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Relative growth of the human temporal bone in the prenatal period.

Thirty right temporal bones of Brazilian fetuses (ranging from 14th to 36th weeks) were studied by the allometric method in order to define the pattern of the whole temporal bone weight growth and the weight growth of the temporal bone portions: squamous, petrous and tympanic. These data were compared to fetal weight. The increase of the data of the temporal bone shows a positive allometry except for the tympanic portion (isometry). The squamous portion shows the highest allometric coefficient. These data are important to the knowledge of the human skull growth.

Embryonic and Fetal Development↗

[Heart growth in the human embryonic period (a study related to the 2d month of gestation)].

The growth of the heart was studied in 27 human staged embryos of post-somitic period (stages from 15 to 23, Carnegie Institution of Washington). The volume of the heart was determined multiplying the cardiac profiles areas (evaluated by point counting planimetry on serial sections) by the thickness of microtomy. Cardiac volume increase was examined relative to age, to crownrump length, and to body weight. The data were transformed into logarithms and bivariate relations were analysed according allometric equations of the form (log y = k log x + log b). The data were fitted according to three techniques: least squares, major axis, and reduced major axis. The slopes of the allometric regressions indicate positive allometry of the cardiac volume relative to embryonic age and to C-R length, and isometry relative to body weight.

Cardiac Volume↗

[Adaptation of a method for determining serum iron after deproteinization on a parallel analyzer].

The study of the determination of iron in sera by a bathophenanthroline method after deproteinization, has been realized according to the protocol Valtec conceived by SFBC, after adaptation on a FP9 parallel analyzer. The critical study of this adaptation included trials of within run precision (CV of 1.25%), total precision (CV 2.29 to 4.66%) as also evaluation of analytical range: the limit of linearity is 140 mumol/l. The evaluation of inaccuracy performed with patient specimens leads to establishment of follow up norms and interpretation norms of allometry line. Our whole results are in agreement with the performance standards of the protocol for the validation of methods published by the Société Française de Biologie Clinique. Finally the described method is quick acting, reliable and very inexpensive.

Colorimetry↗

Cyclosporine pharmacokinetics in rats and interspecies comparison in dogs, rabbits, rats, and humans.

The pharmacokinetics of cyclosporine, a potent immunosuppressive agent, are described for rats given 5 mg/kg iv, measuring blood concentrations by a specific HPLC method. Cyclosporine followed first-order kinetics and blood concentrations vs. time data were adequately described by a three-compartment open model system. The mean half-life of the lambda 1 phase was 0.11 hr, that of the lambda 2 phase was 1.82 hr, and the half-life of the estimated lambda 3 phase was 23.79 hr. The mean apparent volume of distribution and Vss were 5.69 and 4.54 liters/kg, respectively. The mean blood total body clearance was 3.38 ml/min/kg. The literature was reviewed to obtain comparable data from other mammalian species, and satisfactory kinetic information was found for humans, dogs, and rabbits. Interspecies variants in physiological parameters and cyclosporine pharmacokinetics were considered and treated as a property and consequence of body size (allometry), nullifying anatomical and physiological differences between species. A relationship between pharmacokinetic time (a variable in terms of chronological time) and body weight was found. It is suggested that the metabolic capacity (based on liver weight) to eliminate cyclosporine is similar in humans, rabbits, and rats, whereas the dog showed a potentially double capacity to metabolize the drug. However, metabolic and pharmacodynamic studies are also needed to predict toxicity accurately among species.

Animals↗

[Adaptation of a diazoreaction method for determining total and conjugated bilirubins on a parallel analyser].

A diazoreaction method of estimation of bilirubin has been adapted on a FP9 parallel analyzer. Biotrol's kit could be used only after modifications of the protocol. The critical study of this adaptation included trials of within run precision (CV 1.93 to 4.42%), total precision (CV 2.59 to 6.66%) as also evaluation of analytical range: the limit of linearity is 340 mumol/l. The evaluation of inaccuracy performed with patient specimens leads to establishment of follow-up norms and interpretation norms of allometry line. Our whole results are in conformity with the performance standards of the protocol for the validation of methods published by the Société Française de Biologie Clinique. Finally the described method is quick acting, reliable and very inexpensive.

Ammonia↗

Contemporary brain morphology in ecological and ethological perspectives.

