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Scanning electron microscope autoradiography of critical point dried biological samples.

A technique has been developed for the localization of isotopes in the scanning electron microscope. Autoradiographic studies have been performed using a model system and a unicellular biflagellate alga. One requirement of this technique is that all manipulations be carried out on samples that are maintained in a liquid state. Observations of a source of radiation (125I-ferritin) show that the nuclear emulsion used to detect radiation is active under these conditions. Efficiency measurement performed using 125I-ferritin indicate that 125-I-SEM autoradiography is an efficient process that exhibits a 'dose dependent' response. Two types of labeling methods were used with cells, surface labeling with 125I and internal labeling with 3H. Silver grains appeared on labeled cells after autoradiography, removal of residual gelatin and critical point drying. The location of grains was examined on a flagellated green alga (Chlamydomonas reinhardi) capable of undergoing cell fusion. Fusion experiments using labeled and unlabeled cells indicate that 1. Labeling is specific for incorporated radioactivity; 2. Cell surface structure is preserved in SEM autoradiographs and 3. The technique appears to produce reliable autoradiographs. Thus scanning electron microscope autoradiography should provide a new and useful experimental approach.

Autoradiography↗

Scanning electron microscopic study of arterial cushions in rats: a novel application of the corrosion-replication technique.

The morphology and organ distribution of arterial cushions were studied in adult rats (body weight ranging from 200 to 500 gm) by scanning electron microscopic (SEM) observation of corrosion casts. Scanning electron microscopic observations of renal vascular casts were correlated with SEM views of the luminal surfaces of similarly fixed vessels; there was a striking similarity in shape, organ distribution, and dimensions between fixed arterial cushions and indentations at the surfaces of casts. Application of this technique to 11 different organs, some of which had never been studied by SEM before, revealed the occurrence of indentations at branching sites similar to those found in kidneys (and hence they were termed "cushions"). Our findings are in generally good agreement with previous light and transmission electron microscopic studies on rats. Our results support the view that arterial cushions are present throughout the vasculatures of the rat. A quantitative morphologic study of replicated branching sites related to "cushions" showed a great variability of the parent-to-daughter luminal diameter ratio (range 0.87-16.38) and of branching angles. A fruitful application of this technique to other laboratory animals may be anticipated.

Animals↗

Scanning electron microscopic observation of the epidermal basement membrane with osmium conductive metal coating.

Osmium conductive metal coating was performed for the scanning electron microscopic observation of the epidermal basement membrane. An extremely thin osmium coating induced the equivalent electrical conductivity as that of a thick platinum coating. As a result, by this coating, the resolution was only nominally reduced. The meshwork structure of the lamina densa and the three-dimensional morphology of the anchoring fibrils were observed in detail. Scanning electron microscopic observation of the osmium-coated specimen coincided with that of the transmission electron microscopic observations. It was evident that the osmium conductive metal coating is much more advantageous than the other coatings for obtaining high resolution images on the observations of the fine structures, such as the epidermal basement membrane.

Animals↗

Experimentally induced steroid cataract in the rat: a scanning electron microscopic study.

To clarify the histopathological changes of experimentally induced steroid cataract in Brown-Norway rat eyes, a scanning electron microscopic study was performed. The biomicroscopic appearance of the cataracts, which was quite similar to that of human eyes, was induced by daily application, either topically or systemically, of prednisolone acetate for 12 months. A single dose of 2 Gy X ray was given to the right eyes of all the animals 2 weeks before drug administration. Twenty-seven rats were divided into three groups: a control group (CTL), a group receiving topically administered prednisolone (TOP), and a group receiving systemically administered prednisolone (SYS). In vivo observation was performed through a slit-lamp microscope, and the lens findings were documented and objectively analyzed by an anterior eye segment analysis system over a period of 12 months. At the end of the 12-month period, X-ray-irradiated right eyes in the CTL group showed some minor lens changes on biomicroscopy, and non-X-ray-irradiated left eyes were almost normal. In the TOP and SYS groups, either with or without X-ray irradiation, lenses showed anterior and posterior subcapsular opacification; however, the grade and increase of lens opacification were higher and faster in the eyes with X-ray irradiation. Scanning electron microscopic findings of the three groups at the 12th month were as follows. In the CTL group, the X-ray-irradiated right eyes showed minor changes. In the TOP group, the X-ray-irradiated right eyes showed marked damage in the lens fibers of the anterior and posterior cortices, while the nonirradiated left eyes showed minor changes. In the SYS group, the X-ray-irradiated right eyes showed prominent cataractous disorganization of lens fibers in the shallow anterior and posterior cortices, and the non-X-ray-irradiated lenses were almost the same as those in the TOP group. These findings might suggest that even a minimum invasion of a low dose of X-ray irradiation plays a cocataractogenic or syncataractogenic role during the formation of steroid cataracts.

