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Bull sperm head morphometry related to abnormal chromatin structure and fertility.

This study investigated the relationship between morphologically abnormal sperm, sperm chromatin structure, and fertility. Semen samples were obtained from 13 bulls. The sperm chromatin structure assay (SCSA), a sensitive measure of denaturability of sperm nuclear DNA in situ following acid treatment, was performed on each sample to quantitate abnormal chromatin structure. Feulgenstained sperm head morphology was measured by computerized image analysis (ONCOR-Image): Sixteen parameters were measured for each of 200 nuclei per sample. Fertility estimates were available for nine of the bulls. The SCSA variable SD alpha t was correlated with fertility ranking (r = 0.617, P < 0.01). No correlations were seen between means of the imaging variables and SCSA variables % COMP alpha t or SD alpha t. Significant correlations (P < 0.05) were seen between SD alpha t and the variation of imaging variables eccentricity, width, and light blobs. Significant correlations (P < 0.05) were seen between % COMP alpha t and the variation of imaging variables area, perimeter, p2a, bending energy, nmac, sphericity, eccentricity, length, and width. A regression model for fertility rankings incorporating the standard deviation of the imaging variables area, bending energy, nmac, eccentricity, condensity, light blobs, and dark blobs was highly significant (r2 = 0.999, P < 0.05). These results indicate that variation of morphometry measurements is likely a sensitive biomarker related to fertility potential and abnormal chromatin structure.

Animals↗

Nuclear morphometry as an intermediate endpoint biomarker in chemoprevention of cervical carcinoma using alpha-difluoromethylornithine.

The use of nuclear morphometry as an intermediate endpoint biomarker is described in a Phase I, dose-seeking trial of chemoprevention of cervical cancer, using the agent alpha-difluoromethylornithine (DFMO). Thirty patients with grade III cervical intraepithelial neoplasia (CIN III) were enrolled, and these received daily doses of DFMO at 0.06-1.0 mg/m(2) for a period of 1 month. Fifteen patients were observed to have a complete or partial regressive response to the agent, as assessed by histopathology. No significant differences in cell feature measurements were found between responders and nonresponders in specimens obtained before treatment, indicating that it may be difficult to predict response on the basis of these measurements. In specimens collected after treatment, large differences in morphometric features were observed between responders and nonresponders, indicating a differential effect of DFMO. Significantly modulated features were considered in terms of their correlations with CIN grade, which was determined from an independent set of measurements from archival tissue. Differences between features were consistent with a deletion of cells with high grade nuclei in the responders, and with the persistence of a more heterogeneous population of high grade cells in the nonresponders. Based on an independent set of measurements from archival material, a morphometric index of progression was derived, yielding a quantitative measure of the degree of nuclear atypia in these lesions. When applied to this trial, the morphometric index was seen to be specifically and consistently decreased in responsive lesions, and unchanged in nonresponders. The study indicates that morphometric features fulfill the requirements for an intermediate endpoint biomarker of cervical cancer chemoprevention.

Antineoplastic Agents↗

Morphometry of a peptidergic transmitter system: dynorphin B-like immunoreactivity in the rat hippocampal mossy fiber pathway before and after seizures.

While the morphometry of classical transmitter systems has been extensively studied, relatively little quantitative information is available on the subcellular distribution of peptidergic dense core vesicles (DCVs) within axonal arbors and terminals, and how distribution patterns change in response to neural activity. This study used correlated quantitative light and electron microscopic immunohistochemistry to examine dynorphin B-like immunoreactivity (dyn B-LI) in the rat hippocampal mossy fiber pathway before and after seizures. Forty-eight hours after seizures induced by two pentylenetetrazol injections, light microscopic dyn B-LI was decreased dorsally and increased ventrally. Ultrastructural examination indicated that, in the hilus of the dentate gyrus, these alterations resulted from changes that were almost entirely restricted to the profiles of the large mossy-like terminals formed by mossy fiber collaterals (which primarily contact spines), compared to the profiles of the smaller, less-convoluted terminals found on the same collaterals (which primarily contact aspiny dendritic shafts). Dorsally, mossy terminal profile labeled DCV (/DCV) density dropped substantially, while ventrally, both mossy terminal profile perimeter and /DCV density increased. In all terminal profile examined, /DCVs also were closely associated with the plasma membrane. Following seizures, there was a reorientation of /DCVs along the inner surface of mossy terminal profile membranes, in relation to the types of profiles adjacent to the membrane: in both the dorsal and ventral hilus, significantly fewer /DCVs were observed at sites apposed to dendrites, and significantly more were observed at sites apposed to spines. Thus, after seizures, changes specific to: (1) the dorsoventral level of the hippocampal formation, (2) the type of terminal, and (3) the type of profile in apposition to the portion of the terminal membrane examined were all observed. An explanation of these complex, interdependent alterations will probably require evoking multiple interrelated mechanisms, including selective prodynorphin synthesis, transport, and release.

