Computerized interactive morphometry.
Explore the source record for details and available documents.
SEARCH · PubMed Health
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.
Explore the source record for details and available documents.
The purpose of this study was to quantitatively analyze normal and preeclamptic uteroplacental vasculature. Myometrial arteries from eight placental bed biopsies from uncomplicated term deliveries and 12 from proteinuric preeclampsia were characterized as uteroplacental, spiral, or basal arteries. Basal lumens within 0.2 mm radius and spiral/uteroplacental lumens within 0.4 mm radius were considered as the same artery. The biopsy area, lumen density, and arterial density (after correction for multiple lumens), lumen area, lumen perimeter, mean wall thickness, inflated diameter, and a slant factor, measuring the obliqueness of arterial transection, and ratios of lumen characteristics to mean wall thickness were analyzed. In preeclamptic cases, there were more basal lumens/mm2 and basal arteries/mm2 (P=.003, P=.03), and more spiral lumens/mm2 and spiral arteries/mm2 (P = .01, P = .03). Basal lumen area (P = .0003) and wall thickness (P = .007), and basal and spiral artery lumen perimeters and inflated diameters (for each, P = .0001, P = .048, respectively) and inflated diameter/wall ratios (P = .04, P = .05) were reduced compared with normal cases. Preeclamptic spiral and basal arteries are more tortuous or densely distributed than normal placental bed arteries, with smaller-caliber lumens and thicker walls. Failure of proper placentation may result in abnormal spatial anatomy in the placental bed. Alternatively, an anatomic variant of spiral and basal arteries may be more susceptible to hemodynamic stresses and endothelial damage and may predispose to preeclampsia.
Explore the source record for details and available documents.
Explore the source record for details and available documents.
Explore the source record for details and available documents.
The concept of the hypothalamus as a distinct neurological entity concerned with a variety of regulatory processes dates back to the end of the 19th century. Before 1900 there were only vague intimations of the function of the brain surrounding the third ventricle and these were based primarily on various pathological and assorted clinical observations. Since then a large body of evidence has been derived implicating that the hypothalamus contains the control systems which are critically involved in many physiological, endocrine and behavioral processes. Among these are feeding and drinking, reproduction and the regulation of the sleep-wake cycle and temperature. Although the human hypothalamus accounts for only 4 cm3, or 0.3% of the adult brain volume, it contains the integrative systems critical for all these processes. A comparative morphometric analysis of the hypothalamus among mammals revealed that the volume of this part of the brain is highly correlated with brain size, irrespective of the ecological strategy or evolutionary history of the species considered. It appears that the human hypothalamus has just the size we may expect of such a large-brained mammal, but it is considerably larger than would be predicted from its body size. In mammals the preoptic region of the hypothalamus is implicated in the neural control of endocrine functions and in the temporal organization of a wide spectrum of biological rhythms. In recent years, the pivotal role of two hypothalamic cell groups have been considered in this context: the sexually dimorphic nucleus (SDN-POA) as part of the neural circuitry underlying masculine sexual behavior and reproductive functions and the suprachiasmatic nucleus (SCN) as the principal component of the central clock mechanism. Consistent with its role in the temporal organization of circadian processes, investigations in rodents and non-human primates suggest that the SCN is also involved in the seasonal control of reproductive and metabolic phenomena. Since the environmental light-dark cycle is the main Zeitgeber for circadian and seasonal rhythms in most species, including man, photic information could have substantial effects, not only on the neural activity of the biological clock, but also on its underlying structure. Our observations on the human SCN in relation to photoperiod indeed revealed a marked seasonal variation in the morphology of the human SCN. The volume of the SCN was, on average, twice as large in the autumn as in the summer and contained more than twice as many vasopressin immunoreactive neurons.(ABSTRACT TRUNCATED AT 400 WORDS)
OBJECTIVES: To compare the prognostic value of stereologically estimated volume-weighted mean nuclear volume (MNV) with other nuclear morphometric parameters using pretreatment needle-biopsy specimens of prostate cancer. METHODS: The MNV, mean nuclear area, form factor, and coefficients of variation for nuclear area (VNA) and form factor were measured on pretreatment needle biopsy specimens from 66 patients with prostate cancer (clinical Stage B, n = 9; Stage C, n = 14; and Stage D, n = 43), all of whom underwent androgen deprivation therapy. The prognostic value of those morphometric parameters, as well as Gleason score and clinical stage, was examined in terms of cause-specific patient survival using univariate and multivariate analysis (Cox proportional hazard model). RESULTS: Univariate analysis of the nuclear morphometric parameters revealed that MNV, mean nuclear area, VNA, coefficient of variation for form factor, and clinical stage were significant prognostic factors for cause-specific patient survival. However, when the patients with Stage D disease were selectively analyzed for survival, only the VNA was a significant prognostic parameter. Furthermore, the multivariate analysis, including the morphometric parameters, clinical stage, and Gleason score revealed that only VNA and clinical stage were independent variables. CONCLUSIONS: The present comparative study could not demonstrate any prognostic superiority of MNV over other nuclear morphometric parameters in patients with prostate cancer.
