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Mapping remodeling reversals with the aid of the scanning electron microscope.

The histologic research on craniofacial remodeling is briefly summarized. A new methodologic approach using the scanning electron microscope (SEM) and high-resolution replicas of craniofacial bone is evaluated. Two maxillae were chosen for illustrative purposes. The specimens were replicated and prepared for routine SEM examination. In addition, a grid was applied to the replicas so that the bone growth activity states could be mapped on a coordinate system. The topographic ("T") principle is introduced as a precedent for discriminating remodeling bone growth activity states with the SEM. These activity states in vivo specify characteristic microscopic surface topographies. The three distinctive surfaces are resorptive, depository, and resting, which are mapped on a coordinate system. Results obtained are similar to those of histologic studies. The primary advantage of the SEM/replica technique is that it does not damage the specimen. This feature will facilitate more extensive investigations of craniofacial remodeling. The time and financial investments for the SEM/replica technique are significantly less than the histologic technique in the investigation of similar material. The SEM/replica technique, however, cannot be used to study nonexternal surfaces and evidence of remodeling contained within the bone cortex.

Bone Resorption↗

Microcirculation of the rat small intestine as studied by the injection replica scanning electron microscope method.

Mucosal blood supply in the rat small intestine was studied by the injection replica scanning electron microscope method. The blood vascular plexus in the villus is originated at the tip of the villus and confluenced near the base of the villus. This supports the classical "fountain pattern" of MALL in the villous microcirculation. The capillary plexus in the crypt is derived at the base of the crypt and converged near the base of the crypt. The capillary plexuses in the villus and the crypt communicate with each other. It is considered that the basal segment of the villus, where the arterial termination is lacking, is supplied by the cryptal capillaries via this communication.

Animals↗

Scanning electron microscopic study of Warthin's tumor.

Three cases of Warthin's tumors were studied with a scanning electron microscope. The free surface of the epithelium was composed mainly of round or ovoid dome-like structures bearing microvilli and apocrine protrusions. Ciliated epithelial cells were detected in 2 of the tumors. The tumor epithelium encircled various amounts of cellular debris resembling degenerate lymphoid cells. A few tiny cystic spaces were also found. Within the lymphoid stroma, tightly packed lymphocytes, a meshwork of reticulum cells and medullary cord-like structures were observed. Our findings support the concept that Warthin's tumors develop from heterotopic salivary gland ducts within pre-existing lymph nodes.

Adenolymphoma↗

Computer networked scanning electron microscope for teaching, research, and industry applications.

A laboratory designed for teaching the operation of a scanning electron microscope (SEM) has been developed. The laboratory makes use of a computer network to allow remote operation of the SEM. Movable teaching stations, consisting of a computer, TV monitor, and joystick control, enable students to view the image on the SEM screen, move the sample, control the basic operating parameters of the microscope, and acquire X-ray spectra. Images can also be stored on the computers for image analysis or incorporation into reports. The great advantage of the system is that it has been designed to be flexible enough to allow operation from any location that has access to the Internet. The system is relatively inexpensive and uses nonproprietary computer technology available at any computer store. While the laboratory has been designed for teaching, the concept of a multiuser SEM facility that is inexpensive and easy to install should have applications in both industrial and research settings.

Computer Communication Networks↗

[Scanning electron microscopical observations on Pagumogonimus skrjabini metacercaria and juveniles].

The present paper reports on the results of scanning electron microscopical observations on seven excysted metacercariae and twelve juveniles of Pagumogonimus skrjabini. The former were from the naturally excysted metacercariae in fresh water in Ningquang District of Shaanxi Province and the latter were collected from the dogs and rats experimentally infected with metacercariae from the District mentioned above. Both excysted metacercariae and juveniles have tegumental ridges or folds on the surface of the body. The anterior two-thirds of the body surface are covered with many dome-shaped sensory papillae. There are rings of this kind of papillae on the rim of oral and ventral suckers. The papillae being obviously in decreasing number in the 30-40-day-old juveniles and adult worms. Except for the suckers and excretory pores, the whole body surface of the metacercariae and the juveniles are covered with posteriorly pointing tegumental spines which are relatively denser in the forebody than in the hindbody. Spines around the oral sucker are bayonet-shaped, and those on the rest part of the body surface are basically chisel-shaped. The authors considered it important that spines of P. skrjabini can be arranged singly or in groups.