Administration, Topical↗

Skin replication procedure for the scanning electron microscope.

Ani improved method for preparing polyethylene replicas of skin from silicone rubber molds was developed for examination in the scanning electron microscope. Electro micrographs of the replicas compare favorably to those of fixed tissues from the same animal. Because of the great depth of field of the scanning electron microscope, both loosely attached epidermal cells and the background epidermal surface can be seen simultaneously in sharp focus, thus providing, a more complete picture of the topography of skin.

Animals↗

A scanning electron microscope (SEM) study of the smear layer in root canals.

A Scanning Electron Microscope was used to study the so-called "smear layer" produced in biomechanically prepared root canals. Fine, freshly-extracted incisors were used and the canals instrumented with K-type files and irrigated with 5% NaOCI and 3% H2O2. The structure of the "smear layer" produced was investigated.

Dentin↗

Scanning electron microscope observations of the canaliculi in the rat pineal gland.

The scanning electron microscope has shown rich ramifications of the parenchymal canaliculi forming a three-dimensional network of anastomosing intercellular spaces in the rat pineal gland. Every pineal cell seems to be in contact with this channel system. An abundance of cellular processes can be found within the canaliculi which may play an important role in the histophysiology of the pineal body.

Animals↗

Scanning electron microscopic studies on acute interstitial pneumonitis.

Scanning and transmission electron microscopic studies on two autopsy cases of acute interstitial pneumonitis caused probably by anticancer agents and intravenous hyperalimentation were reported. SEM revealed clearly the light microscopic findings of acute interstitial pneumonitis; hyaline membrane, Masson body, and glandular metamorphosis. Additionally an organization-process of Masson body and the relationship between Masson body and hyaline membrane were shown by SEM. TEM revealed three kinds of myelin-like lamellate structures in the alveolar exudates of both cases, and they were associated with the lamellar body of the B (type II) alveolar epithelium and the secretory granules of Clara-like cell. The myelin-like lamellate structures might suggest the degree of alveolar damage.

Acute Disease↗

Scanning electron microscopic morphometry of a discriminated population of elongated human spermatozoa.

A scanning electron microscopic study was carried out on long-headed sperm from normal human semen with the purpose of establishing morphometrical standards for this atypical variety which is difficult to differentiate from the normal type in the spermocytogram. Subjective discrimination between the two populations (with elongated and normal heads) was confirmed by multidimensional analyses. They also made statistical identification of thin-headed spermatozoa (an intermediate form between the two preceding types) possible. Moreover, through the analyses an elongation index for distinguishing the elongated type from light microscopic observations was able to be calculated. Statistical data showed that the acrosome accounted for 30% of the elongated head, the postacrosomal cap and the posterior nuclear space--both bounded by furrows--occupied 9% and 6% respectively, whereas the posterior part of the head, covered by a voluminous cytoplasmic sheath, took up 56%. This lengthening of the head was accompanied by an elongation of the middle piece which thus became the second most important discriminating factor between the two populations.

Humans↗

Scanning electron microscopic study of human eustachian tube epithelium: aging and pathologic changes.

Scanning electron microscopic study of human Eustachian tube epithelium showed that numerous secretory cells and compound cilia were observed mostly in children while with advancing age squamous or cuboidal cells were largely increased in contrast with decreasing number of ciliated and secretory cells. In the cases of otitis media with effusion, findings were characterized by the mucous hypersecretion and abnormal cilia. Thus, mucociliary function of the tubal epithelium may easily be impaired in children and elderly adults, and the accumulation of fluid may consequently be induced in the middle ear cavity.

Adolescent↗

Scanning electron microscopic observation of intimal surface of normal and atherosclerotic arteries.

A scanning electron microscopic study was made of the intimal surfaces of human normal and atherosclerotic thoracic aorta and rabbit normal thoracic aorta, and the thoracic aorta of rabbits with cholesterol atherosclerosis with consequential calciphylaxis. In normal human and rabbit arteries the intimal surface is smooth, the endothelial cells are clustered into regular mounds. In arteries affected by atherosclerosis at some sites the regular linear arrangement of endothelial cells disappears and the intimal surface is characterized by irregular protrusions of formations in the shape of scales or plates.

Adult↗

Application of the low-loss scanning electron microscope image to integrated circuit technology part II--chemically-mechanically planarized samples.

