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The state of the environment 1976.

One of the main points made recently by the Executive Director of the United Nations Environment Programme, in describing the state of the current environment in the world, was that the present nuclear arms race is a potential environmental hazard, larger than any other created. It was pointed out that the nuclear stockpiles of the major powers in 1974, amounting to 30,000 megatons, were two million times the destructive capacity of the Hiroshima bomb. The State of the Environment report continues to examine also the conventional arms race, pointing out that the combined military expenditure by developing countries has increased by the rate of ten per cent a year since 1960, taking scarce foreign exchange to build up arsenals, rather than developing the environment of these countries or alleviating the poverty of the people living in these countries. Other major points described in the report: 1. In terms of pollution, even a relatively small change in one of the controlling factors of the world climate would have serious consequences for mankind, hampering the increase in world food. 2. It is still not known what the earth's real "carrying capacity" is, and all that is known is that the earth can meet only the basic needs of a finite number of people. 3. Hunger is the main problem in the world today and can only be solved through wise development and the doubling of global food production. 4. Almost half of the 7,000 million people expected to be alive in the year 2,000 will live in towns and cities, more than 64 per cent of these people in developing countries. 5. On a positive note, there is a much greater awareness on the part of the people of the world, a greater reduction of pollution in many parts of the world, and a co-operation among governments-and a marked progress in the field of international environmental law. The report concludes by warning the world that it must consume less resources less wastefully and that without political will science can do nothing. The essence of the environmental challenge, therefore, is political rather than technical.

Air Pollution↗

Monogamy in mammals.

This review considers the behavioral, ecological, and reproductive characteristics of mammals exhibiting monogamy, i.e., mating exclusivity. From a discussion of the life histories of selected species of monogamous primates, carnivores, rodents and ungulates, several trends emerge. Two forms of monogamy occur, Type I, facultative, and Type II, obligate. The selective pressures leading to these two forms of monogamy may have been different. Facultative monogamy may result when a species exists at very low densities, with males and females being so spaced that only a single member of the opposite sex is available for mating. Obligate monogamy appears to occur when a solitary female cannot rear a litter without aid from conspecifics, but the carrying capacity of the habitat is insufficient to allow more than one female to breed simultaneously within the same home range. Within both types of monogamy, the following traits are typically seen: (1) adults show little sexual dimorphism either physically or behaviorally: (2) the adult male and female exhibit infrequent socio-sexual interactions except during the early stages of pair bond formation. Additional trends specific to mammals exhibiting obligate monogamy are: (1) the young exhibit delayed sexual maturation in the presence of the parents, and thus only the adult pair breeds; (2) the older juveniles aid in rearing young siblings; and (3) the adult male (father) aids in the rearing of young by any or all of the following: carrying, feeding, defending, and socializing offspring.

Animals↗

Isolated serum-free perfused rat kidneys release immunoreactive erythropoietin in response to hypoxia.

The renal glycoprotein hormone erythropoietin (Epo) interacts with erythrocytic progenitors to stimulate their proliferation and differentiation in the bone marrow. The renal O2-sensing mechanism in the control of the synthesis of Epo is still poorly understood. Therefore, the capacity of isolated rat kidneys to produce Epo during hypoxic and anemic perfusion was studied. The kidneys were perfused at a constant perfusion pressure of 100 mm Hg with a substrate-enriched Krebs-Henseleit solution containing 60 g/liter BSA and freshly drawn human erythrocytes. Epo was measured by RIA. When the kidneys were perfused at an arterial pO2 of 720 or 150 mm Hg (hematocrit, 5%), Epo production was very low (0.1-0.2 U/g kidney within 3 h of perfusion). When the arterial pO2 was lowered to 35 or 20 mm Hg, Epo production increased to 0.4 and 0.9 U/g kidney, respectively. The release of Epo during hypoxic perfusion (pO2 35 and 20 mm Hg) was little affected by changes in the hematocrit, i.e. the O2-carrying capacity of the perfusion medium over a wide range (0-40%). These results indicate that the production of Epo in the isolated perfused kidney depends on the availability of O2 and can be modulated by changes in the arterial pO2.

