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A widespread distinct pattern of cerebral atrophy in patients with alcohol addiction revealed by voxel-based morphometry.

BACKGROUND: Patients with alcohol addiction show a number of transient or persistent neurological and psychiatric deficits. The complexity of these brain alterations suggests that several brain areas are involved, although the definition of the brain alteration patterns is not yet accomplished. AIM: To determine brain atrophy patterns in patients with alcohol dependence. METHODS: Voxel-based morphometry (VBM) of grey matter (GM) and white matter (WM) was performed in 22 patients with alcohol dependence and in 22 healthy controls matched for age and sex. RESULTS: In patients with alcohol dependence, VBM of GM revealed a significant decrease in density (p<0.001) in the precentral gyrus, middle frontal gyrus, insular cortex, dorsal hippocampus, anterior thalamus and cerebellum compared with controls. Reduced density of WM was found in the periventricular area, pons and cerebellar pedunculi in patients with alcohol addiction. CONCLUSIONS: Our findings provide evidence that alcohol addiction is associated with altered density of GM and WM of specific brain regions. This supports the assumption that alcohol dependence is associated with both local GM dysfunction and altered brain connectivity. Also, VBM is an effective tool for in vivo investigation of cerebral atrophy in patients with alcohol addiction.

Adult↗

Adult onset scapuloperoneal myopathy: diagnostic value of nerve morphometry and multiple muscle biopsies.

In the scapuloperoneal syndrome, differentiation between neurogenic and myopathic processes may be difficult despite electromyography and muscle biopsy. Extensive analysis, including morphometry, was conducted on multiple nerve and muscle biopsies from two adult onset, sporadic cases with the syndrome. These studies confirm a myopathic process and further define the entity of adult onset scapuloperoneal myopathy.

Biopsy↗

Voxel based morphometry of grey matter abnormalities in patients with medically intractable temporal lobe epilepsy: effects of side of seizure onset and epilepsy duration.

OBJECTIVES: To investigate the use of whole brain voxel based morphometry (VBM) and stereological analysis to study brain morphology in patients with medically intractable temporal lobe epilepsy; and to determine the relation between side, duration, and age of onset of temporal lobe epilepsy, history of childhood febrile convulsions, and grey matter structure. METHODS: Three dimensional magnetic resonance images were obtained from 58 patients with left sided seizure onset (LSSO) and 58 patients with right sided seizure onset (RSSO), defined using EEG and foramen ovale recordings in the course of presurgical evaluation for temporal lobectomy. Fifty eight normal controls formed a comparison group. VBM was used to characterise whole brain grey matter concentration, while the Cavalieri method of modern design stereology in conjunction with point counting was used to estimate hippocampal and amygdala volume. Age and sex were used as confounding covariates in analyses. RESULTS: LSSO and RSSO patients showed significant reductions in volume (using stereology) and grey matter concentration (using VBM) of the hippocampus, but not of the amygdala, in the presumed epileptogenic zone when compared with controls, but hippocampal (and amygdala) volume and grey matter concentration were not related to duration or age of onset of epilepsy. LSSO and RSSO patients with a history of childhood febrile convulsions had reduced hippocampal volumes in the presumed epileptogenic zone compared with patients without such a history. Left amygdala volume was also reduced in LSSO patients with a history of childhood convulsions. VBM results indicated bilateral thalamic, prefrontal, and cerebellar GMC reduction in patients, which correlated with duration and age of onset of epilepsy. CONCLUSIONS: Hippocampal sclerosis is not necessarily the consequence of recurrent temporal lobe seizures. A major cause of hippocampal sclerosis appears to be an early aberrant neurological insult, such as childhood febrile seizures. Secondary brain abnormalities exist in regions outside the presumed epileptogenic zone and may result from recurrent seizures.

Adolescent↗

Pulmonary emphysema: objective quantification at multi-detector row CT--comparison with macroscopic and microscopic morphometry.