Chemical-mechanical planarization (CMP) is a process that gives a flat surface on a silicon wafer by removing material from above a chosen level. This flat surface must then be reviewed (typically using a laser) and inspected for scratches and other topographic defects. This inspection has been done using both the atomic force microscope (AFM) and the scanning electron microscope (SEM), each of which has its own advantages and disadvantages. In this study, the low-loss electron (LLE) method in the SEM was applied to CMP samples at close to a right angle to the beam. The LLEs show shallower topographic defects more clearly than it is possible with the secondary electron (SE) imaging method. These images were then calibrated and compared with those obtained using the AFM, showing the value of both methods. It is believed that the next step is to examine such samples at a right angle to the beam in the SEM using the magnetically filtered LLE imaging method.

Journal Article↗

The epidermis and sensory organs of Dugesia tigrina (Turbellaria: Tricladida). A scanning electron microscope study.

The epidermis of D. tigrina was examined using the scanning electron microscope. Both dorsal and ventral surfaces are extremely irregular in contour, as well as being permeated by large numbers of pores. Cilia are restricted to the ventral surface, the auricles and that part of the dorsum adjacent to the auricles. Club-shaped receptors, as well as cilia, were seen in the auricles. The epidermis anteriad to the eyespots is indistinguishable from that covering the remainder of the dorsal surface. Light rays could not enter the eyespot through this rough epidermal surface without becoming diffracted in an irregular fashion. It was therefore concluded that visual image perception is not a function of the planarian eyespot.

Animals↗

A scanning electron microscopic study on the pathogenesis of the posterolateral diaphragmatic hernia.

A scanning electron microscopic and light microscopic examination of a left posterolateral diaphragmatic hernia in a 14.7 day rat fetus gives new insight for the pathogenesis of this anomaly. Compared to control specimens of the same age, the pleuroperitoneal canal is larger and round rather than crescent-shaped. Evidence is presented which indicates that the caudal pole of the left lung protruded into the canal region during the 14th day, it appears that the lung interferes with the apposition and fusion of the dorsal and ventral pleuroperitoneal folds. The presence of the lung within the pleuroperitoneal canal prevents canal closure and results in the formation of a posterolateral diaphragmatic hernia.

Animals↗

Scanning electron microscopic observation of Bruch's membrane with the osmium tetroxide treatment.

Scanning electron microscopic observation of Bruch's membrane was performed after removal of retinal pigment epithelium (RPE) with the osmium tetroxide treatment. Eight human eyes from subjects at various ages (from newborn to 77 years old) were examined in order to investigate aging changes in Bruch's membrane. The collagen fibres of the inner collagenous zone in young eyes formed a tightly interwoven membrane, and the meshes were regular and fine. In old eyes the meshes were irregular and coarse, and deposits were observed. Deposits were embedded in the collagen fibres of the inner collagenous zone, or attached to the surface on the inner-collagenous-zone side of the basement membrane of RPE.

Adult↗

Scanning electron microscope observations on miracidium, cercaria, and cercarial papillar patterns of Schistosoma japonicum.

The surfaces of Schistosoma japonicum miracidia and cercariae were examined with the scanning electron microscope, and argentophilic papillae of S. japonicum cercariae, presumed to be sensory, with both the scanning electron microscope and the light microscope. Miracidia are covered with cilia, and the apical papilla is covered with cytoplasmic folds that form an anastomosing network. There is an excretory pore on the posterior one-third of the body. The tegument of S. japonicum cercariae is covered with spines that point in a posterior direction. The tail has a more irregular surface than the body, with fewer spines. The openings of the penetration gland ducts on a disclike area with netlike ridges at the anterior tip of the head organ are linearly arranged in 2 lateral crescents each containing 7 separate apertures. The basic number of the body papillae of S. japonicum (excluding those at the anterior end) is 56: 18 ventral, 4 acetabular, 18 dorsal, and 16 lateral (8 on each side). The number of papillae at the anterior tip is 14 (7 on each side). There are 9 papillae on the ventral side of the tail, and 10 on the dorsal and lateral sides.

Animals↗

Scanning electron microscopic study of polyvinyliden fluoride degradation by ocular tissue extracts.

A scanning electron microscopic study showed that the surface of the polyvinyliden fluoride thread, used to make loops for intraocular lenses in Japan, became significantly rough after treatment with bovine iris-ciliary body extracts. The polyvinyliden fluoride degrading factor in the extract was nondialyzable, heat-labile and active at an acidic pH, suggesting that a lysosomal system might be involved in this phenomenon. Bovine extracts from the retinal pigment epithelium and choroid degraded the surface of the polyvinyliden fluoride substantially, while extracts from the cornea, iris, ciliary body and neuroretina only moderately digested it. Lenticular extract did not affect the polyvinyliden fluoride surface. It is possible that the polyvinyliden fluoride loop undergoes degradation in the eye after a long time.

Animals↗