Anemia↗

Inhibition of vasoactive agents by perfluorochemical emulsion.

Perfluorochemicals are widely used in clinical and experimental studies as volume expanders with high oxygen carrying capacity. We noticed that contractions of rabbit aortic strips, induced by norepinephrine, were inhibited in FC-43 emulsion as compared to Krebs-Henseleit solution (KH). To study this inhibition, a comparative evaluation was made of the contractile responses of norepinephrine, serotonin and histamine in FC-43 emulsion and KH. The effect of these agents was significantly diminished in FC-43 emulsion; concentration-response curves were shifted to the right and the maximum response was diminished. A search was made for the individual constituents of FC-43 responsible for diminution of contraction of vascular smooth muscle. After centrifugation of FC-43 emulsion, the supernatant caused a reduction of contractility and reduced EC50-values of norepinephrine to the same degree as the fully constituted emulsion. This excluded perfluorotributylamine, the oxygen carrying particles, as being responsible for this inhibition. When the detergent Pluronic F-68 was added to KH in concentrations equal to that in FC-43 emulsion, inhibition of contraction occurred and EC50-values increased. Contractions induced by norepinephrine were equally inhibited by the addition to KH of a volume expander, hydroxyethylstarch, in a concentration equal to that in FC-43 emulsion. It is concluded that FC-43 emulsion inhibits vasoactive agents and attenuates its pharmacologic effects on vascular smooth muscle. The fractions of FC-43 emulsion responsible for inhibiting the effect of vasoactive agents are Pluronic F-68 and hydroxyethylstarch.

Animals↗

Evolutionary speed of species invasions.

Successful invasion may depend of the capacity of a species to adjust genetically to a spatially varying environment. This research modeled a species invasion by examining the interaction between a quantitative genetic trait and population density. It assumed: (I) a quantitative genetic trait describes the adaptation of an individual to its local ecological conditions; (2) populations far from the local optimum grow more slowly than those near the optimum; and (3) the evolution of a trait depends on local population density, because differences in local population densities cause asymmetrical gene flow. This genetics-density interaction determined the propagation speed of populations. Numerical simulations showed that populations spread by advancing as two synchronic traveling waves, one for population density and one for trait adaptation. The form of the density wave was a step front that advances homogenizing populations at their carrying capacity; the adaptation wave was a curve with finite slope that homogenizes populations at full adaptation. The largest speed of population expansion, for a dimensionless analysis, corresponded to an almost homogeneous spatial environment when this model approached an ecological description such as the Fisher-Skellam's model. A large genetic response also favored faster speeds. Evolutionary speeds, in a natural scale, showed a wide range of rates that were also slower compared to models that only consider demographics. This evolutionary speed increased with high heritability, strong stabilizing selection, and high intrinsic growth rate. It decreased for steeper environmental gradients. Also indicated was an optimal dispersal rate over which evolutionary speed declined. This is expected because dispersal moves individuals further, but homogenizes populations genetically, making them maladapted. The evolutionary speed was compared to observed data. Furthermore, a moderate increase in the speed of expansion was predicted for ecological changes related to global warming.

Adaptation, Biological↗

Habitat connectivity and ecosystem productivity: implications from a simple model.

The import of resources (food, nutrients) sustains biological production and food webs in resource-limited habitats. Resource export from donor habitats subsidizes production in recipient habitats, but the ecosystem-scale consequences of resource translocation are generally unknown. Here, I use a nutrient-phytoplankton-zooplankton model to show how dispersive connectivity between a shallow autotrophic habitat and a deep heterotrophic pelagic habitat can amplify overall system production in metazoan food webs. This result derives from the finite capacity of suspension feeders to capture and assimilate food particles: excess primary production in closed autotrophic habitats cannot be assimilated by consumers; however, if excess phytoplankton production is exported to food-limited heterotrophic habitats, it can be assimilated by zooplankton to support additional secondary production. Transport of regenerated nutrients from heterotrophic to autotrophic habitats sustains higher system primary production. These simulation results imply that the ecosystem-scale efficiency of nutrient transformation into metazoan biomass can be constrained by the rate of resource exchange across habitats and that it is optimized when the transport rate matches the growth rate of primary producers. Slower transport (i.e., reduced connectivity) leads to nutrient limitation of primary production in autotrophic habitats and food limitation of secondary production in heterotrophic habitats. Habitat fragmentation can therefore impose energetic constraints on the carrying capacity of aquatic ecosystems. The outcomes of ecosystem restoration through habitat creation will be determined by both functions provided by newly created aquatic habitats and the rates of hydraulic connectivity between them.