PURPOSE: To prospectively compare pulmonary function tests and helical computed tomographic (CT) indexes for quantifying pulmonary emphysema with macroscopic and microscopic morphometry. MATERIALS AND METHODS: The investigation was approved by the local ethics committee, and written informed consent was obtained from patients. Multi-detector row CT of the thorax was performed with simultaneous acquisition of four 1-mm sections in 80 patients (57 men, 23 women; age range, 38-79 years) referred for surgical resection of lung cancer. From the raw data, 1.25-mm-thick sections were reconstructed at 10-mm intervals. Relative areas of lung with attenuation coefficients lower than nine thresholds and eight percentiles of the distribution of attenuation coefficients were calculated. Relative areas and percentiles were compared with areas found macroscopically to have emphysema and with two microscopic indexes assessed on resected specimens. Pulmonary function tests were measured 24-48 hours before surgery. Spearman correlation coefficients were calculated between each set of CT data obtained with the nine tested thresholds and eight percentiles with macroscopic and microscopic measurements. RESULTS: For relative lung areas, the strongest correlation with macroscopy was observed with a threshold of -970 HU (r = 0.543, P < .001) and that with microscopy was observed at -960 and -970 HU, depending on the index considered (r = 0.592, P < .001 and r = -0.546, P < .001, respectively). For percentiles, 1st percentile showed the strongest correlation with both macroscopy (r = -0.463, P < .001) and microscopy (r = -0.573, P < .001; and r = 0.523, P < .001 for each microscopic measurement). Forced expiratory volume in 1 second and vital capacity ratio, diffusing capacity of lung for carbon monoxide, and each of the three CT indexes were complementary to predict microscopic indexes. CONCLUSION: Relative lung areas with attenuation coefficients lower than -960 or -970 HU and 1st percentile are valid indexes to quantify pulmonary emphysema on multi-detector row CT scans.

Adult↗

Elastase-induced pulmonary emphysema in rats: comparison of computed density and microscopic morphometry.

PURPOSE: To prospectively compare computed tomographic (CT) quantification of pulmonary emphysema in elastase-treated rats with morphometry and to evaluate the information yielded by CT quantification and pulmonary function tests. MATERIALS AND METHODS: This study was approved by the local committee on care and use of animals in research. Thirty-six animals were used. Emphysema was produced by means of one or two tracheal injections of 300 IU of elastase, 8 weeks apart, in seven and 12 rats, respectively. As a control group, 10 rats received an injection of normal saline. The dynamic resistance, dynamic compliance, and static compliance were measured. CT was performed with 1-mm section thickness and 3-mm intervals. Relative areas of lung with attenuation coefficients lower than nine chosen thresholds (from -900 to -980 HU) and eight percentiles (from 1st to 18th percentiles) of the distribution of attenuation coefficients were compared with measurements of alveoli size--that is, mean interwall distance (MIWD) and mean perimeter per field (MP). Correlations between data obtained with thresholds and percentiles and MIWD and MP were investigated by means of Spearman coefficients (r(s)). Values of pulmonary function tests, most appropriate relative area threshold, and percentile were investigated by means of stepwise multiple regressions. RESULTS: For thresholds, relative surface area with attenuation coefficients less than -940 HU (RA(940)) showed the strongest correlations with findings at microscopy (r(s) = 0.676, P < .001 for MIWD; r(s) = -0.720, P < .001 for MP). For percentiles, the 3rd percentile showed the strongest correlations (r(s) = -0.647, P < .001 for MIWD; r(s) = 0.701, P < .001 for MP). Dynamic compliance and RA(940) or 3rd percentile were complementary for predicting microscopic measurements. CONCLUSION: In rats, RA(940) and the 3rd percentile reflect the extent of elastase-induced pulmonary emphysema and are complementary to dynamic compliance to predict microscopic extent.

Animals↗

Morphometry and strain distribution of the C57BL/6 mouse aorta.

The goal of the present study was to obtain a systematic set of data along the length of the mouse aorta to study variations of morphometry (diameter, wall thickness, and curvature), strain, and stress of the mouse aorta. Five mice were imaged with a 13-MHz ultrasound probe to determine the in vivo diameter along the aorta. A cast was made of these aortas to validate the ultrasonic diameter measurements. The root mean squared and systematic errors for these measurements were 12.6% and 6.4% of the mean ultrasound diameter, respectively. The longitudinal variations of geometry, stress, and strain from the aortic valve to the common iliac bifurcation were documented. Our results show that the residual circumferential strain leads to a uniformity of transmural strain of the aorta in the loaded state along the entire length of the aorta. Furthermore, we validated the incompressibility condition along the length of the aorta. These data of normal mice will serve as a reference state for the study of disease in future knockout models.

