PubMed Health⌕ Search

SEARCH · PubMed Health

Results for “scanning electron microscope”

Explore indexed PubMed citations for clinical trials, systematic reviews and public health research. Read source abstracts and follow each citation to its original PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 559 records · Page 31Linked to original sources

Scanning electron microscopic study of tretinoin (vitamin A acid) acne therapy.

Structural differences between untreated and tretinoin treated acne, uniquely evident with the scanning electron microscope, provide insight into the disease and its response to the drug. Early tretinoin therapy is characterized by the appearance of loosely adherent, parakeratotic cells which account for comedo expulsion and a disrupted skin surface. Persistence of the follicular and comedonal alterations account for the prophylactic value of long-term therapy. Meanwhile, the structure of the stratum corneum returns toward normal, with the clinical accommodation to the topical tretinoin.

Acne Vulgaris↗

Peritoneal fibrosis due to practolol. Scanning electron microscopical and histological observations.

Three cases of peritoneal fibrosis induced by the beta adrenoceptor blocking agent practolol are presented. Histological and scanning electron microscopical specimens showed a thick layer of loose connective tissue with collagen bundles and fibroblasts. No evidence of mesothelial cells with characteristic microvilli was found. The conclusion is drawn that the basic feature of practolol peritonitis is the destruction of the mesothelial membrane and a slowly progressive formation of loose connective tissue. The reason for the increased formation of connective tissue and the cause of the excessive activity of fibroblasts are discussed.

Aged↗

Clinical and scanning electron microscopic findings in a solitary case of Trichorhinophalangeal syndrome type I.

A solitary case of Trichorhinophalangeal syndrome type I is described. Scanning electron microscopic examination revealed alterations of the cuticular pattern and hair shaft structure. These alterations have not been previously described and differ from those seen in other syndromes belonging to the group of the ectodermal dysplasias e.g. the Trichoonytic Hidrotic ectodermal dysplasia, autosomal recessive Anhidrotic ectodermal dysplasia and X-linked Anhidrotic ectodermal dysplasia.

Adult↗

Glomerular endothelial injury related to renal perfusion. A scanning electron microscopic study.

To elucidate abnormalities in renal morphology related to perfusion preservation, we examined kidneys perfused for 60 hr with a scanning electron microscope. In addition to tubular necrosis and fused glomerular visceral epithelial foot processes, we identified changes in the glomerular endothelial and arterial endothelial surfaces. The glomerular endothelium revealed fenestrae that were smaller and more irregular than normal, as well as abnormal bulbous projections. The arterial endothelium displayed striking degenerative changes. These abnormalities may account for the altered glomerular function and intravascular coagulation that occur in some kidneys preserved by lengthy perfusion.

Adult↗

Growth of cultured human keratinocytes on fibrous dermal collagen: a scanning electron microscope study.

The attachment and growth of cultured human keratinocytes on glutaraldehyde-treated human dermal collagen was studied using the scanning electron microscope. At increasing time intervals after seeding the cells were observed to flatten and spread extensively, and to undergo changes in surface morphology from rough and filamentous to smooth. Confluent cell sheets could be formed over the surface of the collagen after a few days followed by multilayering to a columnar conformation as differentiation proceeded. Attachment of the cells to the collagen surface could be blocked by the presence of fibrin within the collagen matrix. This system may form the basis of a model for the study of the requirements for the attachment of keratinocytes to burn and other wounds.

Cells, Cultured↗

Stapes anomaly and cochlear sensory cell changes. A scanning electron microscope study.

This paper reports the pathological findings in the cochleae of a 66-year-old man examined under a scanning electron microscope (SEM). Columella-shaped stapes, which were the only anomalous changes in the middle ear cleft, were found in both ears. Beside this, giant hair formation and fusion of stereocilia in the inner sensory cells were also observed in the apical part of the lower basal turn. Since the patient had no history of ototoxic drug use or other ear disease episodes, it is suggested that these inner hair cell changes might have been caused by the conductive disorder accompanying the stapes anomaly. Giant hair formation was discussed from the inner ear findings of 14 other cases examined by a SEM.

Adult↗

Osteoarthrotic articular cartilage lesions of the femoral head observed in the scanning electron microscope.