Animals↗

Enhanced visualization of peripheral nerve and sensory receptors in the scanning electron microscope using cryofracture and osmium-thiocarbohydrazide-osmium impregnation.

Two methods of specimen preparation for the scanning electron microscope (SEM) have been combined for the reliable exposure and examination of nervous system tissue. When the specimen is postfixed with OSO4 prior to aqueous cryofracturing, large internal surfaces of nervous tissue are exposed, with minimal distortion to the cytoarchitecture. All tissue surfaces and interstices are subsequently impregnated with a conductive, metallic layer of osmium using a modified osmium-thiocarbohydrazide-osmium technique (OTOTO). This OTOTO technique permits SEM examination without any additional vacuum evaporated or ion-sputtered metallic layers, and has been found to eliminate specimen charging reliably. Nervous tissue has been examined in the secondary electron mode of the SEM with unrestricted use of beam currents varying from 1.3 to 60 microamperemeter, at accelerating voltages ranging from 2.5 to 80 kV, and at both low (10 X) and high (80 000 X) magnifications. In addition, a differential deposition of osmium in the tissue after the OTOTO technique has been identified using both transmission electron microscopy and energy dispersive X-ray microanalysis. The enhanced mass-density of myelin resulting from the amplification of osmium's natural affinity for unsaturated lipids was best demonstrated by the backscatter electron mode of the SEM. This mode of imaging was found useful in the identification of myelin sheaths.

Animals↗

[Scanning electron microscopic observations on Clonorchis sinensis cercariae].

The surface structure of Clonorchis sinensis cercariae was observed under scanning electron microscope. The cercaria was of the parapleuro-lophocercous type. The measurements of the cercariae were as follows: body 137-240 x 62-90 microns, tail 320-470 x 21-34 microns, oral sucker 27-46 x 23-33 microns. The ventral sucker was incompletely developed and much smaller than the oral one. The whole body surface was covered with backward pointing spines. Four horizontal rows of oral spines were found around the mouth opening of the oral sucker. These spines diminished in size with the distance of the rows from the opening and their numbers were 12, 18, 19 and 18 respectively. Transverse and longitudinal plicae formed from tegument were found on the surface of the tail, being in connection with dorsal and ventral fins along posterior half of the tail. Many sensory structures or papillae were observed on the body. They were of three different types: 1) papillae with long or short cilia distributed widely on the body surface and around the mouth opening, the number of papillae with cilia on the body surface being greater than that described by Komiya et al (1940); 2) a few sensory fossa on the tail, measuring 1.0 x 0.6 microns; 3) a few ring-type papillae with knob on the body surface with pore of 0.5 micron in diameter.

Animals↗

Scanning electron microscopic and clinical examination of composite resin inlays/onlays up to 12 months in situ.

In this limited clinical study, 30 posterior adhesive fine-particle hybrid composite resin inlays/onlays were placed. After 12 months in situ, 29 of the restorations were reexamined. The evaluation was carried out using clinical parameters and the scanning electron microscope. None of the restorations showed fractures, recurrent caries, or a clinically visible loss of substance. All restored teeth were vital. The radiopacity of the material was clinically sufficient. Only the color match, because of a suboptimal shade range, and the perfect removal of excess luting composite resin proved to be problematic. Furthermore, slight abrasion of the luting composite resin was observed, although the abrasion had no influence on the quality of the marginal adaptation. In the scanning electron microscope excellent marginal quality was observed initially (98.9% continuous margin) as well as after 12 months (94.9% continuous margin). The evaluated composite resin inlay/onlay system has proved to be reliable during 12 months in situ.

Adult↗

Changes in the functional structure of the tenosynovium in idiopathic carpal tunnel syndrome: a scanning electron microscope study.