Animals↗

Reward saturation in medial forebrain bundle self-stimulation.

A rate-frequency curve in self-stimulation experiments plots the response rate as a function of the frequency of stimulation pulses, yielding a steeply rising, roughly sigmoidal curve. Altering stimulation reward efficacy results in lateral shifts of this curve, while altering the operant performance capacity of the rat results in primarily vertical shifts. One hypothesis explaining the lateral stability of the curve in the face of performance-altering manipulations is that the stimulation reward effect saturates at the frequency where the curve asymptotes. In the first experiment we determined the frequency of rate-frequency curve asymptote in two paradigms, runway and lever-pressing, and compared it to the reward saturation frequency determined in a discrete choice procedure. Results indicate that reward often saturates at frequencies above the rate-frequency asymptote point, which does not support the above hypothesis; levelling-off of the rate-frequency function is most likely a result of performance ceiling factors. In a second experiment, increases in stimulation current reduced the saturation frequency, indicating that saturation is not determined by an upper limit on the signal carrying capacity of the directly excited axons.

Action Potentials↗

Does oxygen supply improve graft viability in liver preservation?

While the clinical results of orthotopic liver transplantation have greatly improved, the viability of liver grafts and extension of the safe time for preservation are necessary factors in need of improvement. The liver is one of the organs most sensitive to anoxia. The addition of an oxygen carrying agent to the preservation solution was evaluated. Pyridoxalated hemoglobin-polyoxyethylene conjugate (PHP) is used as an oxygen carrier. Viaspan (UW) served as a control solution. Test solution (PHP+UW) composition was composed of a 1:1 mixture of PHP and UW solutions with hemoglobin 4.0g%, hydroxyethyl starch 2.5g%, osmolality 320 mOsm/kg H2O, and colloidal osmotic pressure 33 mmHg. The oxygen carrying capacity of PHP+UW solution is about 10 times higher than UW solution at 4 degrees C. Male Lewis rats (BW: 250-300 g) were divided into five groups. After flushing the solution via the portal vein, rat livers were harvested. Two preservation methods, simple storage and perfusion (0.1 ml/min/g liver), were studied at 4 degrees C for 24 or 48 hours. OxyHb, MetHb, pO2, pH, Na, K, GOT, and GPT of perfusate, hepatic mitochondrial functions after preservation, and tissue adenine nucleotides by HPLC were measured. Light microscopy on the tissue was also performed. No significant differences were noted in perfusate biochemical parameters. Oxygen consumption during the perfusion was significantly higher in the PHP+UW than in the UW group. Hepatic mitochondrial functions and tissue ATP levels were better preserved in perfusion than in simple storage, and in PHP+UW than in UW at 48 hours. The oxygen carrying agent, PHP, can provide significantly higher levels of oxygen to liver grafts and improve graft viability.

Adenosine Triphosphate↗

A novel herpesvirus amplicon system for in vivo gene delivery.

For gene therapy approaches to succeed, improved vector systems are needed that combine a large carrying capacity with high transduction efficiency in vivo. Towards this goal, we have developed a novel herpes simplex virus (HSV) amplicon vector, pHE, which contains an HSV-1 replication origin (ori S) and packaging sequence that permit vector replication and packaging into HSV-1 capsids. The vector also contains the Epstein-Barr virus (EBV) unique latent replication origin (ori P) sequence and a modified EBNA-1 gene to allow the vector to be maintained as an episome in transfected E5 helper cells. This system allows for efficient packaging of high-titer vector since the E5 cells are first selected for the presence of the pHE vector before helper virus infection. The infectious pHE vector has efficient transgene expression in a variety of human cell lines in vitro. Stereotactic injection of pHE vector supernatant into the rat brain resulted in high, localized reporter gene expression. Finally, the pHE vector could carry a stable 21 kb DNA payload into HSV virions. This pHE vector system should have a broad range of gene transfer applications.