The use of ethological, along with morphological data is presented as a general realistic approach to the understanding of the vertebrate nervous system. While the brain/body size relation, either in ontogeny or phylogeny, is still a mandatory method for describing brain evolution, the interpretation of the allometry equation remains subject to difficulties. A mixed quantitative-qualitative relationship between brain and behaviour is defined through the new concept of cociation. Results based on this approach are presented for a number of mammals having a broad variety of sizes and life-habits. The necessity of using brain components, and not only total brains, is emphasized. The functional aspects of relative brain and brain component size, especially with reference to metabolism and behaviour, are commented upon. These aspects require a cautious handling of the causality principle, and a particular conception of progress in brain evolution. The study of brain components in a functional perspective has been characterized, in recent years, by remarkable advances in modular morphology. These are summarized and it is suggested that they might lend themselves to especially significant behavioural correlations. A hypothetical model for a two-level brain, involving both redundancy and configurations, and consistent with a neuroethological approach, is recommended as a potentially promising direction for future progress in brain morphology, in ecological and behavioural perspectives.

Animals↗

[Encephalization of the marine lamprey, Petromyzon marinus (L.). Quantitative analysis of the principle brain subdivisions].

The measure of both the somatic weight (S) and the brain weight (E) on a sample of 13 adult individuals of Petromyzon marinus (L.) leads for this species to the determination of its brain-body weight coefficient of allometry and to the knowledge of its index of encephalization. The value of the first one is 0.556. Its locates the Sea-Lamprey at the highest level of a scale of decreasing values belonging one after the other to Chondrichthyes (0.551), to Teleost fishes (0.487), to Anurans (0.458), to Reptiles (0.43) and at last to Mammals (0.25). This result revalues our previous hypothesis which gives to this kind of statistic a phylogenetic meaning (RIDET et al. 1977). The index of encephalization has been arbitrarily fixed at the 10 value; it is the lowest of all the other indices previously known and consequently it points the Sea-Lamprey as the less encephalized Vertebrate species. The histological study carried out on the brain allows to the knowledge of the volumes of the main encephalic subdivisions. It leads to various results as: 1. The study the relative volumes (that is to say the volume of each subdivision expressed in percentage of the volume of the whole brain) emphasizes the olfactory bulbs and the Tegmentum + Medulla oblongata which have together the highest values amongst the brain percentages of Petromyzon marinus (and also of Lampetra planeri). This peculiarity has no equivalence in the brain structure of the other studied species of Vertebrates and we consider it as the expression of a primitive brain pattern. 2. The isoponderal indices locate also the Sea-Lamprey at the lowest level for all its encephalic subdivisions, as it was previously the case for the whole brain expressed by the index of encephalization. Such an unanimity seems also to be related to a fundamental brain organization. Comparisons between Petromyzon marinus, Lampetra planeri and Myxine glutinosa corroborate the paraphyletic status of the last one in the Agnathes. The differences pointed also between the two first species are less obvious but justify meanwhile a more detailed study of this group (Petromyzontidae) which shall be given soon.

Animals↗

Finite element scaling analysis of human craniofacial growth.

The study of form change is central to traditional cephalometric research. Unfortunately, traditional cephalometric studies operate within systems of measurement that are based on registration and orientation. Measurements produced in registered systems are insufficient for the craniofacial biologist who is interested in locating morphological differences between forms. In this article we apply a registration-free method called finite element scaling analysis in a study of the form change occurring during growth of the normal human craniofacial complex. The method provides form change data that can be summarized at various morphological levels. Twenty normal male individuals are used to analyze the form change that occurs from age 4 to ages 5, 7, 8, 9, 10, 12, 13, and 15 years. The magnitude and direction of growth expressed as shape and size change specific to craniofacial landmarks are presented. Although exceptions occur, our analysis shows that localized size change is, on the average, greater than localized shape change. The relation between size and shape change during growth shows allometry (shape change increasing during growth along with size change) but at a lesser magnitude and slower rate. We conclude that although shape change occurs throughout ontogeny, the magnitude and rate of shape change in relation to size change diminishes as age increases. This analysis represents new insights into the understanding of human craniofacial growth at various levels of morphological integration.

Adolescent↗

[Postnatal development of the brain mass in guinea pigs (Cavia cobaya)].

