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Application of Mcm-2 immunohistochemistry could, therefore, increase the diagnostic accuracy of the Ljubljana classification, and further work in this area is warranted.
The application of MCMs to detecting bladder cancer is based on the fact that most cells in the human body, including urothelial cells, are not cycling and exist in a state of quiescence (G0 phase).
There are basically four types of MCM: MCM-laminates substrates, MCM-ceramic substrates, MCM-ceramic, glass, or metal substrates, and MCM-semiconductors substrates.
The high potential applications of MCM-41 materials as adsorbents [2 4], catalysts [5 7], membranes [8, 9], and drug delivery systems [10 18] have been possible by means of their functionalization with organic compounds.
This work describes the syntheses, characterisation and catalytic application of silicate MCM-41 materials modified with gold, vanadium and niobium by their introduction during the synthesis (co-precipitation) performed with the use of HCl or H2SO4 as pH adjustment agent.
Instead of discussing the detection applications of various MCM signals, in this section only the performance of the conjugate cyclostationarity detector between FBMC signal inserted by CS and noise signal is investigated.
The potential application of hybrid ZSM-5/Al-MCM-41 zeolitic-mesostructured materials as supports of metallocene polymerization catalysts has been investigated and compared with the behaviour of standard mesoporous Al-MCM-41 and microporous ZSM-5 samples.
This work describes application of IR spectroscopy to monitor MCM-56 formation by investigating solid products obtained at different times during hydrothermal synthesis with hexamethyleneimine as template.
This feature of MCM genes in proliferating cells has led to their potential clinical application as a marker for cancer screening [ 11].
Extending the application of these methods, we suggested a new MCM, based on the combination of wavelets with ARIMA models.
This study investigates the synthesis, characterization and the catalytic application of bimetallic Cu-Ni catalysts supported on pure MCM-41 and Ti incorporated MCM-41 porous materials for the valorization of a lignin model compound (i.e. guaiacol) into the transportation fuels via hydrodeoxygenation route (HDO).
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com