BACKGROUND: The subsynovial connective tissue lies between the flexor tendons and visceral synovium in the carpal tunnel. Although tenosynovial fibrosis is nearly universally noted in patients with carpal tunnel syndrome, the relationship, if any, between the fibrosis and nerve abnormalities is unknown. The authors used light and scanning electron microscope imaging of the subsynovial connective tissue to gather information about its organization. METHODS: Human subsynovial connective tissue was studied to determine its ultrastructural morphology. Biopsy specimens of 11 patients (12 hands) with idiopathic carpal tunnel syndrome, 14 cadaver controls, and two cadavers with a history of carpal tunnel syndrome were obtained for scanning electron microscopic imaging and histopathologic examination. RESULTS: The visceral synovial layer is an uninterrupted membrane that defines the bursa dorsally. The subsynovial connective tissue consists of fibrous bundles that run parallel to the tendon, interconnected by smaller fibrous fibers. It connects to the synovial membrane and the flexor tendons. During tendon motion, the loose fibers between adjacent layers are stretched. The control tissue showed interconnections between all the parallel layers, whereas in patients with idiopathic carpal tunnel syndrome, these interconnections were absent, replaced with thicker parallel fibrous bundles. Similar changes were found in the cadaver carpal tunnel syndrome specimens. Pathologic changes in the patient and cadaver carpal tunnel syndrome specimens were most apparent close to the tendon and became progressively less severe in more superficial layers. CONCLUSIONS: The authors' observation that the most severe changes in the subsynovial connective tissue were found close to the tendon suggests that these changes may be the result of a shearing injury.

Adult↗

Specimen charging and detection of signal from non-conductors in a cathode lens-equipped scanning electron microscope.

This paper concerns the problems connected with the observation of a nonconductive specimen in a scanning electron microscope (SEM) when incident electrons create a surface charge and a corresponding electric field. The special configuration of the cathode lens enables one to control the landing energy of primary electrons via the specimen bias. In the cathode lens, the accelerating electric field at the surface of the specimen combines itself with that of the surface charge in influencing the trajectories of the signal electrons and hence the detected signal level and the possible recapturing of slow secondaries. Recaptured electrons reduce the ultimate positive surface potential, which arises when working below the higher critical energy of electron impact. Computer simulations of electron trajectories were performed for the typical cathode lens configuration and for a model specimen characterized by emission yields similar to those for glass. The simulations brought an extensive set of data about the trajectories of both secondary and backscattered electrons. Furthermore, the data were processed in order to assess the charge balance between the emitted and recaptured electrons as well as the collection efficiency of the detector. The results include values of the ultimate positive surface potential and the detected signal level, both in dependence on the initial energy of the electron impact and the size of the field of view. Finally, the method for the determination of critical energy is reevaluated. This is based on the measurement of the time dependence of the detected signal.

Journal Article↗

Nanotip electron gun for the scanning electron microscope.

Experimental nanotips have shown significant improvement in the resolution performance of a cold field emission scanning electron microscope (SEM). Nanotip electron sources are very sharp electron emitter tips used as a replacement for the conventional tungsten field emission (FE) electron sources. Nanotips offer higher brightness and smaller electron source size. An electron microscope equipped with a nanotip electron gun can provide images with higher spatial resolution and with better signal-to-noise ratio. This could present a considerable advantage over the current SEM electron gun technology if the tips are sufficiently long-lasting and stable for practical use. In this study, an older field-emission critical dimension (CD) SEM was used as an experimental test platform. Substitution of tungsten nanotips for the regular cathodes required modification of the electron gun circuitry and preparation of nanotips that properly fit the electron gun assembly. In addition, this work contains the results of the modeling and theoretical calculation of the electron gun performance for regular and nanotips, the preparation of the SEM including the design and assembly of a measuring system for essential instrument parameters, design and modification of the electron gun control electronics, development of a procedure for tip exchange, and tests of regular emitter, sharp emitter and nanotips. Nanotip fabrication and characterization procedures were also developed. Using a "sharp" tip as an intermediate to the nanotip clearly demonstrated an improvement in the performance of the test SEM. This and the results of the theoretical assessment gave support for the installation of the nanotips as the next step and pointed to potentially even better performance. Images taken with experimental nanotips showed a minimum two-fold improvement in resolution performance than the specification of the test SEM. The stability of the nanotip electron gun was excellent; the tip stayed useful for high-resolution imaging for several hours during many days of tests. The tip lifetime was found to be several months in light use. This paper summarizes the current state of the work and points to future possibilities that will open when electron guns can be designed to take full advantage of the nanotip electron emitters.

Journal Article↗

Scoring sperm morphology from fertile and infertile cigarette smokers using the scanning electron microscope and image analysis.