Animals↗

Microvascular morphometry and perfusion in renal hypertension-induced cardiac hypertrophy.

This study examined alterations in microvascular morphometry and perfusion occurring concomitantly with changes in coronary blood flow (CBF), flow reserves, and coronary vascular resistance (CVR) in myocardial hypertrophy. New Zealand White rabbits (n = 28) with one-kidney, one-clip hypertension (1K,1C) or uninephrectomy (control) were examined 4 wk after surgery in anesthetized open-chest preparations. Animals were divided into two experimental series. In the first series, flows were determined with radioactive microspheres during rest and adenosine-induced vasodilation. In a second series, fluorescein isothiocyanate dextran (FITC-dextran) was injected to visualize the perfused arteriolar and capillary beds. The total vasculature was marked with an alkaline phosphatase stain. Mean arterial pressure was elevated in 1K,1C animals (110 +/- 7 mmHg, means +/- SE) when compared with controls (77 + 4 mmHg), and the myocardial weight was greater. Resting CBF was higher in 1K,1C animals compared with controls (227 +/- 21 vs. 168 +/- 12 ml.min-1.100 g-1), and the flow reserve was reduced. Minimal CVR was higher in 1K,1C compared with controls (0.190 +/- 0.035 vs. 0.091 +/- 0.018 mmHg.ml-1.min.100 g). The number of capillaries per squared millimeter was not different from control (2,448 + 121 vs. 2,216 +/- 132/mm2) and the percent perfused was similar (56 +/- 2 vs. 61 +/- 3%). The arteriolar density in cardiac hypertrophy was lower (1.2 +/- 0.2 vs. 2.1 +/- 0.3/mm2), and the percent perfused was higher (86 +/- 5 vs. 63 + 6%) compared with controls. Thus, in myocardial hypertrophy, the anatomical density and volume fraction of arterioles appears to be reduced, and the percentage of arterioles perfused increased.(ABSTRACT TRUNCATED AT 250 WORDS)

Alkaline Phosphatase↗

Muscle capillary-to-fiber perimeter ratio: morphometry.

It is known that a substantial amount of capillary tortuosity is found in shortened muscles. However, the increased capillary length and surface area contributed by tortuosity and branching are seldom taken into account when capillarity is estimated and/or blood-tissue exchange is modeled in muscles. In this paper, we sought morphometric estimates of capillarity in transverse sections that incorporated data on capillary geometry. We derived equations to estimate capillary perimeter per fiber perimeter (i.e., capillary-to-fiber perimeter ratio) in transverse sections. We show how capillary-to-fiber perimeter ratio is related to capillary surface per fiber surface, i.e., to the amount of capillary surface available for exchange per muscle fiber surface area, and how it can be obtained by morphometry. Because capillary tortuosity and fiber perimeter are both a function of sarcomere length, the degree of extension or shortening of muscle samples obviously needs to be taken into account when capillary-to-fiber perimeter ratio is compared between muscles and/or samples. Using data currently available on capillary length and diameter with fiber shortening and extension, we show that it is a feature of capillary-to-fiber perimeter ratio to change relatively little with sarcomere length. As sarcomere length decreases from 2.80 to 1.58 microns in perfusion-fixed hindlimb muscles of rats, capillary and fiber perimeters in transverse sections increase substantially, whereas the ratio between the two variables, capillary-to-fiber perimeter ratio, changes only less than or equal to 10-15%.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Morphometry of pig coronary arterial trees.