Animals↗

[Modified hemoglobins as oxygen transporting blood substitutes ].

Although the attempts to develop an oxygen-carrying alternative to red blood cells (RBC) have spanned the last 100 years, it has proven difficult to develop a clinically useful haemoglobin-based oxygen carrier. Four major problems have been shown to compromise the use of haemoglobin outside the RBC as an oxygen carrier: (1) the increased oxygen affinity due to the loss of 2,3-diphosphoglycerate; (2) dissociation into dimers and monomers with consequent renal and capillary loss of hemoglobin; (3) insufficient concentrations of prepared solutions under iso-oncotic conditions, and thereby reduced oxygen-carrying capacity; and (4) toxicity. Most of these limitations have been overcome by different modifications of haemoglobin, including pyridoxylation, intra- and intermolecular cross-linking, polymerisation, liposome encapsulation, conjugation to inert macromolecules, and genetic engineering. Questions of toxicity are not completely answered at present, especially with regard to renal toxicity, interactions with the nitric oxide system, and antigenicity. Therefore, the issues preventing clinical application are those of safety and not of efficacy of haemoglobin-based RBC substitutes. Potential clinical applications include fluid resuscitation, treatment of anaemia and ischaemia, support in extracorporeal circulation, and organ preservation. Based on promising and reproducible results obtained from animal studies, clinical phase I and II trials with newer haemoglobin solutions have been started in the United States. Substantial knowledge has been gained in the development, production, and evaluation of haemoglobin-based oxygen carriers during the past years. It will probably not take another century before oxygen-carrying RBC substitutes will become available for clinical use.

Animals↗

Exercise training in normobaric hypoxia in endurance runners. I. Improvement in aerobic performance capacity.

This study investigates whether a 6-wk intermittent hypoxia training (IHT), designed to avoid reductions in training loads and intensities, improves the endurance performance capacity of competitive distance runners. Eighteen athletes were randomly assigned to train in normoxia [Nor group; n = 9; maximal oxygen uptake (VO2 max) = 61.5 +/- 1.1 ml x kg(-1) x min(-1)] or intermittently in hypoxia (Hyp group; n = 9; VO2 max = 64.2 +/- 1.2 ml x kg(-1) x min(-1)). Into their usual normoxic training schedule, athletes included two weekly high-intensity (second ventilatory threshold) and moderate-duration (24-40 min) training sessions, performed either in normoxia [inspired O2 fraction (FiO2) = 20.9%] or in normobaric hypoxia (FiO2) = 14.5%). Before and after training, all athletes realized 1) a normoxic and hypoxic incremental test to determine VO2 max and ventilatory thresholds (first and second ventilatory threshold), and 2) an all-out test at the pretraining minimal velocity eliciting VO2 max to determine their time to exhaustion (T(lim)) and the parameters of O2 uptake (VO2) kinetics. Only the Hyp group significantly improved VO2 max (+5% at both FiO2, P < 0.05), without changes in blood O2-carrying capacity. Moreover, T(lim) lengthened in the Hyp group only (+35%, P < 0.001), without significant modifications of VO2 kinetics. Despite similar training load, the Nor group displayed no such improvements, with unchanged VO2 max (+1%, nonsignificant), T(lim) (+10%, nonsignificant), and VO2 kinetics. In addition, T(lim) improvements in the Hyp group were not correlated with concomitant modifications of other parameters, including VO2 max or VO2 kinetics. The present IHT model, involving specific high-intensity and moderate-duration hypoxic sessions, may potentialize the metabolic stimuli of training in already trained athletes and elicit peripheral muscle adaptations, resulting in increased endurance performance capacity.

Adaptation, Physiological↗

Women's health in a marginal area of Kenya.