The quantitative development of body mass (BoM) and brain mass (BrM) has been studied in guinea pigs during postnatal life from the 1st day until adulthood. The increase of both the parameters (BoM, BrM) was statistically significant from the 7th day on (p less than or equal to 0.05). The growth curves of BoM and BrM can be described mathematically by non linear regression functions of which the correlation coefficients were r = 0.96 and r = 0.82, respectively. The two growth rates of BoM and BrM show negative allometry, the rate of increase of BoM being 2.45 and that of BrM 1.16 between the 1st day and day 19-25. The correlation coefficient of the BoM/BrM ratio was r = 0.87. During the postnatal brain development of the guinea pig no particular growth spurt could be observed, as it is known from other species, e.g. the rat. This finding seems to be coherent with the advanced state of the newborn guinea pig with his functioning sensory mechanisms and an important motor activity.

Animals↗

Log-normal variation belts for growth curves.

Prediction (confidence) or tolerance belts compound the uncertainty of sample estimates with the estimated extent of individual variation. The latter is therefore better described by variation belts, in which sample estimates are simply substituted for population parameters. Variation belts can provide valuable graphical indications concerning the goodness of fit of postulated error models. While multiplicative least-squares (MLS) methods appear appropriate in principle for biological growth, they are unsatisfactory in practice when logarithmically transformed data are heteroscedastic. Heteroscedastic multiplicative error models can be fitted by iteratively reweighted multiplicative least squares (IRMLS), but unacceptable negative or infinite residual variance estimates and unreasonably wide variation belts are occasionally obtained. These difficulties can be prevented by constrained iteratively reweighted multiplicative least squares (CIRMLS). Examples are presented concerning the metabolic allometry of white rats, the somatic growth of male elephant seals, and the growth of an experimental population of Paramecium caudatum.

Aging↗

[The postnatal growth of the skull in the house mouse Mus musculus Linné, 1758, and in 2 different large subspecies of the field mouse Microtus arvalis Pallas, 1779. I. Introduction, materials and methods].

In order to describe postnatal skull growth in Mus musculus, Microtus arvalis arvalis and M. a. asturianus, a total of 408 animals were raised and measured. The growth rate of single bones was followed by means of a maximum-likelihood estimator for the parameters A, B and C of the growth function Y(t) = A-B exp(-Ct). Supplementary techniques used to estimate the morphological divergence of the different taxa included methods of allometry research and multivariate statistical methods such as discriminate analysis and MANOVA. Drawings of selected stages of skull-bone ossification are provided to assist researchers in determining the age of undated specimens.

Animals↗

A flexible 3-parameter curve for limited or unlimited somatic growth.

Unlike population growth, the somatic growth of individual organisms is often well described by a curve passing through the origin, provided time (t) is measured from the moment at which the egg starts developing actively. A simple 3-parameter asymptotic growth curve, X = A/(1 + D/tc), can be derived from the logistic curve, X = A/[1 + D/exp(Ct)], by replacing time (t) by its natural logarithm. Hill (1913) used a similar curve to describe the saturation of haemoglobin by oxygen, but he considered only exponents C greater than or equal to 1. Depending upon the value of exponent C, this curve has a flexible shape which can range all the way from a rotated and translated rectangular hyperbola to a sigmoid curve. When C greater than 1, there is an inflection point of which the ordinate can assume any value between 0 and A/2, where A denotes the (upper) asymptote. When C less than 1, if the pattern of growth appears to be unlimited, within the range of the data, this curve becomes similar to allometry with respect to time, X = Btc. The asymptote A then becomes large but the ratio of parameters A/D approaches B as a limit. Unlike other 3-parameter curves, the present curve shows acceptable numerical convergence when fitted both to limited and unlimited growth data. This curve is illustrated with data on the body length of male and female elephant seals and on the body length and weight of female yellow sturgeons.

Animals↗

[Post-natal growth of the skull in the house mouse Mus musculus Linné, 1758, and in 2 different large subspecies of the field mouse Microtus arvalis Pallas, 1779. II. Results (I)].

Postnatal skull ontogeny of Mus musculus, Microtus arvalis arvalis and M. a. asturianus was studied qualitatively and quantitatively. To facilitate age determination for undated specimens, the most important stages in ossification of the skull bones are described, with drawings of selected ontogenetic stages (Part I). Using Parameter C of the growth function Y(t) = A - B exp (- Ct), it is possible to establish skull growth gradients. The growth functions are subdivided into 3 classes, based on Parameter C, associated with different growth regions of the skull. Changes in individual skull proportions are demonstrated by means of ontogenetic and intraspecific allometries.

Animals↗

Comparison of brain structure volumes in insectivora and primates. V. Area striata (AS).