To establish a mathematical model of the tree like arteries for the purpose of hemodynamic analysis, a complete set of morphometric data of pig coronary arteries is presented. For the purpose of mathematical modeling, three innovations in morphometry are introduced: 1) a rule for assigning the order numbers of the vessels on the basis of diameter ranges, 2) a connectivity matrix to describe asymmetric branching, and 3) a measurement of the fraction of vessel segments connected in series. The morphometric measurements were made with the silicone elastomer-casting method. Data on smaller vessels were obtained from histological specimens by optical sectioning. Data on larger vessels were obtained from vascular casts. The order number, diameter, length, connectivity matrix, and fractions of the vessels of a given order connected in series were measured for all orders of vessels of the right coronary artery and the left anterior descending and left circumflex branches. The data can be used to analyze the longitudinal distribution of blood pressure and volume and spatial distribution of perfusion in myocardium.

Animals↗

Variability in preterm lamb lung mechanics after intra-amniotic endotoxin is associated with changes in surfactant pool size and morphometry.

Antenatal exposure to intra-amniotic (i.a.) endotoxin initiates a complex series of events, including an inflammatory cascade, increased surfactant production, and alterations to lung structure. Using the low frequency forced oscillation technique as a sensitive tool for measurement of respiratory impedance, we aimed to determine which factors contributed most to measured changes in lung mechanics. Respiratory impedance data obtained from sedated preterm lambs exposed to either i.a. injection with saline or 20 mg of endotoxin 1, 2, 4, and 15 days before delivery at 125 days gestation were studied, and association with indexes of standard lung morphometry, inflammatory response, and alveolar surfactant-saturated phosphatidylcholine (Sat PC) pool size was demonstrated. Reduction in tissue impedance with increasing interval between exposure and delivery was evident as early as 4 days after i.a. endotoxin injection, coinciding with resolution of inflammatory reaction, increased alveolar surfactant pools, and contribution of alveolar ducts to the parenchymal fraction, and a later decrease in the tissue component of the parenchymal fraction. Decreases in tissue damping (resistance) were more marked than decreases in tissue elastance. Log alveolar Sat PC accounted for most variability in tissue damping (88.9%) and tissue elastance (73.4%), whereas tissue fraction contributed 2 and 6.4%, respectively. The alveolar Sat PC pool size was the sole factor contributing to change in tissue hysteresivity. No changes were observed in airway resistance. Despite the complex cascade of events initiated by antenatal endotoxin exposure, variability in lung tissue mechanics is associated primarily with changes in alveolar Sat PC pool and lung morphology.

Animals↗

Pulmonary cell kinetics and morphometry after ozone exposure: day versus night and dose response in rats.

Male Sprague-Dawley rats were exposed to increasing concentrations of ozone as follows: 0.12, 0.24, 0.36, 0.6, or 0.8 ppm. Controls were kept in chambers ventilated with filtered air. One-half of the animals in ozone was exposed for 12 h a day during daytime hours, and the other one-half of the animals was exposed for 12 h during nighttime. Cumulative labeling indexes were measured after 4 and 7 days in the terminal bronchioles, large intrapulmonary airways, trachea, and nasal epithelia. The penetration of the lesions from the bronchiole-alveolar junction into the alveolar zone was measured with quantitative morphometry. After 4 days of exposure, the extent of injury was dose dependent. Labeling indexes in the terminal bronchioles were 15-20% higher in animals exposed during nighttime compared with the animals exposed during daylight hours. On the other hand, depth of penetration of ozone lesions into the centriacinar region was not significantly different in animals exposed during the night compared with animals exposed during daytime. Labeling indexes in the large airways, trachea, or nasal cavity were not influenced by time of exposure. Between days 4 and 7, the lesions in the terminal bronchioles progressed only to a minimal degree (10%). It was concluded that the pattern of centriacinar tissue remodeling 1) followed a gradient based on ozone concentration and 2) was essentially complete after only 4 days of ozone exposure. Although a difference between daytime and nighttime exposure was observed, it was not considered to be large enough to invalidate conclusions drawn from studies in which animals are exposed to ozone during daylight hours.

Animals↗

Morphometry of the dog pulmonary venous tree.