Animals↗

Computerized interactive morphometry as a potentially useful tool for the classification of non-Hodgkin's lymphomas.

The use of a simple form of Computerized Interactive Morphometry (CIM) is proposed as a tool to achieve a reproducible classification of non-Hodgkin's lymphomas. This system combines a random sampling method for cells with simple size measurements and additional subjective criteria such as a shape, mitotic counts, and follicular or diffuse features. In this system, which utilizes a high resolution touch screen as interactive peripheral, the video image of the specimen is superimposed to a computer generated reference system which consists of a test area and four fixed points for random sampling of cells and a series of concentric circles to serve as internal standard for nuclear size; the computer tabulates and facilitates data processing. Forty-four lymphoid lesions have been characterized with the CIM system and specific criteria for diagnoses according to the Working Formulation of non-Hodgkin's lymphomas for clinical usage are derived. Studies of inter- and intraobserver variations in data collection are discussed, and a diagnostic algorithm that categorizes non-Hodgkin's lymphomas according to the relative proportions of various lymphoid cells and densities of mitotic counts is proposed. The potential applications of touch screen-based CIM for the study of malignant lymphomas and its practical technical advantages over other quantitative systems based on either gray-level analysis or tracings of cell contours on photographs or digitizer pads are emphasized.

Computers↗

The use of nuclear morphometry to predict response to therapy in Wilms' tumor.

Using nuclear morphometric analysis, a retrospective study was made of 27 patients with Wilms' tumor. The blinded group consisted of 17 patients with Stage I and II favorable-histology Wilms' tumors who did not respond to therapy and ten patients with Stage III and IV favorable-histology Wilms' tumors who did respond. In this complex group of patients, multivariate analysis (with several morphologic descriptors) was used to predict which patients responded to therapy. No single-shape descriptor predicted the response to therapy (P greater than 0.5). However, three shape descriptors: maximum ellipticity (ME), standard error of bending energy (SEBE), and the range of chain code-maximum peak (RCCM), with the multivariate formula of (1131 x SEBE) + (-7 x ME) + (50 x RCCM) + 7.18, separated the two groups (P less than 0.004). This result was statistically significant. Using this multivariate equation and a cutoff value of 0.6 units, this test yielded a sensitivity of 94% and a specificity of 70%. This result, in a complex group of patients, suggests that nuclear morphometry may be useful in the initial assessment of patients with Wilms' tumor and warrants further analysis.

Cell Nucleus↗

Absence of correlation between nuclear morphometry and survival in stage I non-small cell lung carcinoma.

To evaluate the utility of nuclear morphometry as a prognostic indicator in lung cancer, 5-year follow-up information was obtained in 46 cases of surgically resected Stage I non-small cell lung cancer (NSCLC). Nuclear area, perimeter, major diameter, minor diameter, and nuclear shape factor were determined from representative histologic sections of the tumors with a computer-assisted digitizing system. The morphometric parameters were compared between patients with favorable outcome (Group I: alive with no evidence of disease, n = 17) and those with poor outcome (Group II: dead of disease or with recurrence of disease, n = 29). No significant differences in any of the morphometric parameters were found between tumors in Groups I and II for individual tumor cell types or the combined cases. Failure to demonstrate a correlation between morphometric parameters and prognosis in Stage I NSCLC indicates that future efforts to determine objective prognostic factors should concentrate on other variables, such as specific genetic abnormalities.

Aged↗

Use of nuclear morphometry, gleason histologic scoring, clinical stage, and age to predict disease-free survival among patients with prostate cancer.