As eco-demographic pressure on the cultivable areas of tropical Africa increases, women, the main food producers in such areas, are experiencing serious threats to their physical health. Eco-demographic pressure may be defined as the effect of a rapidly-growing population, dependent largely on subsistence production, on the human carrying capacity of an ecological region. Continued subdivision of plots from father to sons, over grazing, and soil erosion lower agricultural productivity and create periodic food shortages, the main burdens falling most heavily upon the poorest people. Migration to cities in search of wage employment, or to lower-potential areas in search of land are common responses. Eco-demographic pressure in the high potential areas of Kenya has been responsible over many years for the migration of agriculturalists into marginal lands. The partial break-up of traditional modes of production and the difficulties of cultivating in a semi-arid environment greatly increase the demands on available labour, whilst levels of health are poor and health care delivery inadequate. It is suggested that women, in particular, are subject to a high degree of stress and evidence of such stress and accompanying ill-health is presented using data from a survey conducted in Kibwezi Division of Machakos District, Kenya. Higher-than-average economic dependence on women is shown in the demographic structure. Water collection patterns show that 70% of all trips are made by women over 15 years over a median distance of 3.5 km and that 87% of women collecting water carry loads without any mechanical assistance compared with 42% of men. Fertility levels remain high and anthropometry revealed that women in the survey were thinner and shorter than a comparable group from a more fertile part of the district. Using functional criteria, the data suggest a higher prevalence of chronic disablement amongst women, compared with men, and the disabilities mentioned tend to reflect the hard lifestyle and high fertility levels of women in Kibwezi.

Adolescent↗

Structural capacity of the knee to anterior cruciate ligament failure during quadriceps contraction. An in vivo study in the rat.

The effect of quadriceps contraction on the structural capacity of the knee joint loaded to anterior cruciate ligament (ACL) failure was studied in an in vivo rat model. In both knees of 20 rats the joint capsule and ligaments, except the ACL, were cut and the menisci resected by microsurgery. The rats were randomized to destructive testing of their ACLs either by femorotibial distraction or by anterior tibial translation at a displacement rate of 2.5 mm s-1 (60% s-1). The knee flexion during testing was 60 degrees. During loading of the right ACL, quadriceps contraction was induced by electrical stimulation of the femoral nerve. As control, the ACL of the left knee was loaded with relaxed quadriceps. The ultimate load for the knee to ACL failure when tested in tension by femorotibial distraction during quadriceps contraction was 140% higher than tested with the muscles relaxed (p = 0.0001). Energy absorption at failure during muscle contraction was 274% higher (p = 0.0001), and the linear stiffness increased by 59% (p = 0.0004). During testing by anterior tibial translation, neither linear stiffness nor ultimate load changed significantly, but the energy absorbed at failure was 46% (p = 0.02) higher during quadriceps contraction compared to testing with the quadriceps relaxed. These results showed that quadriceps contraction substantially increased the load carrying capacity of the rat knee subject to ACL failure when loaded by femorotibial distraction, but less when it was loaded by anterior tibial translation.

Animals↗

Cardiovascular and coronary physiology of acute isovolemic hemodilution: a review of nonoxygen-carrying and oxygen-carrying solutions.

