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Lymphoscintigraphy for sentinel node (SN) localization was performed on a 60-y-old man with a melanoma on his back. Skin contamination occurred as a result of the radiopharmaceutical dose administration. Skin contamination could result in a misinterpretation of the SN location. Careful observation of the procedure avoided a misinterpretation with this study. 相似文献
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Karatzanis AD Drivas EI Giannikaki ES Lachanas VA Hatziioannou JK Velegrakis GA 《Auris, nasus, larynx》2005,32(4):435-437
Malignant myoepithelioma is a rare salivary gland neoplasm that can arise either de novo or within a pre-existing pleomorphic adenoma. We report a case of malignant myoepithelioma arising from a pleomorphic adenoma of the soft palate. A 70-year-old woman presented in our department with a very large tumor of the soft palate. The patient had a history of a pleomorphic adenoma at the same location that was surgically removed 2 years ago. A second operation, with intraoral excision of the tumor was performed. Histological examination of the recurrence revealed a malignant spindle cell neoplasm with an infiltrative growth pattern and a high mitotic rate. Immunohistochemical investigation confirmed the diagnosis of a low-grade carcinoma of myoepithelial origin with free surgical margins. The patient remains free of disease for more than twelve months after the end of treatment. 相似文献
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Elpida Piperopoulos Marianna Fazio Emanuela Mastronardo Maurizio Lanza Candida Milone 《Materials》2021,14(5)
Thermochemical materials (TCM) are among the most promising systems to store high energy density for long-term energy storage. To be eligible as candidates, the materials have to fit many criteria such as complete reversibility of the reaction and cycling stability, high availability of the material at low cost, environmentally friendliness, and non-toxicity. Among the most promising TCM, the Mg(OH)2/MgO system appears worthy of attention for its properties in line with those required. In the last few decades, research focused its attention on the optimization of attractive hydroxide performance to achieve a better thermochemical response, however, often negatively affecting its energy density per unit of volume and therefore compromising its applicability on an industrial scale. In this study, pure Mg(OH)2 was developed using different synthesis procedures. Reverse deposition precipitation and deposition precipitation methods were used to obtain the investigated samples. By adding a cationic surfactant (cetyl trimethylammonium bromide), deposition precipitation Mg(OH)2 (CTAB-DP-MH) or changing the precipitating precursor (N-DP-MH), the structural, physical and morphological characteristics were tuned, and the results were compared with a commercial Mg(OH)2 sample. We identified a correlation between the TCM properties and the thermochemical behavior. In such a context, it was demonstrated that both CTAB-DP-MH and N-DP-MH improved the thermochemical performances of the storage medium concerning conversion (64 wt.% and 74 wt.% respectively) and stored and released heat (887 and 1041 ). In particular, using the innovative technique not yet investigated for thermal energy storage (TES) materials, with NaOH as precipitating precursor, N-DP-MH reached the highest stored and released heat capacity per volume unit, ~684 MJ/m3. 相似文献
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Mutations in the leucine-rich repeat kinase 2 (LRRK2) gene represent the most common cause of familial Parkinson’s disease (PD), whereas common variation at the LRRK2 locus is associated with an increased risk of idiopathic PD. Considerable progress has been made toward understanding the
biological functions of LRRK2 and the molecular mechanisms underlying the pathogenic effects of disease-associated mutations.
The development of neuronal culture models and transgenic or viral-based rodent models have proved useful for identifying
a number of emerging pathways implicated in LRRK2-dependent neuronal damage, including the microtubule network, actin cytoskeleton,
autophagy, mitochondria, vesicular trafficking, and protein quality control. However, many important questions remain to be
posed and answered. Elucidating the molecular mechanisms and pathways underlying LRRK2-mediated neurodegeneration is critical
for the identification of new molecular targets for therapeutic intervention in PD. In this review we discuss recent advances
and unanswered questions in understanding the pathophysiology of LRRK2. 相似文献
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