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1 ating dark and light "tiger tail" banding on polarized light microscopy.
2 ive gland was analyzed by a new method using polarized light microscopy.
3 n in collagen fiber orientation, measured by polarized light microscopy.
4 cation of collagen fibers, as confirmed with polarized light microscopy.
5 rils by transmission electron microscopy and polarized light microscopy.
6 tion, differential scanning calorimetry, and polarized light microscopy.
7 lesions on the cavity walls were measured by polarized light microscopy.
8 nm, by solid-state 31P NMR spectroscopy and polarized light microscopy.
9 d with picrosirius red staining imaged using polarized light microscopy.
10 ne, as indicated by altered birefringence on polarized light microscopy.
11 s a function of position was quantified with polarized-light microscopy.
12 canning electron microscopy and quantitative polarized-light microscopy.
13 characterized using histochemical staining, polarized light microscopy analysis, and transmission el
14 is found in crystalline form-identifiable by polarized light microscopy and confirmable by X-ray crys
17 y, photoconversion experiments, quantitative polarized light microscopy, and biophysical modeling.
18 , we use confocal elastography, quantitative polarized light microscopy, and Fourier-transform infrar
20 haracteristic defect in muscle structure: by polarized light microscopy birefringent needles are foun
21 ere assessed by visual appearance, rheology, polarized light microscopy, calorimetry, XRD, and FTIR.
22 an Seated at a Virginal by cross section and polarized light microscopy, chemical tests, surface micr
23 axes, were synthesized and characterized by polarized light microscopy, differential scanning calori
26 ed with standard cytochemical biomarkers and polarized light microscopy for microplastic tracking in
27 lenges, we describe here a strategy based on polarized light microscopy for the quick and accurate me
33 electronic transport in combination with the polarized light microscopy of structural domains in meso
34 lms and identifiable crystals on compensated polarized light microscopy of synovial fluid from arthro
35 study is to conduct a clinicopathologic and polarized light microscopy (PLM) analysis of 14 new I-RL
37 Differential scanning calorimetry (DSC), polarized light microscopy (PLM), small-angle X-ray scat
41 In bulk, synchrotron X-ray diffraction and polarized light microscopy show that these nanostructure
43 ed low- and wide-angle x-ray diffraction and polarized light microscopy to characterize the thermotro
48 etected by co-inspiration with India ink and polarized light microscopy, was highly dependent upon vo
50 lasma mass spectroscopy, gas chromatography, polarized light microscopy, X-ray crystallography and pr