This study was designed to characterize conceptus development based on pre- and postnatal measurements of in vivo- and in vitro-derived bovine pregnancies. In vivo-produced embryos were obtained after superovulation, whereas in vitro-produced embryos were derived from established procedures for bovine IVM, IVF and IVC. Blastocysts were transferred to recipients to obtain pregnancies of single (in vivo/singleton or in vitro/singleton groups) or twin fetuses (in vitro/twins group). Ultrasonographic examinations were performed weekly, from Day 30 of gestation through term. Videotaped images were digitized, and still-frames were used for the measurement of conceptus traits. Calves and fetal membranes (FM) were examined and measured upon delivery. In vitro-produced fetuses were smaller than in vivo controls (P < 0.05) during early pregnancy (Day 37 to Day 58), but in vitro/singletons presented significantly higher weights at birth than in vivo/control and in vitro/twin calves (P < 0.05). From late first trimester of pregnancy (Day 72 to Day 93), placentomes surrounding in vitro-derived singleton fetuses were longer and thinner than controls (P < 0.05). At term, the presence of giant cotyledons in the fetal membranes in the in vitro group was associated with a larger cotyledonary surface area in the fetal horn (P < 0.05). The biphasic growth pattern seen in in vitro-produced pregnancies was characterized by conceptus growth retardation during early pregnancy, followed by changes in the development of the placental tissue. Resulting high birth weights may be a consequence of aberrant placental development due to the disruption of the placental restraint on fetal growth toward the end of pregnancy.
The degree of trophoblastic attachment, modification of the uterine lining epithelium during implantation, possible differences in size of the conceptus, and preferential zones of nidation were evaluated. Eight ewes at 14 (n=3), 17 (n=2), 20 (n=1), and 24 (n=2) d of gestation were used, and 6 to 8 equidistant samples of either uterine o uterine plus embryonic membranes tissues were taken from each uterine horn for histomorphometric analysis. Trophoblastic attachment varied from 1.5 to 100% at 14 and 24 d of gestation, respectively. Modification of the uterine lining epithelium ranged from 0% at 14 d to 90% at 24 d. The conceptuses occupied a variable area of the uterine cavity; 15.1% at 14 d, 100% at 17 d, 70.6% at 20 d and 100% at 24 d of gestation. All the embryos were located caudal to the center of the uterine horn. Attachment of the trophoblast and modification of the uterine lining epithelium occurred in the area surrounding the embryos. Implantation was a gradual and long-lasting process which commenced near the embryo and extended peripherally. Morphological variations need to be considered when evaluating embryonic viability.
