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Histological analysis, quantitative needle EMG and CT scan analysis demonstrated muscle improvement after MNC injection, which was not present in the control muscles of the sound arm or in the non-injected injured muscles of the affected arm.
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Thin layer scanning analysis demonstrated that the whole amount of the expressed protein was approximately 13% of the soluble protein in the supernatant.
In comparison with wild type, the calculated binding free energy and computational alanine scanning analysis demonstrated the importance of the residues of scFv anti-p17 in the binding pocket which are TRP50, ASN52, GLU57, MET100, LEU185, and LYS188 with the relative decomposed energy below −2.00 kcal/mol.
Confocal laser scanning microscopic analysis demonstrated that a portion of the liposome-coupled antigens were taken up and processed beyond the MHC class II compartment.
Confocal laser scanning microscopic analysis demonstrated that antigens coupled to the surface of unsaturated-fatty-acid-based liposomes received processing at both MHC class I and class II compartments, while most of the antigens coupled to the surface of saturated-fatty-acid-based liposomes received processing at the class II compartment.
Gel electrophoresis followed by scanning densitometry analysis demonstrated that prothrombinase assembled with factor VaIIa4A cleaves prothrombin with a rate that is approximately 3.8-fold slower than the rate of cleavage of prothrombin assembled with factor VaIIaWt or factor VaIIaPLASMA.
Scanning electron microscope analysis demonstrated that the surface roughness and growth rate of the coatings increase with the decrease of the Ar/C2H2 ratio.
Scanning electron microscope analysis demonstrated that the unique design of PPy/GH-PSS morphology is not only to control micro/nanostructure of PPy wrapped GH, but also to develop the nanostructure morphology of PPy matrix.
Atomic force and scanning electron microscopic analysis demonstrated that the particles were almost spherical in shape (100 ± 20 nm).
These results run parallel to the results of CT scan analysis, which demonstrated a decrease of 48% in MMD.
In addition, scanning electron microscopy (SEM) analysis demonstrated that the sliding wear scars of the FS and HVOF-sprayed Nano coatings were smooth, without significant irreversible deformation or formation of ridges.
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