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Biomedical subjects

A Nadeau

Publications and source records attributed to A Nadeau.

At least 145 records · Page 8Linked to original sources

Role of deep abdominal fat in the association between regional adipose tissue distribution and glucose tolerance in obese women.

Computed tomography (CT) was used to study the association between adipose tissue localization and glucose tolerance in a sample of 52 premenopausal obese women aged 35.7 +/- 5.5 yr (mean +/- SD) and with a body fat of 45.9 +/- 5.5%. Body-fat mass and the body mass index (BMI) were significantly correlated with plasma glucose, insulin, and connecting peptide (C-peptide) areas after glucose (75 g) ingestion (.40 less than or equal to r less than or equal to .51, P less than .01). Trunk-fat accumulation and the size of fat cells in the abdomen displayed highly significant correlations with postglucose insulin levels. The C-peptide area was also positively correlated with abdominal fat cell size (r = .76, P less than .01) and was more closely associated with the sum of trunk skin folds (r = .59, P less than .001) than with the extremity skin folds (r = .29, P less than .05). Subcutaneous and deep-abdominal-fat areas measured by CT displayed comparable associations with the plasma insulin area (r = .44 and .49, respectively; P less than .001) but marked differences in the associations with glucose tolerance. Indeed, subcutaneous abdominal fat was not significantly correlated with the glucose area, whereas deep abdominal fat showed a significant correlation (r = .57, P less than .001) with the glucose area. Midthigh fat deposition measured by CT was not, however, correlated with plasma glucose, insulin, or C-peptide areas.(ABSTRACT TRUNCATED AT 250 WORDS)

Abdomen↗

Relation of high plasma triglyceride levels associated with obesity and regional adipose tissue distribution to plasma lipoprotein-lipid composition in premenopausal women.

Abdominal obesity is associated with high plasma triglyceride (TG) and with low plasma high density lipoprotein (HDL)-cholesterol (CHOL) levels. As plasma TG and HDL-CHOL are negatively correlated, the associations between obesity, the regional distribution of body fat, plasma TG levels, and plasma lipoprotein concentration and composition were studied in a sample of 76 premenopausal women (52 obese and 24 non-obese). Obese women had significantly higher plasma levels of VLDL-TG, low density lipoprotein (LDL)-CHOL, LDL-TG, LDL-apolipoprotein (apo) B and reduced HDL-CHOL levels compared to non-obese controls (p less than 0.01). However, plasma concentrations of HDL-apo A-I and HDL-TG were not different between obese and non-obese women. Partial correlation analyses revealed that both fat mass and abdominal fat accumulation significantly contributed to VLDL-TG and HDL-CHOL variances. After control for body fat mass, the waist-to-hip circumference ratio (WHR) remained significantly correlated with plasma LDL-apo B levels and with the LDL-apo B/LDL-CHOL ratio (0.01 greater than p less than 0.05). Body fat mass was, however, associated with TG enrichment of LDL (p less than 0.01). After control for WHR, body fat mass showed no significant association with plasma HDL-TG levels, whereas the WHR was positively correlated with HDL-TG levels (p less than 0.05). Partial correlation analyses indicated that adjustment for fat mass or for the WHR failed to eliminate the associations between plasma VLDL-TG levels and lipoprotein lipid composition. This study emphasizes the importance of plasma VLDL-TG level as a correlate of plasma LDL and HDL lipid composition in abdominal obesity.

Adipose Tissue↗

Metabolic characteristics of postobese individuals.

The metabolic characteristics of nine postobese and six lean control male individuals were investigated to identify factors potentially associated with the predisposition to become obese. The postobese subjects had been maintaining their body weight stable for at least six months following a 24.8 kg mean weight loss. Body weight, fat mass and fat-free mass were comparable to values of the control subjects. Data obtained in postobese and control subjects were also compared to those of seven obese male individuals whose mean body weight was comparable to the body weight of postobese subjects before they initiated their weight-reducing program. Resting metabolic rate (RMR) was significantly higher (P less than 0.05) in the obese than in the two other groups. Thermic effect of food and participation in physical activities were similar in the three groups of subjects. Daily energy intake tended to be higher in control subjects but not to a statistically significant extent. However, energy intake above RMR was statistically higher in control subjects than in the two other groups. As expected, fasting and postprandial plasma glucose and insulin were substantially higher in obese than in postobese and control subjects. Moreover, fasting and postprandial hyperglucagonemia was observed in both obese and postobese subjects, suggesting that weight loss did not normalize plasma glucagon levels as was the case for glucose and insulin. From an energetic standpoint, results of the present study suggest that people predisposed to obesity may be characterized by reduced energy needs over resting metabolic rate, a phenomenon that would not be explained by a reduced physical activity level.