BACKGROUND: Currently, there are no accurate methods for predicting metastases or time to disease progression for patients with clinically localized prostate cancer after surgery. METHODS: In this report, histologic sections were studied from prostate cancer specimens from 100 men with clinically localized prostate cancer (clinical Stages A1 [9 cases], A2 [24 cases], B1 [27 cases], and B2 [40 cases]; pathologic Stages A1 [9 cases], A2 [22 cases], B [23 cases], C1 [8 cases], and D1 [38 cases]) to determine whether nuclear morphometry--when analyzed with clinical stage, pathologic parameters, and age in a multivariate fashion--would predict time to disease progression. RESULTS: These patients were treated with surgery alone for their clinically localized disease and were observed after surgery until disease progression or death. For each of the 100 specimens, 16 different mathematical descriptors described the shape of 150 nuclei. A series of 17 different statistical measurements were calculated to accurately describe the distribution, extremes, and variability within each descriptor. As univariate predictors, the variance of nuclear roundness, the mean of ellipticity, the Gleason score, age, and clinical stage were statistically significant predictors of disease progression when analyzed with Kaplan-Meier survival curves. A prognostic factor score calculated with multivariate analysis of clinical stage, Gleason score, age, and variance of nuclear roundness separated the patients into three statistically distinct groups and predicted time to progression by the Kaplan-Meier life table and Cox proportional hazards analysis. CONCLUSIONS: This prognostic factor score may aid in stratifying patients into high-risk and low-risk groups for testing adjuvant therapies for prostate cancer.

Adenocarcinoma↗

Alterations of hepatocellular peroxisomes in patients with cancer. Catalase cytochemistry and morphometry.

BACKGROUND: Hepatic catalase activity is decreased in patients with malignant diseases, but little is known about the organelles that contain the bulk of catalase: the peroxisomes. METHODS: The authors studied the hepatocellular peroxisomes in patients with malignant diseases by means of catalase cytochemistry, light and electron microscopic study, and morphometry. RESULTS: Under the light microscope, a decrease in catalase staining was observed in 21 of 39 patients with extrahepatic tumors. A peculiar perinuclear concentration of peroxisomes was seen by light microscopic study in 15 of 39 patients and reflected an increase in number in most patients. In one of two hepatoma livers, peroxisomes also showed this perinuclear configuration. Ultrastructural and morphometric analysis of 20 livers of patients with extrahepatic tumors revealed a decreased mean peroxisomal diameter and an increase in number. Electron microscopic study also showed peroxisomes with transparent matrical spots, cytoplasmic invaginations, protrusions, and gastruloid cisternae. In each liver, at least one of these changes was observed. In hepatoma livers, one-third of the peroxisomes revealed empty matrical spots. In one patient, peroxisomes were smaller but more numerous. CONCLUSIONS: Alterations of the peroxisomal compartment are constant findings in the livers of patients with malignant diseases, but individual differences in peroxisomal alterations are frequent.

Adolescent↗

Morphometry and cytochemistry of Leydig cells in experimental diabetes.

Leydig cell ultrastructure and function in diabetic rats were studied by concurrent cytochemistry, morphometry, and testosterone assay. The streptozotocin (Stz) model was modified to include nondiabetic Stz-injected rats, an insulin-treated diabetic group, and semistarved animals in addition to controls and untreated diabetic rats. The separation of the effects of diabetes, Stz, semistarvation, and insulin treatments was achieved by application of orthogonal contrast statistics. After 3 months of treatments, testes were perfusion-fixed, incubated for delta 5,3 beta-hydroxysteroid dehydrogenase (HSD) activity, and processed for electron microscopy. Diabetes increased Leydig cell smooth endoplasmic reticulum (SER), increased mitochondrial and lipid content, decreased HSD staining, and decreased serum testosterone levels. Insulin treatment reduced SER and increased testosterone concentrations. Semistarvation also increased SER and reduced testosterone levels but did not alter HSD staining. Stz had no significant effect on these variables. The results suggested that the hypoandrogen state was due to a primary Leydig cell compromise and not solely to malnutrition and that it was correctable by insulin treatment.

Animals↗

Pulmonary acinus: geometry and morphometry of the peripheral airway system in rat and rabbit.