Acute isovolemic hemodilution is used increasingly to avoid the potentially serious side effects of homologous blood transfusions. Cardiovascular physiology during hemodilution is characterized by a marked increase in cardiac output and organ blood flow to compensate for the decrease in arterial oxygen-carrying capacity. During advanced hemodilution an increased oxygen extraction is also observed, such that oxygen consumption generally is maintained even during advanced hemodilution. The increase in cardiac output is related mainly to a decrease in blood viscosity and an enhanced sympathetic tone resulting in stimulation of the heart. The magnitude and the mechanisms involved in the increase depend upon species, state of awareness (awake versus anesthetized), type of anesthesia, type of exchange solution, and condition of the heart prior to hemodilution. Recent laboratory findings, as well as clinical practice in cardiac surgery, suggest that moderate hemodilution to hematocrit values of approximately 25% is well tolerated in single vessel coronary artery disease which should thus not be regarded as an absolute contraindication for moderate hemodilution. An integral concept to minimize homologous blood transfusions consists of preoperative autologous blood donation, preoperative isovolemic hemodilution, meticulous (asanguineous) surgical technique, and acceptance of minimum hemoglobin levels during the entire hospitalization. The incidence of homologous blood transfusions will be reduced using acute isovolemic hemodilution. This incidence will be further reduced once hemoglobin solutions become clinically available for specific indications. At present, research activities are concentrated on defining the critical level of hemodilution in various pathologic conditions and to investigate pharmacology and physiology of the new hemoglobin solutions. Finally, several chemically modified hemoglobin-based oxygen-carrying solutions devoid of renal toxicity will be available in the future. The cardiovascular physiology and pharmacology of these hemoglobin solutions have been studied. Cardiac output is generally constant and oxygen extraction is increased to maintain oxygen consumption during hemodilution with hemoglobin solutions. In most studies, some vasoconstriction was observed also, which might result from interaction of the hemoglobin molecule with the EDRF/NO system. However, with enhanced purification, chemical modification or microencapsulation of the hemoglobin molecule, vasoconstriction can be limited.

Blood Substitutes↗

A randomized, double-blind comparison of donor tolerance of 400 mL, 200 mL, and sham red cell donation.

BACKGROUND: Volume replacement could allow the safe collection of twice the normal amount of red cells in a standard donation. Studies in small numbers of donors have shown that a temporary decrease in red cell mass is well tolerated when donors give twice the usual amount (170-225 mL) of red cells in a standard 405- to 495-mL donation. Sham-donation control groups have not been included in previous studies of increased red cell donation, and perceptions of donation effects could have been biased. STUDY DESIGN AND METHODS: In the study reported here, 17 male and 13 female volunteers were randomly assigned to make a sham donation, 1-unit donation, or 2-unit donation on an automated blood cell separator. Donor tolerance was assessed by ambulatory heart rate monitoring and by a poststudy interview. Hemoglobin, hematocrit, ferritin, serum iron, total iron-binding capacity, red cell 2,3 DPG, and serum erythropoietin were measured before and after donation for comparison of the erythropoietic responses in the three study groups. RESULTS: Red cells collected totaled 206 +/- 10 mL in the 1-unit group and 414 +/- 21 mL in the 2-unit group. Changes in heart rate, systolic blood pressure, and diastolic blood pressure with donation and changes in heart rate recorded by ambulatory monitoring did not differ for the experimental groups. Postdonation changes from baseline values were evaluated on Days 2, 7, and 14. Changes in hemoglobin were significantly different between groups (p < 0.017) in all postdonation tests. There were differences between groups in erythropoietin response, red cell 2,3 DPG, ferritin levels, and hemoglobin synthesis. Hemoglobin synthesis and mean changes in 2,3 DPG, erythropoietin, ferritin, and postdonation hemoglobin were greater in the 2-unit group than in the 1-unit group. CONCLUSION: Donor tolerance of red cell donations of 414 +/- 21 mL, a volume of red cells twice that in a standard 450-mL blood donation, does not differ from donor tolerance of standard or sham donations. Physiologic adjustments and the hematopoietic response to reduced red cell mass were greater in the 2-unit group, but the donation of 1 unit or 2 units did not cause detectable symptoms of reduced oxygen-carrying capacity.

Blood Donors↗

Role of perfluorochemical emulsions in the treatment of myocardial reperfusion injury.

