coordination and bonding environment, is one of the paramount constituents that intrinsically dictate materials' functionalities. However, engineering crystal symmetry is not straightforward due to the isotropically strong covalent/ionic bonds in crystals. Layered two-dimensional materials offer an ideal platform for crystal engineering because of the ease of interlayer symmetry operations.
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December 2024
College of Engineering and Applied Sciences, Jiangsu Key Laboratory of Artificial Functional Materials, Nanjing University, Nanjing, China.
Early disease diagnosis hinges on the sensitive detection of signaling molecules. Among these, hydrogen sulfide (HS) has emerged as a critical player in cardiovascular and nervous system signaling. On-chip immunoassays, particularly nanoarray-based interfacial detection, offer promising avenues for ultra-sensitive analysis due to their confined reaction volumes and precise signal localization.
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