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1.
Sci Rep ; 14(1): 14761, 2024 Jun 26.
Artigo em Inglês | MEDLINE | ID: mdl-38926393

RESUMO

The main objective of this study was to use deep learning, and convolutional neural networks (CNN), integrated with field geology to identify distinct lithological units. The Samadia-Tunduba region of the South Eastern Desert of Egypt was mapped geologically for the first time thanks to the use of processed developed CNN algorithms using Landsat 9 OLI-2, which were further enhanced by geological fieldwork, spectral measurements of field samples, and petrographic examination. According to previously published papers, a significant difference was observed in the distribution of rocks and their boundaries, as well as the previously published geological maps that were not accurately compatible with the nature of the area. The many lithologic units in the region are refined using principal component analysis, color ratio composites, and false-color composites. These techniques demonstrated the ability to distinguish between various igneous and metamorphic rock types, especially metavolcanics, metasediments, granodiorite, and biotite monzogranite. The Key structural trends, lithological units, and wadis affecting the area under study are improved by the principal component analysis approach (PC 3, 2, 1), (PC 2, 3, 4), (PC 4, 3, 2), (PC 5, 4, 3), and (PC 6, 5, 4) in RGB, respectively. The best band ratios recorded in the area are recorded the good discrimination (6/5, 4/3, and 2/1), (4/2, 6/7, and 5/6), and (3/2, 5/6, and 4/6) for RGB. The classification map achieved an overall accuracy of 95.27%, and these results from Landsat-9 data were validated by field geology and petrographical studies. The results of this survey can make a significant difference to detailed geological studies. A detailed map of the new district has been prepared through a combination of deep learning and fieldwork.

2.
Sci Rep ; 13(1): 15058, 2023 Sep 12.
Artigo em Inglês | MEDLINE | ID: mdl-37700069

RESUMO

Integrating diverse techniques and datasets, significantly enhances the accurate identification of various mineral deposits. This work aims to determine different types of mineral deposits in the Hamash district (Southern Eastern Desert, Egypt) by combining structural features (derived from ALOS PALSAR DEM), alteration zones (detected using ASTER and Sentinel-2), and ore mineralogy. Multispectral imaging, such as ASTER and Sentinel-2 satellite data, provides a cost-effective and efficient tool for lithological and hydrothermal alteration mapping utilizing selective band ratios (SBR), directed principal component analysis (DPCA), feature-oriented false-color composites (FFCC), and constrained energy minimization (CEM). The deductions drawn from the analysis of ASTER and Sentinel 2 satellite data are solidly corroborated through meticulous investigations of pre-existing lithological maps in the study area, on-site validation via fieldwork, and robust laboratory analysis, attesting to reliable results. Validation of remote sensing results was performed through field observations, petrographic investigations, X-ray diffraction technique (XRD), and SEM-EDX analyses. Based on ore mineralogy derived from XRD and SEM results the quartz-vein-associated ore minerals in the Hamash district include chalcopyrite, pyrite, hematite, goethite, bornite, covellite, and gold. According to the present paragenesis, the mineralization in the study area is classified into three types: sulfide mineralized zone, transitional zone, and supergene zone. Using an ore microscope, our studies identified that the alteration zones include gold-bearing sulfide minerals as well as the minerals goethite and malachite. In gold-bearing quartz samples, the concentrations of Cu, As, Ag, and Sb are positively correlated with Au at the degree of shear deformation. According to data gathered from the fire assay results, Au content varied from 0.027 to 57.20 ppm, along with Cu (10-6484 ppm), Ag (0.5-20.5 ppm), As (5-2046 ppm), Zn (3-1095 ppm), Pb (2-1383 ppm), and Sb (5-23). Our results confirmed that the Hamash region is one of the most important gold-bearing sites, with gold concentrations ranging from 0.027 up to 57.20 ppm. Furthermore, the current contribution highlighted four stages in the paragenetic sequence of the recorded ores, including magmatic, metamorphic, hydrothermal, and supergene by origin, indicating a considered similarity with the known Egyptian gold sites regarding host rocks, mineralization style, alteration assemblage, and several ore mineral conditions.

3.
Clin Respir J ; 11(4): 529-531, 2017 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-26260444

RESUMO

INTRODUCTION: We report a case in our center of unilateral urinothorax that occurred post percutaneous nephrolithotomy as a rare cause of pleural effusion and acute dyspnea. METHODS: Report of a case. RESULTS: Initial chest CT showed massive left sided pleural effusion from which biochemical investigations revealed exudative effusion and urinothorax. The effusion was drained by central venous pressure catheter and urologic problem was resolved. CONCLUSIONS: urinothorax should be suspected as a cause of pleural effusion in obstructive uropathy and post renal and ureteric maneuvers.


Assuntos
Cateteres Venosos Centrais/estatística & dados numéricos , Nefrolitotomia Percutânea/efeitos adversos , Derrame Pleural/etiologia , Cálculos Urinários/complicações , Pressão Venosa Central , Diagnóstico Diferencial , Exsudatos e Transudatos/metabolismo , Feminino , Humanos , Pessoa de Meia-Idade , Derrame Pleural/complicações , Derrame Pleural/diagnóstico por imagem , Tomógrafos Computadorizados , Resultado do Tratamento , Cálculos Urinários/cirurgia
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