A topographical study of the articular surface of 21 femoral heads removed for surgery of osteoarthrosis was made using the scanning electron microscope. Sections of degenerate cartilage were pretreated with H2O2 and trypsin to reveal the collagenous framework. Torn and frayed collagen bundles were evident on all the specimens studied, the length of these bundles varying from 20 to 150 micron. The frequency of the bundles over the degenerate fibrous areas varied considerably, and bundle sizes ranged from 20 to 70 micron. The topography of a single femoral head removed from a rheumatoid arthritic was very much smoother, with torn fibre ends ruptured at the same level. Although the exposed bone was considerably "smoother" than the residual fibrocartilage, ruptured osteons and trabeculae revealed large voids in the surface which would presumably alter the lubrication and fluid flow characteristics of the functioning joint. The effects of these changes on joint tension and lubrication are discussed.

Aged↗

Effect of acoustic overstimulation on the glycocalyx and the ciliary interconnections in the organ of Corti: high resolution scanning electron microscopic investigation.

Changes in ciliary interconnections in the organ of Corti are described after acoustic overstimulation using a special high resolution scanning electron microscope and tannic acid-osmium staining technique, giving an almost three dimensional view. Guinea pigs were exposed to a 3.85 kHz pure tone at an intensity of 120 dB for 22.5 minutes. The first detectable change was a disarrangement of the cilia with a loosening of the interconnections. The ciliary plasma membrane presented with an abnormally smooth appearance. The tip links connecting the tips of the stereocilia to their taller neighbours were also affected showing elongation or even disappearance. The fine granules which cover the tips of the tallest stereocilia of the outer hair cells were decreased. These findings suggest that acoustic overstimulation may affect the carbohydrate metabolism exceeding to degeneration of ciliary interconnections resulting in a disarrangement and detachment of cilia. The tip links, which may participate in sensory cell transduction, seem also to be affected by acoustic overstimulation.

Acoustic Stimulation↗

A comparative, scanning electron microscopic study of supragingival and subgingival calculus.

The morphology of supragingival and subgingival calculus on extracted teeth was studied with the scanning electron microscope. Oral, crevicular, and fracture surfaces were examined. Both subgingival and supragingival calculus had a heterogenous core covered by a soft, loose layer of microorganisms. On supragingival calculus this layer was dominated by filamentous microorganisms while subgingival calculus was covered by a mixture of cocci, rods and filaments. The supragingival covering of filaments was oriented with the filaments approximately perpendicular to and in direct contact with the underlying dense calculus. This arrangement was rarely seen subgingivally where there was no distinct pattern of orientation. Some of the specimens of sub- and supragingival calculus were treated with sodium-hypochlorite. These lost the soft covering, and channels the same size as the filamentous organisms were found penetrating into the calculus. They were oriented prependicular to the surface in supragingival calculus but had no specific direction in subgingival calculus. The appearance of the channels supports the concept that calcification starts between the microorganisms in both subgingival and supragingival calculus.

Dental Calculus↗

Scanning electron microscopic and morphometric analysis of the guinea pig uterine luminal surface: cyclic and ovarian steroid-induced modifications.

A morphometric and scanning electron microscopic analysis of endometrial, luminal topographical changes of cyclic and ovariectomized, ovarian steroid-treated guinea pigs was undertaken to determine the effects of cyclic endocrine influences on the uterine surface features recognized to be involved in the process of interstitial blastocyst implantation. Estrogenic stimulation of the uterine epithelial layer induced microvillus growth and closed the endometrial gland openings on the luminal surface. Progestins antagonized these parameters, as indicated by short, sparse microvillus formation over a flat luminal uterine surface on which gland openings were both numerous and prominent. The combined effects of estrogen and progesterone therapies induced luminal epithelial changes resembling those characterizing the cyclic uterine surface at the time of blastocyst implantation. These data indicate that the cyclic alterations in the uterine luminal surface are directly regulated by ovarian steroid hormones, and that these changes in surface structure are synchronized and directly involved in the preparation for blastocyst-uterine interaction during the nidatory process in this species.

Animals↗

Scanning electron microscopic (SEM) changes of the endometrium in women taking high doses of levonorgestrel as emergency postcoital contraception.