Blood Glucose↗

Effect of exogenous insulin on plasma free carnitine levels during exercise in normal man.

Preliminary data from our laboratory have shown that the decrease in plasma free carnitine levels normally found during prolonged exercise is blunted in type 1 diabetic man. This study was designed to test the hypothesis that this might be due to the sustained peripheral hyperinsulinemia seen during exercise in diabetics treated by subcutaneous insulin. Ten male subjects underwent 90 min of cycle ergometry at 60% of their maximal oxygen uptake capacity on two occasions, one with and the other without a constant 0.13 mU.kg-1.min-1 i.v. insulin infusion. Blood samples were taken at rest, during exercise, and after exercise for measurement of plasma glucose, insulin, C-peptide, free fatty acids, and carnitine. Plasma glucose dropped significantly (p less than 0.01) from basal during both infusions, but values at 30, 45, and 60 min of exercise were lower (p less than 0.05) during insulin infusion compared with the saline infusion. Exercise produced a significant (p less than 0.01) fall in plasma insulin in both infusions. However, from 30 to 90 min of exercise, the plateau insulin level was higher during the insulin infusion compared with the saline infusion (91.4 +/- 3.0 vs. 32.9 +/- 3.0 pmol/L; p less than 0.001). Plasma C-peptide decreased significantly (p less than 0.01) during exercise and recovery in both infusions, but values between infusions were not significantly different. Plasma free fatty acids increased significantly (p less than 0.01) at 90 min of exercise during the saline infusion, while during the insulin infusion this was noted during recovery only.(ABSTRACT TRUNCATED AT 250 WORDS)

Adipose Tissue↗

Physical training and changes in regional adipose tissue distribution.

Obesity has been associated with numerous metabolic complications, such as changes in the concentration and/or composition of plasma lipoproteins, glucose intolerance and hyperinsulinemia leading to diabetes and hypertension. The relation of obesity to cardiovascular disease has not, however, been consistently reported. Recent prospective studies have clearly indicated that the distribution of adipose tissue was a significant cardiovascular risk factor and numerous studies have shown that metabolic disturbances were more closely associated with the level of abdominal fat than excess adiposity per se. As obese men generally store their energy excess in the abdominal region and women in the peripheral fat depots, the metabolic complications of obesity seem to be more closely related to adiposity in men than in women. It is suggested that the sex dimorphism observed in adipose tissue localization could partly explain the greater cardiovascular risk associated with obesity in men than in women. Indeed, obese women with a "male" (abdominal) distribution of body fat have greater metabolic complications than women with lower body fat. When aerobic exercise-training is used to induce weight loss, men generally lose more fat than women. In men, the loss of adipose tissue appears to be central, potentially reducing the risk of cardiovascular disease, whereas a relative resistance to fat loss is observed in women compared to men. Although resistance to fat loss is noted in women, those with a "male" distribution of adipose tissue (high waist-to-hip ratio and high intra-abdominal fat deposition) and with associated metabolic complications greatly benefit from aerobic exercise-training.(ABSTRACT TRUNCATED AT 250 WORDS)

Abdomen↗

Sensitivity to overfeeding: the Quebec experiment with identical twins.