Perfluorochemicals are substances with small particle size, low viscosity, and high oxygen-carrying capacity. The role of one perfluorochemical preparation. Fluosol, an emulsion of two perfluorocarbons, a detergent Pluronic F-68 (poloxamer 188), and phospholipids on myocardial reperfusion injury was investigated in a closed-chest canine model of regional ischemia. Intracoronary and intravenous infusions of Fluosol in the perireperfusion period significantly reduced infarct size and improved ventricular function in animals that were examined for up to 2 weeks after reperfusion. Fluosol preserved endothelial structure and endothelium-dependent relaxation of large and small vessels. Fluosol reduced neutrophil plugging of capillaries and attenuated neutrophil infiltration into the reperfused bed. Ex vivo studies of neutrophil function demonstrated apparent suppression of chemotaxis and lysozyme degranulation in cells from animals that were treated with Fluosol. However, treatment of cells in vitro manifested enhanced superoxide anion production within 5 minutes of incubation even with low concentrations of Fluosol. This effect was found to be almost entirely attributable to the detergent, Pluronic F-68. The stimulation of neutrophils by Fluosol was found to result directly from phagocytosis and indirectly from activation of the complement cascade. These findings suggest that perfluorochemicals may provide a novel form of therapy to enhance myocardial salvage after successful reperfusion. The mechanism appears to be due to stimulation and subsequent "deactivation" of neutrophils peripherally, which thereby reduces their cytotoxic potential in the reperfused myocardium. The role of the oxygen-carrying ability of the perfluorocarbons in the reduction of reperfusion injury remains to be determined. In a pilot study in human beings, Fluosol that was used as adjunctive therapy with angioplasty has also been shown to improve regional ventricular function. Clinical trials with perfluorochemical emulsions appear warranted to determine the role of reperfusion injury in limiting myocardial salvage in patients who are undergoing pharmacologic or mechanical reperfusion.

Animals↗

Modeling the dynamic interplay between general and specific change in children's conceptual understanding.

In introducing this chapter, I pointed out that traditional theories of learning and of cognitive development were in conflict with regard to the effects of specific learning. Developmental theorists saw general structures as influencing specific learning but not being affected by it, whereas learning theorists took the opposite view - that general structures (if they existed) were affected only by specific experiences. In the formulation of neo-Piagetian theory, both general and specific effects were acknowledged; however, general effects were assigned to mental capacity and specific ones to the child's schematic repertoire. Thus, the possibility of reciprocal influence did not emerge (or at least was not explored). In the present chapter, I have proposed the existence of such a reciprocal influence and explored its consequences. At a general level, the two consequences that follow are (1) that the overall pace of development is accelerated and (2) that the profile of development is evened out because benefits obtained from high-frequency learning experiences are passed on, via the mediation of the central conceptual structure, to low-frequency ones. These two effects were then advanced as one possible explanation for the difference in the data obtained between different cultures and different social classes. In the former case, the explanation utilized the notion that the benefits of high-frequency learning could be passed on to low-frequency situations via the mediation of general structures; in the latter case, the explanation drew on the notion that experiential loops can accelerate or decelerate development by magnifying experiential differences that are relatively small but that prevail across most of the tasks that a child encounters. The last half of the present chapter was devoted to specifying the dynamics of this sort of interaction in mathematical terms. The data that were obtained in Chapters III and V were extremely regular and showed an even pattern of development across different tasks; hence, they could conceivably be modeled with single curves or even straight lines. The mathematical model chosen to fit these findings was much more complex, however. Each growth curve was generated by an expression that contained a dynamic tension between two opposing categories of effect: those whose tendency is to make different developmental pathways disperse (different growth rates and the effect of compounding) and those whose tendency is to hold development to a single course (the constraints imposed by a growing carrying capacity and the "binding together" or "squeezing" effect generated by the reciprocal feedback loop). The disadvantage of this sort of modeling is clearly its complexity. An equally clear advantage, however, is that it allows one to provide a unified explanation for a set of data that might otherwise seem quite disparate and to express relations in quantitative rather than merely qualitative terms. This, in turn, permits one to check the entire set of proposed relations for their consistency, and to explore the dynamic pattern of their interaction, by conducting "intellectual experiments" and checking them against common sense and/or existing data sets. In the present chapter, this approach has been used for the effects of social class and of culture. In principle, however, it could potentially be used equally to explore the effects of other variables, such as those that underlie intellectual retardation and/or "giftedness". At least for the moment, then, the mathematical modeling approach looks promising.

Child↗

Ecological and toxicological effects of inorganic nitrogen pollution in aquatic ecosystems: A global assessment.