Endometrial surface changes by scanning electron microscope were studied in three women who intentionally took high doses of levonorgestrel as an emergency postcoital contraceptive. Based upon findings of a close link between endometrial receptivity and surface integrity, significant alterations of the uterine lining structure may represent a drug effect accomplishing endometrial contraception. High doses of levonorgestrel (4-6 times more than recommended) caused detectable changes on the surface regardless of the menstrual cycle phase when the medication was taken. Cycle classification was based on estradiol and progesterone hormone levels, which corresponded to the menstrual diary. Comparison to control specimens displayed marked restructuralization of the endometrium. As a main feature, the number of ciliated cells were reduced, and cilia disappeared in the proliferative and periovulatory phase. In the secretory phase, pinopodia disappeared and the endometrial integrity broke down. The contraceptive effect of levonorgestrel seems to be accomplished by alteration of the endometrial surface and, therefore, receptivity.

Adolescent↗

In vivo evaluation of nylon suture material by the scanning electron microscope.

Sixty common carotid arteries in rats were divided and anastomosed with four needles that differed in suture to needle diameter ratios. Scanning electron microscopic observations of the suture revealed endothelial bridges with associated fibrin, platelets and leukocytes arising from needle holes to adhere to the sutures within two hours of anastomosis. These earliest reported observations of suture endothelialization merit further investigation regarding the possibility of an arterial thrombosis occurring after suture.

Animals↗

The annular ligament attachment to the normal human stapes footplate. A scanning electron microscopic study.

Following disarticulation of the stapes from the oval window, the free edge of the adult human stapes was examined with the scanning electron microscope. Regions of the articulating surface of the rim were examined and found to vary considerably. Anterior, posterior, and lateral ligaments are described, each with tympanic, intermediate, and lateral components.

Adult↗

Three-dimensional observation of the rat endocrine pancreas by a scanning electron microscope.

A three-dimensional observation was performed on chemically digested rat pancreata and vascular corrosion casts of it with a scanning electron microscope. The Langerhans islets were sporadically situated in the exocrine tissue and were surrounded by the fibrous capsule, which was so tough that it could not be chemically digested easily. This capsule was considered to play different roles in the collection of the endocrine cells in a functional unit, in the prevention of secreted hormones spreading into the adjacent exocrine and stromal tissue, in the support of the microvascular structure, and in the protection for the islet cells from the pancreatic enzymes, which are leaking into the stromal spaces physiologically. The microvascular structure of the islet, disclosed by the corrosion vascular casts, showed afferent vessels branching into the capillaries at the periphery of the islet and entering the core of it by a twisted course. These findings were considered to be related to the islet cell distribution, that is, A and D cells are at the periphery of the islet and B cells at the center of it. This might support the existence of a hormonal regulating mechanism among endocrine cells. In addition, the efferent vessels from the islet that communicate to the vascular network of the exocrine tissue might suggest that the endocrine system also regulates the exocrine function in a circulatory dynamic state.

Animals↗

Three-dimensional scanning electron microscopic study of the normal hamster olfactory epithelium.

The olfactory epithelium of the adult hamster (Mesocricetus auratus) was studied using the scanning electron microscope. A method that produced fractures in the epithelium exposed structures below the surface and made it possible to examine the morphological and structural relationships among cells. Three cell types were studied: supporting cells, olfactory neurons (receptor cells) and basal cells. Supporting cells were observed spanning the full extent of the epithelium, and had basal foot processes that terminated at or near the basal lamina. Along the lateral margin of supporting cells, cellular processes were observed extending outwards, reaching olfactory neurons and adjacent supporting cells. These cellular contacts among supporting cells and olfactory neurons were present at different levels of the epithelium. Olfactory neurons were located primarily in the middle and lower epithelial regions. Their dendritic processes reached the epithelial surface in a straight or tortuous manner, passing between the supporting cells. Olfactory axons were observed as thin unbranched processes that emerged from a conical hillock region, passed basally, and fasciculated into larger sensory bundles within the lamina propria. Basal cells were observed adjacent to the basal lamina as a row of single cells or clustered in groups. Within the lamina propria connective tissue, blood vessels, axon bundles and Bowman's glands were examined. Bowman's glands were composed of pyramidal secretory cells arranged about a single duct that extended to the epithelial surface. Scanning electron microscopy provided a unique three-dimensional analysis of cell structure within the olfactory epithelium. The results provide new and different observations on the detailed morphology and intimate relationships that exist among epithelial cells, and complement previous light and transmission EM observations.