Volumes of the area striata (area 17, Brodmann) were measured in 44 species of Primates and Scandentia and some of its laminar components in 25 species. The relative size (expressed by size indices) is on the average distinctly larger in simians than in isoponderous prosimians. The average dimensions of increase are 2.5 times for total area striata (ASV), 3.4 times for white matter (ASW), 2.35 times for grey matter (ASG), 1.9 times for lamina 1 (ASG 1) and 2.4 times for laminae 2-6 (ASG 2-6). The high increase of the white matter and the low increase of lamina 1 both correspond to similar results on the total neocortex (Frahm et al., 1982). The molecular layer (ASG 1) is on the average about 12% of the total area striata grey (ASG). The visual cortex thus has a narrower molecular layer than the neocortex as a whole, in which an average of 14% was found. The size indices of man are within the simian range and generally slightly above the simian average. Tree shrews have relatively small visual cortices, but reach into the lower part of the prosimian range. For Insectivora, ASG volumes were estimated from CGL volumes. According to these estimates, the relative ASG size is about 1/90 in shrews, about 1/40 in tenrecs and about 1/10 in hedgehogs that of isoponderous prosimians. In the European hedgehog, the area striata is about 12% of the total neocortex, a value similarly to that found in area measurements by Brodmann (1913). The relative size of the area striata is discussed with regard to functional, ecoethological and phylogenetic considerations. With increasing body weight, the increase in the visual structures, both cortical and non-cortical, is weak when compared with other brain parts and body organs (strongly negative allometry).

Animals↗

Craniofacial growth and size patterns during postnatal development.

Patterns of craniofacial growth and size relationships are described for a mixed longitudinal sample of 26 males and 25 females, followed serially from four years of age through adult status. The seven dimensions examined, derived from 663 lateral cephalograms, show differential patterns of negative allometric growth relative to statural increase. Relative growth is greatest for mandibular traits, followed by upper facial and neurocranial traits, respectively. Males exhibit greater relative growth than females. Craniofacial variation residual to allometry follows three independent patterns of association defined by principal component analysis. The components are age and sex independent, suggesting that after proportional changes related to absolute size or scale are controlled for, anterior facial, cranial height, and masticatory associations follow separate but proportionate patterns during growth.

Adolescent↗

A genetic analysis of the mandible and maxilla in the rat.

A quantitative genetic analysis of eight osteometric traits from the oral region together with femur length in the rat are described. The relevant questions being examined are (1) the heritability of each trait; (2) the relative contribution of genetic, maternal environmental, and residual environmental effects to the correlation between the oral traits, and (3) genetic and nongenetic components of the correlation between the oral traits and overall body size. Some quantitative genetic aspects of covarying traits is briefly reviewed with special emphasis on allometric variation. Phenotypic regression coefficients from log-transformed data (= allometry coefficients) of oral traits onto femur length are partitioned into components due to genetic, maternal environmental, residual environmental, and total environmental causes. All phenotypic regression coefficients and all but one based on an environmentally determined covariance component are significantly different from zero, suggesting a substantial body size effect in the oral region resulting from nonheritable causes. However, three genetic coefficients from regressions of oral traits to femur length are not different from zero, indicating a genetic correlation with body size in five traits but not in three others. A principal components analysis was carried out on the phenotypic, genetic, and environmental correlations of the eight oral traits to provide a multivariate depiction of the components of covariation in the maxilla and mandible of the rat. General multivariate effects due to body size together with group or special effects are demonstrated for each component of morphogenesis.

Animals↗

[Quantitative analysis of adult morphology in eudiploids and three types of trisomics of Pleurodeles waltlii (Amphibia, Urodela) (author's transl)].

The results of a comparative quantitive study of morphology in eudiploids and three types of trisomics of adult Pleurodeles waltlii are discussed. General morphologies are specified by mean measurement values. Statistical bivariate analysis demonstrate differential growths and give some new details on sexual dimorphism. Trisomies 8 and 11 have opposite effects on growth allometries, while no significant effect of trisomy 10 has been detected. As a rule, characters of trisomics are more variable than those of diploids.

Animals↗

[Hormone dependent, functional gynecologic morphology in infancy and adolescence presented on the example of the cervix uteri].

Signs of different activities in the dynamic morphology of the epithelium and mucus of the cervix uteri are demonstrated in the female fetus, newborn, child and adolescent. Besides the morphological description of the ectropium, transitional zone, s.c. "reserve-cells", squamous cell nodes and production and secretion of mucus other investigations were done by allometry, caryometry and histochemistry. The examinations allow insight into the hormonal activities specially of the estrogenes in different periods of female life.

Adolescent↗