Combining the traditional morphologic evaluation of spermatozoa with computer assisted image analysis adds randomness, objectivity, repeatability and accuracy to morphometric measurements. We collected semen from 10 fertile, normospermic dogs aged 1 to 7 yr and from 3 teratozoospermic breed-matched dogs. Sperm head morphology was examined in Giemsa-stained smears by light microscopy, using a computer-assisted image analyzer and by transmission electron microscopy. We found significant variation in sperm head area, length, width and degree of roundness among normospermic individual dogs, indicating that it would be necessary to examine many more dogs before the size and shape of normal dog spermatozoa could be determined. The normospermic dogs were used as controls for the teratozoospermic cases. Case 1: A 2-yr-old subfertile Cavalier King Charles Spaniel had semen with small and narrow-based sperm heads and a proximal cytoplasmic droplet in most of the spermatozoa. With the image analysis system, sperm heads were shown to be smaller and more oval than in normospermic dogs. The variatons in size and shape were similar in magnitude to those of control dogs. An examined infertile half-brother had similar semen quality. Case 2: A 3-yr-old Petit Basset Griffon Vendeen with 2 unsuccesfull matings exhibited spermatozoa with severe abnormalities. Measured by image analyzer, sperm heads were irregular in shape and very small in area. One of the two littermates examined had semen of the same quality as the case dog. Case 3: A 3-yr-old fertile Golden Retriever had semen with giant sperm heads in about 50% of spermatozoa. Image analyzing results revealed 2 populations of different sized sperm heads. Giant heads consisted of 52.2% of all spermatozoa. The results of the study reported here suggest that the image analysis technique may be useful in evaluating structural changes in sperm morphology, supplementing visual assessment that is used in conventional methods.
Explore the source record for details and available documents.
Explore the source record for details and available documents.
The syncytiotrophoblast microvillous membrane of the human placenta has been investigated with quantitative analyses in a group of placentae from diabetic mothers, these placentae being compared to a group of normal placentae. This study has shown that, in the placentae of the diabetic mothers, there was a significant increase in the surface density of the microvilli and in the microvillous surface enlargement factor as compared to those of the controls. Consequently, it has demonstrated that the already large villous surface area found in the placentae of diabetic mothers can be enlarged very significantly by the microvilli, in terms of the total trophoblastic surface area which is in contact with the maternal blood. On a functional basis, these findings support the theory that placental function is probably not adversely affected in these placentae, and that these placentae can efficiently support the growth of large fetuses.
PURPOSE: To compare disc measurements obtained by indirect ophthalmoscopy, the Heidelberg Retina Tomograph (HRT), stereoscopic slide viewing (SSV) of color transparencies, and the Topcon ImageNet System (ImageNet). DESIGN: Population-based cross-sectional study. METHODS: From the Rotterdam Study, 324 subjects (567 eyes) were nonselectively included. All underwent a full ophthalmologic examination in mydriasis. Vertical cup/disc ratios (VCDRs) were compared between all four methods and disc area (mm(2)), neural rim area (mm(2)), cup area (mm(2)), and cup volume (mm(3)) between HRT and ImageNet. RESULTS: Mean VCDR for ophthalmoscopy was 0.25 (standard error [SE], 0.007), for HRT 0.42 (SE, 0.008), for SSV 0.39 (SE, 0.010), and for ImageNet 0.50 (SE, 0.006). The correlation for VCDR between ophthalmoscopy, the two devices, and SSV was 0.42, respectively 0.57; between ImageNet and HRT 0.75. The 97.5th percentiles of the VCDR for ophthalmoscopy, HRT, SSV, and ImageNet were 0.80, 0.73, 0.80, and 0.73, respectively; the 99.5th percentiles thus were 0.90, 0.79, 0.86, and 0.79. The mean disc area, rim area, cup area, and cup volume were 2.08, 1.63, 0.45 mm(2) and 0.09 mm(3) for HRT, and 2.39, 1.77, 0.61 mm(2) and 0.16 mm(3) for ImageNet, respectively. The corresponding correlations for these four parameters were 0.67, 0.42, 0.81, and 0.82. CONCLUSIONS: Different techniques lead to considerable differences in disc morphometric values. ImageNet produced higher mean values compared with HRT and ophthalmoscopy. Ophthalmoscopy showed the lowest correlations and SSV the highest ones with the two semiautomated devices. Between ImageNet and HRT the correlation for all parameters was high except for the neural rim area.