Animals↗

Scanning electron microscopic observations of extracted terminal hair follicles of the adult human scalp and eyebrow with special references to the bulge area.

Scanning electron microscopic studies of human terminal hair follicles of the scalp and eyebrow have previously been limited to the hair shaft. In this study we investigated EDTA-treated extracted whole hair follicles in which most of the basal cell surface of the outer root sheath was well preserved. In the bulge area of scalp follicles there were many knob-like or villous projections. These were located in some specimens on one side of the follicle, while in others they were located around the entire circumference of the follicle. These projections were thought to represent the anchoring points of the branched follicular end of the arrector muscles. Ring-like elevations with groove-like depressions above and below were also observed surrounding the entire follicle. These were thought to represent the track of circumfollicular arrector muscles which depressed the outer root sheath when they repeatedly contracted. Most anagen eyebrow follicles showed morphological variations in the bulge area such as lattice-window-like structures and undulation patterns. In telogen follicles, the bulge became indistinguishable from the clubbed end. The lower end of these telogen follicles showed irregularly shaped bulge areas, but did not show lattice-window-like structures or undulation patterns as observed in anagen follicles. Interestingly, a hole was found in some bulge areas of both anagen and telogen follicles. Serial vertical sections of follicles revealed invaginated areas, which seemed to correspond to the openings seen in whole mounts. In vertical sections of eyebrow follicles some keratinocytes of the outer root sheaths of the bulge area were seen to be melanized to various extents. This phenomen was independent of hair cycle phase.

Adult↗

A scanning electron microscopic study of the morphology and geometry of neural surfaces and structures associated with the vestibular apparatus of the pigeon.

The scanning electron microscope (SEM) was used to investigate the morphology of the neuroepithelial regions of the vestibular ampullary structures in 47 White King pigeons. The specific neural surfaces studied were (1) the cristae ampullares of the vertical and lateral membranous ampullae, (2) the hair cells lining the cristae, (3) the ampullary nerve fibers, and (4) the bipolar cells of the vestibular (Scarpa's) ganglion. Additionally, some observations of the gross anatomical structures of the bony labyrinth are given. Arguments are advanced which show that if the surface area of a given semicircular canal can be projected onto one of the three normal head planes, then that canal can be made to respond to motion in the appropriate plane, provided that the projected area is sufficiently large to achieve a threshold pressure as determined by a generalized form of Groen's equation ('57). With regard to the cristae ampullares, it is hypothesized that their surface areas can be described by means of a revolved catenary, i.e., a catenoid of revolution. (The catenary is found in nature as the approximate shape taken by a flexible cable when it is suspended at two points). The surface area of a catenoid provides a minimum surface of revolution. In the context of a crista, this implies that the given number of hair cells could not be fitted onto a smaller surface area. One advantage of this is that nature is able to utilize a thinner cupula than would be possible with other configurations and therefore an increased sensitivity to cupular motion can be realized. A second important factor is that all hair cells must revolve (by way of cupular motion) about the same centre of rotation in response to angular acceleration. Thus, all of the orthogonally-positioned hair cell tufts on the cristae surface may be stimulated simultaneously by way of a tangential shear. Other arguments show that the classical "swing door" type of cupular motion is not consistent with SEM and other recent observations. Two alternate modes of cupular motion are presented, each of which requires far less energy expenditure than does the "swing door" cupula. The suggestion is then made that, during normal head movements, the cupula behaves as a drum much like the tympanic membrane and that only for large, non-physiological motions does the "swinging door" mode of cupular motion take place. It must be remembered, however, that cupular motions during normal physiological head movements are infinitesimally small (Oman and Young, '72).

Animals↗

The surface of dog articular cartilage: a scanning electron microscope study.

The surface of dog articular cartilage attached to subchondral bone shows many humps on its surface when examined with the scanning electron microscope. The situation here contrasts with that in man and rabbit where large numbers of pits are seen of the surface. Such species variations cast doubts on the idea that pits and humps play a vital role in joint mechanics and lubrication. Ridges and undulations were not found in normal dog cartilage attached to bone, but complex systems of ridges did develop when the cartilage was cut or detached from bone.

Animals↗