The geometry and morphometry of intraacinar airways in rat and rabbit lungs were studied from silicone rubber casts. Acini, defined as the complex of alveolated airways distal to the "terminal" bronchiole, were trimmed off the bronchial tree. In both species, the acinar volume followed a log-normal distribution over a range in size of one order of magnitude. At an inflation level of 60% total lung capacity, their mean volume was 1.86 mm3 in the rat and 3.46 mm3 in the rabbit. On a representative sample of acini of different volumes, the branching pattern was characterized as irregular dichotomy, and the segment length and inner and outer diameters were measured. The average acinus had a mean of six generations in the rat and seven in the rabbit. Both showed a decrease in segment length and inner diameter with each generation. The mean longitudinal pathway length--that is, the distance from the initial acinar segment to the terminal sacs--was found to depend on the cube root of the acinar volume in both species. It was calculated at 1.46 and 1.95 mm for rat and rabbit, respectively.

Animals↗

Venous valve anatomy and morphometry: studies on the duckling using vascular corrosion casting.

The anatomy and morphometry of venous values associated with the vasculature of the head of the duckling were studied using vascular corrosion casting and scanning electron microscopy. All valves encountered were bicuspid, and casts typically exhibited slight expansions at valve sinuses and deep slits at the sites of valve leaflets. The locations, numbers, and orientations of endothelial nuclei on all surfaces of the valves were clearly revealed by imprints in the casting resin. Endothelial cell densities were significantly higher on the surfaces of valve leaflets (about 10 cells/1,000 micron2) than on other venous surfaces (about 7 cells/1,000 micron2). Endothelial nuclei on the medial surface of the valve leaflet were oriented parallel to the long axis of the vessel, whereas those on the lateral surface were oriented perpendicular to that axis. The close proximities of valves in some vessels and the presence of anomalies such as the sharing of leaflets by adjacent valves were readily demonstrated with the corrosion-casting techniques. These methods provide a useful means for studying the fine, three-dimensional details of venous valve anatomy.

Animals↗

Cellular stages in cartilage formation as revealed by morphometry, radioautography and type II collagen immunostaining of the mandibular condyle from weanling rats.

The role played by cell addition, cell enlargement, and matrix deposition in the endochondral growth of the condyle was assessed in weanling rats by four approaches making use of the light microscope: morphometry, 3H-thymidine radioautography, 3H-proline radioautography, and immunostaining for the cartilage-specific type II collagen. From the articular surface down, the condyle may be divided into five layers made up of cells embedded in a matrix: 1) the articular layer composed of static cells in a matrix rich in fibers presumed to be of type I collagen, 2) the polymorphic cell layer including the progenitor cells from which arise the cells undergoing endochondral changes, 3) the flattened cell layer in which cells produce a precartilagenous matrix devoid of type II collagen while undergoing differentiation in two stages: a "chondroblast" stage and a short "flattened chondrocyte" stage when intracellular type II collagen elaboration begins, 4) the upper hypertrophic cell layer, in which cells are "typical chondrocytes" that enlarge at a rapid rate, actively produce type II collagen, and deposit it into a cartilagenous matrix, and 5) the lower hypertrophic cell layer, composed of chondrocytes at a stage of terminal enlargement while the cartilagenous matrix is adapting for mineralization. 3H-thymidine radioautographic results indicate that the turnover time of progenitor cells in the polymorphic cell layer is about 2.9 days. The time spent by cells at each stage of development is estimated to be 1.4 days as chondroblasts, 0.5 days as flattened chondrocytes, 2.3 days as the chondrocytes of the upper hypertrophic cell layer, and 1.1 days as those of the lower hypertrophic cell layer. Calculations referring to a 1 x 1-mm square-sided column extending from the articular surface to the zone of vascular invasion provide the daily rate of cell addition (0.0077 mm3), extracellular matrix deposition (0.0127 mm3), and cell enlargement (0.0302 mm3). Hence the respective contribution of the three factors to condyle growth is in a ratio of about 1:1.6:4. This result emphasizes the role played by cell enlargement in the overall growth of the condyle.

Animals↗

Comparative morphometry of the upper bronchial tree in six mammalian species.

The length, diameter, and angle of branching of all airways through the sixth level of branching below the trachea were measured on corrosion casts prepared from the lungs of two animals whose bronchial geometry has not previously been studied, namely the donkey and the rabbit. These measurements and morphometric data for the rat, hamster, dog, and human obtained from other sources were analyzed and compared. The case prepared from human lungs exhibited an airway geometry that was clearly distinct from that shown by the nonhuman species. The human upper bronchial tree was the most symmetrical with respect to airway diameter and angle of branching. In all species studied, airway length was the most irregular parameter. The reasons for differences in branching geometry are not clearly understood. However, when attempting to determine whether a particular species may be used as a model for man in inhalation toxicology, and in the subsequent interpretation of animal data, an appreciation of differences in airway morphometry is essential.