Photographs of the bulbar conjunctiva of 56 diabetic and 59 nondiabetic control patients were analyzed by newly developed morphometric techniques. When compared to controls diabetic patients showed: (1) decreased vascularity in the capillary bed but an increased vascularity of the venules with a volume shift in the distribution of blood into the venules; (2) an increased capillary pressure but comparable flow and, therefore, increased capillary resistance; (3) an increase in the range of background density suggesting either focal thickening of the interstitial tissue or variable amounts of fluid within the tissue; (4) a decrease in the percentage of the area occupied by microvessels; and (5) an increase in diffusion distance to all vessels.
A method for the automatic segmentation, recognition and measurement of neuronal myelinated fibers in nerve histological sections is presented. In this method, the fiber parameters i.e. perimeter, area, position of the fiber and myelin sheath thickness are automatically computed. Obliquity of the sections may be taken into account. First, the image is thresholded to provide a coarse classification between myelin and non-myelin pixels. Next, the resulting binary image is further simplified using connected morphological operators. By applying semantic rules to the zonal graph axon candidates are identified. Those are either isolated or still connected. Then, separation of connected fibers is performed by evaluating myelin sheath thickness around each candidate area with an Euclidean distance transformation. Finally, properties of each detected fiber are computed and false positives are removed. The accuracy of the method is assessed by evaluating missed detection, false positive ratio and comparing the results to the manual procedure with sampling. In the evaluated nerve surface, a 0.9% of false positives was found, along with 6.36% of missed detections. The resulting histograms show strong correlation with those obtained by manual measure. The noise introduced by this method is significantly lower than the intrinsic sampling variability. This automatic method constitutes an original tool for morphometrical analysis.
Consistent amounts of lipofuscin and of ceroid pigment associated with vitamin E deficiency are reported to represent morphological correlates of aging and increased oxidative stress. A reliable quantification of these yellow autofluorescent deposits is of critical biological significance, thus we carried out a computer-assisted morphometric study on the accumulation of lipofuscin in physiological aging and of ceroid pigment in vitamin E deficiency, respectively. The total area and the size distribution of lipofuscin or ceroid pigment deposits were measured in CA3 hippocampal pyramidal neurons of 6-, 12-, 18- and 25-month-old rats, as well as in vitamin E deficient animals of 18 months of age. An increase in the mean total area of lipofuscin and ceroid pigment was found in aging and in vitamin E deficiency. In both conditions, the proportion of large discrete deposits also increased. The similarity of changes observed in old and adult vitamin E deficient animals suggests that the underlying processes initiated by the absence of alpha-tocopherol from the diet of adult rats and in physiological aging may share some common mechanisms.
Previous post-mortem studies (Aboitiz, F., Scheibel, A.B., Fisher, R.S., Zaidel, E., 1992. Brain Res. 598, 154-161 and Aboitiz, F., Scheibel, A.B., Zaidel, E., 1992. Brain 115, 1521-1541) have shown an inverse association between asymmetry in perisylvian areas and the size of a specific segment, the isthmus, of the corpus callosum (CC) in males. The purpose of this work was to study in vivo the association between hemispheric asymmetry and the total size of the CC in 35 right-handed subjects (16 males, 19 females; mean age 24.9 +/- 3.9). An MRI scan was performed for each subject. The area of the right (RH) and left (LH) hemispheres were measured from images in the sagittal plane and the area of the CC from images in the mid-sagittal plane. The index of hemispheric asymmetry was absolute value((LH - RH)/[(LH + RH)/2]). There was a negative correlation between the absolute value of hemispheric asymmetry and the size of the CC in males (r = -0.55, P = 0.03) but not in females (r = -0.20, P = 0.42). These findings, like those of Aboitiz et al. (Aboitiz, F., Scheibel, A.B., Zaidel, E., 1992. Brain 115, 1521-1541), suggest a sex-dependent decrease in interhemispheric connectivity with increasing hemispheric asymmetry.