Image analysis was applied to photographs of sperm samples obtained using a scanning electron microscope. This technique is too time-consuming for routine use but could, if automated, provide an objective assessment of sperm morphology. In order to test the technique, sperm samples were evaluated from four groups of men: fertile and infertile smokers and fertile and infertile nonsmokers. There was a significant increase in the numbers of abnormalities in samples from infertile men. There was no association between the numbers of abnormal sperm and cigarette smoking.

Fertility↗

Methylmethacrylate implants: a scanning electron microscopic study.

Two methylmethacrylate orbital implants used for 34 and 5 years, respectively, were examined with a scanning electron microscope. One of the implants was a combination of a prosthesis and an implant containing a magnet. The magnetic force had decreased markedly, and rust crystals were apparent. The methylmethacrylate surface was irregular and rough.

Eye Diseases↗

Ultrastructural alterations of endothelium covering advanced atherosclerotic plaque in human carotid artery visualised by scanning electron microscope.

Human atherosclerotic plaque morphology at its various stages was extensively documented using light microscopy. However, much less is known of the ultrastructure of the human atherosclerotic plaque, in particular of ultrastructure of endothelial cells in atherosclerosis. Here, we analysed alterations of endothelial cells covering advanced atherosclerotic plaque in carotid artery using scanning electron microscope. Examination was performed on specimens from atherosclerotic lesions of the interior carotid artery, collected from 8 patients who had undergone endarterectomy. We found wide spectrum of pathological alterations of the luminal surface of atherosclerotic plaque. In dominant part of the vessel, endothelial layer was preserved but displayed pronounced irregularities in endothelial architecture including appearance of cuboidal cells. Some endothelial cells were covered by numerous microvilli and/or contained "craters" disrupting continuous surface of the endothelium. Platelets and leukocytes adhering to endothelium were frequently observed. There were also areas of the vessel lumen with endothelial denudation, in which the subendothelial surface containing fibrin proteins and collagen fibrils were visible. Interestingly, signs of proliferation of endothelial cells tending to cover the partially denuded vessel were observed. In summary, in scanning electron microscope, preserved endothelial cells of advanced atherosclerotic plaque displayed pronounced pathology; whether any of these changes represent the ultrastructural correlate of endothelial dysfunction remains to be established.

Aged↗

Surface features in human thyroid disorders. A scanning electron microscopic study of ninety five cases.

The surface features of nodular goitre, follicular adenomas, focal and Hashimoto type thyroiditis, Graves' disease, follicular carcinomas, papillary carcinomas, anaplastic carcinomas, medullary carcinomas and malignant lymphomas are presented in this scanning electron microscopic study of 95 cases. Scanning electron microscopy was found to be an excellent method for studying the surface topography of the diseased cells at high magnification and with a great depth of field. However, scanning electron microscopy does not seem to be a valuable tool for the diagnostic and prognostic routine evaluation of thyroid disorders.

Adenoma↗

Articular cartilage after meniscectomy. Rabbit knees studied with the scanning electron microscope.

Ten rabbits had a medial meniscectomy in both knees. The articular surface was studied with a scanning electron microscope 2, 4 or 12 weeks after the operation. Three sham operated and two unoperated rabbits served as controls. Progressive articular cartilage damage was observed on the weight-bearing areas of the medial condyles. The findings are compatible with clinical observations after meniscectomy; they confirm that meniscectomy is not a harmless operation.

Animals↗

Scanning electron microscopic appearance of chronic ulcerative colitis with and without dysplasia.

This study was conducted to determine whether scanning electron microscopy of colonic mucosal biopsy specimens can help to detect dysplasia in patients with chronic ulcerative colitis. In the first phase of the study, using light microscopy as the standard for the diagnosis, the scanning electron microscopic appearance of specimens from patients with chronic ulcerative colitis and control patients was examined. Descriptive criteria were established to identify normal, atrophic, and dysplastic colonic mucosa. In the second phase, quantitative techniques were used to develop more objective criteria for the diagnosis of dysplasia in ulcerative colitis. Twenty-one coded colonic specimens from 11 patients were sequentially examined by scanning electron microscopy and by light microscopy. The three morphometric analyses performed on the surface epithelial cells were number of cells per unit area, number of microvilli per unit area, and percentage of microvilli with a normal width. The cell count and percentage of microvilli with a normal width were significantly reduced in the seven specimens with colonic dysplasia as compared with non-dysplastic tissues. Scanning electron microscopy may serve as an adjunct to light microscopy in the diagnosis of colonic dysplasia.

Atrophy↗