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Interference reflection microscopy. A quantitative theory for image interpretation and its application to cell-substratum separation measurement.

We propose a quantitative theory of microscope interferometry where the specimen is illuminated by a cone of monochromatic light of solid angle 0 - 100 degree, corresponding to an illuminating numerical aperture of 0 to approximately 1.2. Computed results compare favorably with photometric measurements of fringe irradiance for a water wedge 0 - 2,000-nm thick. The interpretation of cell-substratum interference images is discussed in relation to the theory. We conclude that in assessing cell-glass separation, the cytoplasmic thickness does in general contribute significantly to the final image, but this contribution is minimized at high illuminating apertures. In these circumstances, however, normal incidence theory is inapplicable and the theory for finite illuminating aperture is essential. Neglect of this fact can lead to errors of up to 100% in estimated cell-glass separation.

DNA↗

Binding of myosin subfragment 1 to glycerinated insect flight muscle in the rigor state.

The binding of rabbit muscle myosin subfragment 1 (S1) to glycerinated insect flight muscle fibers has been studied by low-angle x-ray diffraction, quantitative sodium dodecyl sulfate gel electrophoresis, quantitative interference microscopy, and electron microscopy. Changes induced in the rigor x-ray diffraction pattern are consistent with the idea that vacant myosin-binding sites on thin filaments are filled by exogenous S1. Electron microscopy indicates that S1 permeates and labels fibers and fibrils completely. Electron micrographs also show that cross-bridges are not displaced by exogenous S1 under the conditions used, and this is supported by the unchanged mechanical stiffness of the S1-labeled fibers. The amount of bound S1, as measured by gel electrophoresis and interference microscopy, together with the magnitude of the intensity changes in the x-ray diffraction pattern, is consistent with a thick filament structure that contains four molecules of endogenous myosin per 14.5 nm of its length, but does not agree well with earlier estimates of six myosins per crown. Lack of information on possible inhibition of S1-binding by factors other than the presence of cross-bridges, e.g., troponin, render uncertain calculations of the number of attached cross-bridges in the rigor state. However, it appears that at least 75% of the endogenous myosin heads are attached. Occupancy of binding sites on thin filaments after incubation with S1 is high, probably greater than 85%, so that x-ray scattering from those parts of the structure that adhere to the symmetry of the thin filaments can be treated as diffraction from S1-decorated thin filaments. In addition, we show in thin flared X cross sections that exo-S1 heads bind to actin with the geometry described in decorated actin by Taylor, K.A., and L.A. Amos.

Actins↗

Nucleolar hypertrophy as an indicator of transcription in cells infected with second generation meronts of Eimeria tenella.

Changes in nuclei and nucleoli of cells of chicken cecum infected with Eimeria tenella were studied in living cells by interference microscopy and in fixed and stained tissues using light level microscopy. As soon as merozoites began to transform into second generation meronts, there was an increase in the size of both the nucleus and the nucleolus of the host cell. The dry weight of the nucleus increased somewhat, but there was a greater increase and a correlation of the dry mass of the nucleolus with the size of the parasite as measured by interference microscopy. In fixed and stained tissues, there was a correlation between the area of the nucleolus and the area of the parasite. Removal of nucleic acids with DNase and/or RNase showed high concentrations of both in the nucleoli and a residue of protein. The increased nucleolar size indicates a high level of transcription in infected cells and allows the conclusion that the parasite somehow induces transcription to occur. Since transcription is a highly specific process, the high degree of host and site specificity shown by nearly all coccidia is consistent with a hypothesis that the coccidia share a portion of the host genome.

Animals↗

Lysis of blood platelets by human osteosarcoma cells in vitro.

The in vitro interactions between human osteosarcoma (HOS) cells and platelets were studied in real time using video-enhanced microscopy. Interference reflection techniques showed that platelets were lysed within minutes after contacting HOS cells that had been treated with interferon-gamma. Untreated HOS cells lysed platelets less efficiently. Platelet lysis depended on platelet-tumor cell contact and on extracellular Ca2+. A number of possible mechanisms were excluded. Lysis of platelets in proximity to tumor cells can provide these with growth factors and thereby contribute to the metastasis-enhancing effect of platelets.

Blood Platelets↗

Phase Separation and Dewetting of Weakly Incompatible Polymer Blend Films.

The phase separation and dewetting of thin films of blends of deuterated polystyrene (dPS) and poly(p-methylstyrene) (PpMS) were investigated during annealing. The surface morphology, obtained from atomic force microscopy and phase measurement interference microscopy, the density profile, determined by X-ray reflectivity in the region of total external reflection, and the surface composition obtained from static secondary ion mass spectroscopy, are reported. This system is only weakly incompatible. The interaction of the components with substrate and air during phase separation leads to a bilayer formation with a broad polymer-polymer interface. PpMS segregates to the air interface. The bilayer structure is unstable and defines the starting point for the dewetting of PpMS on top of the dPS layer. In the final dewetting state a homogeneous layer of dPS on top of the substrate is covered with an ultrathin layer of PpMS as well as with quite thick mesoscopic drops of PpMS.

Journal Article↗

The change in properties of the stratum corneum as a function of depth.

The constancy of stratum corneum thickness suggests an ordered decrease in intracorneal cohesion binding forces. In this study, intracorneal cohesion was measured in the vertical dimension by cohesography and the number of cells released after applying a standardized stimulus was determined before and after repeated stripping of the same sites with adhesive tape. In addition, surface replicas and the corneocytes from different levels were examined by scanning and transmission electron microscopy and differential phase interference microscopy. The results indicate a gradual loss of cohesion within the stratum corneum towards the surface and that anatomical changes take place in the corneocytes as they progress towards the surface.

Adult↗

Remapping disparate images for coincidence.

With the development of complex multimode computerized microscope systems, it is possible and necessary to obtain images of the same area of the microscopical preparation by several methods of microscopy, such as differential interference contrast, reflection interference microscopy, several wavelengths of fluorescence microscopy, laser scanning and confocal modes. Thus, varied information may be obtained about a single field, in the form of a set of images, taken at different ports of the microscope, using different digitizing cameras, each appropriate to certain tasks. For comparative purposes, the images should be superimposable, pixel by pixel, but in general they are not--they differ in image shape and size, magnification, distortion, centration and orientation. This paper shows how the problem may be approached, using an extension of the remapping procedures described in a previous paper, in which images of a separate grid reference slide are used to detect, quantify and correct the image errors. Affine remapping, without the use of grid images, is also described.

Cells, Cultured↗