The biophysical approach to the study of blood flow in the pulmonary vasculature requires a detailed description of vascular geometry and branching pattern. The description of the pulmonary venous morphometry in the dog is the focus of this paper. Silicone elastomer casts of a dog lung were made and were used to measure the diameters, lengths, and branching pattern of the pulmonary venous vasculature. The anatomic data are presented statistically with a diameter-defined Strahler ordering scheme, a rule for assigning the order numbers of the vessels on the basis of a diameter criterion. The asymmetric branching pattern of the pulmonary venous vasculature is described with a connectivity matrix. Results show that for the dog's right pulmonary venous tree 1) a total of 11 orders of vessels lay between the left atrium and the capillary bed; 2) the average ratios of the diameter, length, and number of branches of successive orders of veins were 1.701, 1.556, and 3.762, respectively; and 3) a fractal description of the tree geometry resulted in diameter and length fractal dimensions of 2.49 and 2.99, respectively. The morphometric data were used to compute the cross-sectional area, vascular volume, and Poiseuillean resistance in the venous vessels.

Animals↗

Effects of increased bronchial blood flow on airway morphometry, resistance, and reactivity.

It has been suggested that airway obstruction may be mediated in part by airway vascular engorgement or airway wall edema. However, there are few data that support this conjecture. In this study we examined the effects of increased bronchial blood flow (Qba) on airway wall dimensions, conducting airway resistance, peripheral airway resistance, and airway reactivity assessed by methacholine aerosol challenge. The bronchial artery was perfused with autologous blood (control Qba = 0.6 ml.min-1.kg-1) in anesthetized ventilated sheep. The artery was perfused at either control (C) Qba or at high (H) Qba (300% of C Qba) for 3 h. Morphometry showed a doubling of the vascular area in airways exposed to H Qba (n = 4) compared with C Qba (n = 4). However, the significant increase in wall area could be accounted for only partially by the vascular changes, with edema fluid accumulation accounting for the major increase. Despite these changes, baseline airway resistance (n = 16) and peripheral airway resistance were both unaltered. Airway reactivity to methacholine before and after H Qba was also examined (n = 12). The 3 h of H Qba had no effect on airway reactivity regardless of whether challenge occurred with C or H Qba. The lack of effect of vascular engorgement on airway resistance or reactivity does not support a primary role for these factors in mediating airway obstruction.

Aerosols↗

Relationship between heterogeneous changes in airway morphometry and lung resistance and elastance.

We present a dog lung model to predict the relation between inhomogeneous changes in airway morphometry and lung resistance (RL) and elastance (EL) for frequencies surrounding typical breathing rates. The RL and EL were sensitive in distinct ways to two forms of peripheral constriction. First, when there is a large and homogeneous constriction, the RL increases uniformly over the frequency range. The EL is rather unaffected below 1 Hz but then increases with frequencies up to 5 Hz. This increase is caused by central airway wall shunting. Second, the RL and EL are extremely sensitive to mild inhomogeneous constriction in which a few highly constricted or nearly closed airways occur randomly throughout the periphery. This results in extreme increases in the levels and frequency dependence of RL and EL but predominantly at typical breathing rates (<1 Hz). Conversely, the RL and EL are insensitive to highly inhomogeneous airway constriction that does not produce any nearly closed airways. Similarly, alterations in the RL and EL due to central airway wall shunting are not likely until the preponderance of the periphery constricts substantially. The RL and EL spectra are far more sensitive to these two forms of peripheral constriction than to constriction conditions known to occur in the central airways. On the basis of these simulations, we derived a set of qualitative criteria to infer airway constriction conditions from RL and EL spectra.

Airway Resistance↗

In vivo lung morphometry with hyperpolarized 3He diffusion MRI in canines with induced emphysema: disease progression and comparison with computed tomography.

Despite a long history of development, diagnostic tools for in vivo regional assessment of lungs in patients with pulmonary emphysema are not yet readily available. Recently, a new imaging technique, in vivo lung morphometry, was introduced by our group. This technique is based on MRI measurements of diffusion of hyperpolarized (3)He gas in lung air spaces and provides quantitative in vivo tomographic information on lung microstructure at the level of the acinar airways. Compared with standard diffusivity measurements that strongly depend on pulse sequence parameters (mainly diffusion time), our approach evaluates a "hard number," the average acinar airway radius. For healthy dogs, we find here a mean acinar airway radius of approximately 0.3 mm compared with 0.36 mm in healthy humans. The purpose of the present study is the application of this technique for quantification of emphysema progression in dogs with experimentally induced disease. The diffusivity measurements and resulting acinar airway geometrical characteristics were correlated with the local lung density and local lung-specific air volume calculated from quantitative computed tomography data obtained on the same dogs. The results establish an important association between the two modalities. The observed sensitivity of our method to emphysema progression suggests that this technique has potential for the diagnosis of emphysema and tracking of disease progression or improvement via a pharmaceutical intervention.