The role of the genotype in the response to short-term overfeeding was assessed by submitted six pairs of male monozygotic twins to a 4.2 MJ (1000 kcal) per day energy intake surplus for a period of 22 consecutive days. Individual differences in fat mass and fat-free mass gains were observed in response to overfeeding but they were not randomly distributed. Indeed, the within-pair resemblance in the response was striking when compared to the heterogeneity found among the pairs in adiposity and fat-free mass gains. The intrapair resemblance in the response to overfeeding as assessed by the intraclass coefficient computed with the individual changes, reached 0.88 for total fat mass and 0.76 for fat-free mass. A similar trend for a genetically determined pattern of adaptation to overfeeding was observed for resting metabolic rate (intraclass = 0.63), thermic effect of a meal (intraclass = 0.62), and energy cost of submaximal exercise (intraclass = 0.78) when the data were analysed in terms of changes in oxygen uptake. On the other hand, no major alterations in glucose and insulin response to a glucose load or a test meal, in cardio-pulmonary adaptation to submaximal exercise and in maximal exercise tolerance were found with overfeeding. In contrast, the response of suprailiac fat cell lipolysis (intraclass of about 0.7) and heparin releasable adipose tissue lipoprotein lipase (intraclass - 0.82) varied among individuals but was highly homogeneous within genotypes. Similarly, a genotype-overfeeding interaction effect was seen for serum triglycerides (intraclass = 0.69), HDL-cholesterol (intraclass = 0.85), and the HDL-cholesterol to total cholesterol ratio (intraclass = 0.82). Multiple correlation analyses suggest that much of the variance in the response of fat mass (R = 0.65) and fat-free mass (R = 0.81) is accounted for by alterations in the energy expenditure components assessed in the study. If one takes into account the measurement errors always present in such complex studies and the fact that only a limited fraction of the energy expenditure of activity was considered by design, one can conclude that the genotype determines to a large extent the response variation to short-term overfeeding. In particular, the genotype-overfeeding interaction effect for body composition changes seems to be mediated by the various energy expenditure components, themselves characterized by significant genotype-overfeeding interaction effects.(ABSTRACT TRUNCATED AT 400 WORDS)

Adipose Tissue↗

Effects of fenfluramine in hypertriglyceridemic obese subjects.

Forty-four hyperlipidemic obese subjects, selected because of their refractoriness towards diet-therapy, participated voluntarily in a 12-week double-blind study comparing the effects of a long-acting fenfluramine (Ponderal Pacaps) to those of a placebo. In spite of no dietetic intervention, a significant 3-kg weight loss (P less than 0.001) was observed in the fenfluramine-treated group, accompanied by a significant improvement of most atherogenic parameters of plasma lipoproteins. Fenfluramine-induced weight loss produced decrease in total cholesterol (P less than 0.05), total triglycerides (P less than 0.05), LDL cholesterol (P less than 0.05), total apoprotein B (P less than 0.005) and LDL apoprotein B (P less than 0.001). An apoprotein B LDL depletion seemed to occur, as suggested by the reduction of LDL cholesterol/apoprotein B ratio (P less than 0.001). Total plasma apoprotein A did not change but the total apoprotein B/total apoprotein A ratio decreased significantly (P less than 0.005). Moreover, fenfluramine increased both HDL phospholipid (P less than 0.005) and HDL cholesterol (P less than 0.05) resulting in a fall of the atherogenic LDL-cholesterol/HDL cholesterol ratio (P less than 0.001) as well as an elevation of the anti-atherogenic HDL cholesterol/LDL + VLDL cholesterol ratio (P less than 0.001). The placebo group demonstrated some improvement in lipid blood parameters without weight loss, indicating a possible qualitative amelioration of nutritional habits. Thus, fenfluramine reduces the risk for cardiovascular disease in hyperlipidemic obese individuals not responding to behavioral intervention.

Adult↗

Exercise training improves early survival rate in diabetic rats submitted to acute coronary artery ligation.

This study was designed to test the hypothesis that the decreased early survival rate of diabetic rats submitted to acute experimental myocardial infarction could be improved by a previous training program. Male Wistar rats (+/- 200 g) were rendered diabetic with the i.v. injection of streptozotocin (45 mg/kg) but only those presenting one week later a tail-blood glucose value between 250-400 mg/dl were retained in the protocol. Diabetic and control rats were either kept sedentary or submitted to a progressive 10-week program of treadmill running. The left coronary artery was then ligated under ether anesthesia. Adequate occlusion was confirmed by an elevation of plasma CK-MB levels four hours later or by a toluidine blue injection technique in rats which died earlier. Since the first 20 minutes after such a procedure represents a most critical period for sudden death, the early survival rate was calculated for each group of rats and significance in differences was established with the Fisher's test. While the 27% early survival rate observed in sedentary diabetics was significantly lower (p = 0.02) than the 49% found in sedentary controls, this was completely alleviated by previous training in diabetic animals (50%; p = 0.018 vs sedentary diabetics and 0.623 vs sedentary controls). This beneficial effect of training was not found in nondiabetic animals.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Effects of vitamin B12 supplementation on choline acetyltransferase activity in cat brain.

