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RCM is a promising noninvasive technology for the evaluation of ACD.
Over the last two decades, ultrasound has developed into a useful technology for the evaluation of diseases of nerve and muscle.
A serological analysis was carried out using Biosystems™ ELISA kit for the assessment of the anti-Saccharomyces cerevisiae antibodies and immunofluorimetry via Luminex® technology for the evaluation of cytokine levels (TNFα, IFNγ, IL-6 and IL-17).
In this study, using Ground Penetrating Radar (GPR) technology for the evaluation of the quality of land consolidation engineering and the Autoregressive Moving-Average (Autoregressive Moving-Averageon for the dARMAanalysis, the characteristics of the distribution of sandy loam with varying values of compowerespectrumiffestimationture contents have been researched and analyzed.
OCT represents a promising new technology for the evaluation of articular cartilage in vivo.
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A fundamental understanding of chemical, biological, radiological and nuclear (CBRN) threats is presented in order to provide a basis for the design of modern protective technologies and for the evaluation of the equipment on a material and full-ensemble scale.
In clinical diagnostics, both array comparative genomic hybridization (array CGH) and single nucleotide polymorphism (SNP) genotyping have proven to be powerful genomic technologies utilized for the evaluation of developmental delay, multiple congenital anomalies, and neuropsychiatric disorders.
Currently, there are several technologies available for the evaluation of the microcirculation [ 6], which can be classified into two main groups: (a) firstly, direct methods, which allow the visualization of the microvascular bed (such as videomicroscopy); and (b) secondly, indirect methods based on measures of tissue oxygenation, as surrogates of microcirculatory perfusion.
Based on the finite element analysis (FEA) method, the mechanical event simulation (MES) technology is applied for the evaluation of the HAB component structural strength.
In addition, we demonstrated the on-time analysis of the binding properties of GAG-binding proteins using 'Sugar Chip' immobilized CS disaccharide structures by surface plasmon resonance (SPR) imaging, indicating that our chip technology is effective for the evaluation of binding properties.
To this end, we utilized two-dimensional gel electrophoresis (2-D), a widely used technology that allows for the evaluation of many proteins.
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