Animals↗

Computer-assisted morphometry using video-mixed microscopic images and computer graphics.

A microcomputer system has been developed for collection and analysis of morphometric data from video images of histological sections. Microscopic fields of view are visualized on a video monitor and are overlaid with computer-generated graphics by means of a video mixer. Planimetric data are entered by drawing on a digitizing tablet while observing the drawn image superimposed on the tissue. Programs are available to calculate various geometric parameters, count objects in a field, perform descriptive statistics, and measure volume and surface area of a solid from a series of cross sections. A program for point-counting stereology presents single points for scoring within a user-defined reference area. The potential applications of interactive graphics in morphometry are discussed.

Cell Nucleus↗

Morphometry of the human pulmonary acinus.

The geometry and morphometry of intraacinar airways in human lungs were studied on silicone rubber casts from two adult lungs. We defined acini as the complex of alveolated airways distal to the terminal bronchioles--that is, beginning with the first-order respiratory or transitional bronchiole. The morphological properties of pulmonary acini are described. The acinar volume averages 187 mm3 (SD +/- 79 mm3). Intraacinar airways branch dichotomously over about 9 generations (range 6-12). The internal airway diameter falls from 500 micron to 270 micron between acinar generations 0 and 10, whereas the outer diameter (including the sleeve of alveoli) remains constant at 700 micron. Towards the periphery the size of alveoli increases and clusters of alveoli become more numerous. The longitudinal path length of acinar airways (defined as the distance along the ducts from the transitional bronchiole to the alveolar sacs) averages 8.8 mm (+/- 1.4 mm). The morphometric data collected in this study are used to construct an idealized model of human acinar airways that can be related to existing models of the human bronchial tree.

Adult↗

In vivo morphometry and functional morphology of brown adipose tissue by magnetic resonance imaging.

Brown adipose tissue (BAT) is the main effector of nonshivering thermogenesis and diet-induced thermogenesis in mammals. Assessment of the magnitude and perturbations of BAT deposits in the intact, living body would be of much relevance for quantitative studies of BAT functions, but such studies have been impossible to date. In this paper it is shown that magnetic resonance imaging (MRI) morphometry can provide the means for accurate, repeated determinations of the volume of BAT deposits in a living animal; moreover, tissue modifications due to acclimation at different ambient temperatures are revealed in vivo by MRI, which correlates with histology and ultrastructure. Furthermore, MRI differentiates areas of BAT responsive to acute adrenergic stimulation, thereby giving information on the thermogenetically active tissue in the intact animal. Therefore, MRI represents a reliable tool for correlative morphological and functional studies of BAT in the living animal.

Adipose Tissue, Brown↗

A comparative study by morphometry of the microvasculature in normal and rheumatoid synovium.

Vascularity is said to be increased (subjectively) in rheumatoid arthritis, yet synovial fluid is hypoxic and acidotic. Morphometry by image analysis was used to quantify vascularity in normal and rheumatoid synovium from the knee joint. Capillaries were distributed more deeply in the rheumatoid synovium (93.3 microns, compared with 32.5 microns in normal synovium) and were significantly less densely arranged (80.2/mm2 rheumatoid, 241.5/mm2 normal). The blood volume fraction fell from 2.9% in normal knee synovium to 1.2% in rheumatoid synovium. These results imply that there is impairment of O2 transfer, which contributes to the intraarticular hypoxia, in rheumatoid arthritis.

Adult↗

Additional renal veins: incidence and morphometry.

Modern surgical and radiological techniques dictate a reappraisal and definition of the renal venous anatomy. The purpose of this study was to investigate the incidence and morphometry of additional renal veins. One hundred fifty-three morphologically normal en bloc renal specimens were randomly selected from post-mortem examinations. Single additional renal veins were common on the right side (26%), while it was rare on the left side (2.6%). Second additional renal veins occurred infrequently on the right side (5%). Since additional renal veins may be encountered more than occasionally, it is worthwhile emphasizing their presence particularly to the transplant surgeon and the angiologist.

Cadaver↗