We provide a global assessment, with detailed multi-scale data, of the ecological and toxicological effects generated by inorganic nitrogen pollution in aquatic ecosystems. Our synthesis of the published scientific literature shows three major environmental problems: (1) it can increase the concentration of hydrogen ions in freshwater ecosystems without much acid-neutralizing capacity, resulting in acidification of those systems; (2) it can stimulate or enhance the development, maintenance and proliferation of primary producers, resulting in eutrophication of aquatic ecosystems; (3) it can reach toxic levels that impair the ability of aquatic animals to survive, grow and reproduce. Inorganic nitrogen pollution of ground and surface waters can also induce adverse effects on human health and economy. Because reductions in SO2 emissions have reduced the atmospheric deposition of H2SO4 across large portions of North America and Europe, while emissions of NOx have gone unchecked, HNO3 is now playing an increasing role in the acidification of freshwater ecosystems. This acidification process has caused several adverse effects on primary and secondary producers, with significant biotic impoverishments, particularly concerning invertebrates and fishes, in many atmospherically acidified lakes and streams. The cultural eutrophication of freshwater, estuarine, and coastal marine ecosystems can cause ecological and toxicological effects that are either directly or indirectly related to the proliferation of primary producers. Extensive kills of both invertebrates and fishes are probably the most dramatic manifestation of hypoxia (or anoxia) in eutrophic and hypereutrophic aquatic ecosystems with low water turnover rates. The decline in dissolved oxygen concentrations can also promote the formation of reduced compounds, such as hydrogen sulphide, resulting in higher adverse (toxic) effects on aquatic animals. Additionally, the occurrence of toxic algae can significantly contribute to the extensive kills of aquatic animals. Cyanobacteria, dinoflagellates and diatoms appear to be major responsible that may be stimulated by inorganic nitrogen pollution. Among the different inorganic nitrogenous compounds (NH4+, NH3, NO2-, HNO2NO3-) that aquatic animals can take up directly from the ambient water, unionized ammonia is the most toxic, while ammonium and nitrate ions are the least toxic. In general, seawater animals seem to be more tolerant to the toxicity of inorganic nitrogenous compounds than freshwater animals, probably because of the ameliorating effect of water salinity (sodium, chloride, calcium and other ions) on the tolerance of aquatic animals. Ingested nitrites and nitrates from polluted drinking waters can induce methemoglobinemia in humans, particularly in young infants, by blocking the oxygen-carrying capacity of hemoglobin. Ingested nitrites and nitrates also have a potential role in developing cancers of the digestive tract through their contribution to the formation of nitrosamines. In addition, some scientific evidences suggest that ingested nitrites and nitrates might result in mutagenicity, teratogenicity and birth defects, contribute to the risks of non-Hodgkin's lymphoma and bladder and ovarian cancers, play a role in the etiology of insulin-dependent diabetes mellitus and in the development of thyroid hypertrophy, or cause spontaneous abortions and respiratory tract infections. Indirect health hazards can occur as a consequence of algal toxins, causing nausea, vomiting, diarrhoea, pneumonia, gastroenteritis, hepatoenteritis, muscular cramps, and several poisoning syndromes (paralytic shellfish poisoning, neurotoxic shellfish poisoning, amnesic shellfish poisoning). Other indirect health hazards can also come from the potential relationship between inorganic nitrogen pollution and human infectious diseases (malaria, cholera). Human sickness and death, extensive kills of aquatic animals, and other negative effects, can have elevated costs on human economy, with the recreation and tourism industry suffering the most important economic impacts, at least locally. It is concluded that levels of total nitrogen lower than 0.5-1.0 mg TN/L could prevent aquatic ecosystems (excluding those ecosystems with naturally high N levels) from developing acidification and eutrophication, at least by inorganic nitrogen pollution. Those relatively low TN levels could also protect aquatic animals against the toxicity of inorganic nitrogenous compounds since, in the absence of eutrophication, surface waters usually present relatively high concentrations of dissolved oxygen, most inorganic reactive nitrogen being in the form of nitrate. Additionally, human health and economy would be safer from the adverse effects of inorganic nitrogen pollution.

Acid Rain↗