Vitamin B12 was daily supplemented to a semi-purified casein diet and given per os during 17 consecutive days to cats in a dosage of 25 micrograms/kg every morning at the meal time. The specific choline acetyltransferase activity, measured in several structures in cat brain, was significantly increased in the hypothalamus, piriform lobe, hippocampus, pons and pons raphe nuclei and significantly decreased in the medulla raphe nuclei, respectively. These results demonstrate for the first time that vitamin B12 involved as coenzyme in biochemical reactions related to the liberation of methyl synthesis synthesis through the bioavailability of choline, the enzyme substrate of choline acetyltransferase. These results might contribute to a better understanding of some neurochemical mechanisms related to Alzheimer-type dementia.

Acetylcholine↗

Transient increase in basal insulin levels in severely diabetic rats submitted to physical training.

Physical training improves glucose homeostasis in rats with experimental diabetes mellitus. The present study has been designed to ascertain if this beneficial effect is maintained or lost after a few days of inactivity. Male Wistar rats were injected with streptozotocin (STZ, 50 mg/kg) and those presenting one week later a blood glucose value between 250 and 400 mg/dl were retained in the protocol and randomly assigned to a sedentary (n = 18) or trained group (n = 23). An I.V. glucose tolerance test (0.5 g/kg) was performed in previously cannulated rats 64 h (trained rats; n = 15) or 12 days (detrained rats, n = 8) after the last bout of exercise. In comparison with results obtained in their sedentary counterparts (419 +/- 15 mg/dl), basal glucose levels were significantly lower in trained (362 +/- 20; p less than 0.05), but not in detrained rats (429 +/- 15; NS). Similar differences in plasma glucose levels were observed after glucose loading, even though the glucose disappearance rate constant was not significantly improved by training. Furthermore, basal insulin levels were significantly higher (p less than 0.01) in trained than in sedentary rats (20 +/- 3 vs 12 +/- 2 microU/ml) but such a difference had disappeared in detrained rats (9 +/- 2 microU/ml). These results indicate that the training-induced improvement in glucose homeostasis of diabetic rats is a transient phenomenon which is associated with an increase in circulating insulin levels. This suggests that the beneficial effect of training is not due solely to enhanced insulin sensitivity.

Animals↗

Effect of a three-day interruption of exercise-training on resting metabolic rate and glucose-induced thermogenesis in training individuals.

Exercise-training has been shown to influence resting components of energy expenditure in lean and obese individuals. Moreover, experimental data suggest that the effect of training on these components could represent an acute effect of exercise. In this regard, the present study was undertaken to determine whether resting metabolic rate (RMR) and glucose-induced thermogenesis (GIT) could be modified depending on the delay elapsing between the last exercise session of a training program and calorimetric measurements. Eight trained individuals were tested 16 h after a 90-min exercise bout and following a 3-day interruption of training. A significant decrease in RMR (-6.6 percent, P less than 0.05) was observed in response to exercise cessation. On the other hand, an increased GIT was noted following the 3-day rest period and this effect was also statistically significant. These results show that short-term interruption of training can affect substantially RMR and GIT in trained individuals, indicating that the time elapsing since the last exercise session must be taken into account in the interpretation of the effects of physical training on both these parameters.

Basal Metabolism↗

Genotype-influenced changes in serum HDL cholesterol after short-term overfeeding in man: association with plasma insulin and triglyceride levels.