Animals↗

Quantitative models of the rat pulmonary arterial tree morphometry applied to hypoxia-induced arterial remodeling.

Little is known about the constituent hemodynamic consequences of structural changes that occur in the pulmonary arteries during the onset and progression of pulmonary arterial remodeling. Many disease processes are known to be responsible for vascular remodeling that leads to pulmonary arterial hypertension, cor pulmonale, and death. Histology has been the primary tool for evaluating pulmonary remodeling, but it does not provide information on intact vascular structure or the vessel mechanical properties. This study is an extension of our previous work in which we developed an alternative imaging technique to evaluate pulmonary arterial structure. The lungs from Sprague-Dawley rats were removed, perfusion analysis was performed on the isolated lungs, and then an X-ray contrast agent was used to fill the arterial network for imaging. The lungs were scanned over a range of intravascular pressures by volumetric micro-computed tomography, and the arterial morphometry was mapped and measured in the reconstructed isotropic volumes. A quantitative assessment of hemodynamic, structural, and biomechanical differences between rats exposed for 21 days to hypoxia (10% O(2)) or normoxia (21.0% O(2)) was performed. One metric, the normalized distensibility of the arteries, is significantly (P < 0.001) larger [0.025 +/- 0.0011 (SE) mmHg(-1)] (n = 9) in normoxic rats compared with hypoxic [0.015 +/- 0.00077 (SE) mmHg(-1)] (n = 9). The results of the study show that these models can be applied to the Sprague-Dawley rat data and, specifically, can be used to differentiate between the hypoxic and the control groups.

Animals↗

Evaluation of nucleolar organizer regions in human bladder cancers by light- and electron-microscopic morphometry.

The number of nucleolar organizer regions (NOR) of human bladder cancers was evaluated at the light- and electron-microscopic level. The average number of argyrophilic NOR (AgNOR), stained by the one-step silver colloid method, was measured in benign and malignant urothelial cells in the human urinary bladder using a light microscope. The average number of nucleolar fibrillar centers (FC) per nucleus was also calculated by quantitative ultrastructural morphometry in the specimens from the same patients. Statistical evaluations revealed that the average number of AgNOR per nucleus was significantly correlated with the elevation of tumor grade and stage (p < 0.05). An average FC number per nucleus also increased in association with tumor grade and stage (p < 0.05). Although the average number of FC was 5.6 times higher than that of AgNOR, the correlation between the average number of FC and AgNOR was statistically significant. In conclusion, these results suggested that the silver staining method was a useful and convenient tool for the evaluation of the differentiation and invasive potential of bladder cancer cells at the light-microscopic level.

Biopsy, Needle↗

Regional Brazilian diet-induced low birth weight is correlated with changes in renal hemodynamics and glomerular morphometry in adult age.

Number of nephrons, renal hemodynamics, and glomerular morphometry were assessed in rats submitted to a multideficient diet which was developed from a basic regional diet consumed in a Brazilian region of sugarcane cultivation. We evaluated three groups of male Wistar rat offspring: (1) from dams fed a standard diet throughout mating, pregnancy and lactation (control group) and (2) from dams fed the multideficient diet during mating and pregnancy (MalN1 group) or (3) throughout mating, pregnancy, and lactation (MalN2 group). At adult age, the animals were anesthetized to measure mean arterial blood pressure and renal hemodynamics. The MalN1 group, as compared with the control group, showed unaltered body and kidney weights, nephron deficiency, a high mean arterial blood pressure, glomerular hypertrophy, and renal vasoconstriction. The MalN2 group showed the same nephron deficiency and mean arterial blood pressure levels as the MalN1 group. These animals exhibited lower body and kidney weights and no glomerular hypertrophy. In conclusion, the alterations induced by intrauterine malnutrition are compatible with the development of chronic renal failure.

Animals↗