Six pairs of male monozygotic (MZ) twins were submitted to a 22-day overfeeding period during which they ingested a daily surplus of 1,000 kcal above their individual daily energy needs in the form of a mixed diet. Serum lipids, lipoproteins, and apoprotein A and B concentrations were measured before and after the overfeeding period. Percentage of body fat, fasting plasma glucose, and insulin levels as well as plasma glucose and insulin concentrations after a glucose challenge were also measured before and after overfeeding. Results showed that before overfeeding, MZ twins exhibited a significant intrapair resemblance for total serum cholesterol (CHOL), triglycerides (TG), low density lipoprotein cholesterol (LDL-C), and for the high density lipoprotein-cholesterol/total cholesterol ratio (HDL-C/CHOL) (8.2 less than or equal to F ratios less than or equal to 32.7, P less than .01). The overfeeding experiment induced significant increases only in serum CHOL (P less than .01) and in serum LDL-C (P less than .05). However, although mean group values of serum TG, HDL-C, and HDL-C/CHOL ratio were not significantly modified by overfeeding, there were large interindividual variations in the response of these variables to the experiment. Results suggest that changes in serum TG, HDL-C, and in the HDL-C/CHOL ratio were significantly associated with the genotype of the subjects as a significant intrapair resemblance in the response to overfeeding was observed for these variables (0.69 less than or equal to r less than or equal to .85, P less than .05).(ABSTRACT TRUNCATED AT 250 WORDS)

Apolipoproteins A↗

Is the response of plasma glucose and insulin to short-term exercise-training genetically determined?

Six male monozygotic (MZ) twin pairs participated in the present study which was undertaken to assess the contribution of heredity to changes in plasma glucose and insulin in response to exercise-training. This group was submitted to a vigorous ergocycle exercise program inducing a surplus in energy expenditure of 1000 kcal/day over habitual energy expenditure during 22 consecutive days. An oral glucose tolerance test (OGTT, 75 g glucose) was performed before and about 16 hours after the experimental period. Fasting plasma glucose as well as its increase over basal level (delta area) during OGTT were not modified by exercise-training (p greater than 0.05), although a marked reduction in insulin was observed, both in the fasting state and during the OGTT (p less than 0.01). To assess the extent to which heredity influenced the response to the treatment, i.e. the genotype-training interaction, within and between MZ twin pairs means of squares were calculated. A significant intrapair resemblance in the response to exercise-training was observed for fasting insulin and delta insulin area/delta glucose area ratio during OGTT, but not for delta insulin area. These results provide some indications about a possible role of the genotype on the sensitivity to reduce plasma insulin in response to exercise-training. However, this hypothesis needs to be substantiated by other experimental data with control over the genotype of subjects.

Adolescent↗

Heredity and overfeeding-induced changes in submaximal exercise VO2.

The present study investigated the role of heredity in determining changes in the energy cost of submaximal exercise in response to short-term overfeeding. Six pairs of monozygotic twins were subjected to a 1,000 kcal/day surplus for 22 days with careful experimental controls over food intake and physical activities. O2 consumption (VO2) was measured during a submaximal treadmill exercise test 165 min postprandially before and the morning after the overfeeding protocol. As expected, overfeeding induced significant increases in body weight and fat mass. No significant increase in mean exercise VO2 was observed after overfeeding. However, the interindividual variation in overfeeding-induced changes in exercise VO2 was large and not randomly distributed. When comparing intrapair variance for changes in exercise VO2 to interpair variance, a moderate to high within-pair resemblance in response, i.e., a genotype-overfeeding interaction, was observed. Changes in exercise VO2 were positively correlated with those in postexercise levels of blood catecholamines, particularly epinephrine. A negative correlation was found between changes in exercise VO2 and body fat gain. These results are consistent with the concept of a role for the sympathoadrenal system in the regulation of adaptive thermogenesis and the predisposition to store fat. Moreover, these data suggest that the sensitivity to adapt in exercise energy expenditure after overfeeding is inherited to a significant extent.

Adult↗

Acute diabetes mellitus does not impair survival rate in rats submitted to left coronary artery ligation.

This study was designed to assess whether the acute metabolic disturbances associated with diabetes mellitus of three-days duration could influence the survival of rats submitted to experimental myocardial infarction. Diabetes was induced with streptozotocin (50 mg/kg) in male Wistar rats and three days later left coronary artery ligation was performed in both control (n = 34) and diabetic (n = 31) animals. Diabetic rats had significant alterations in plasma levels of glucose (424 +/- 6 vs 143 +/- 3 mg/dL; p less than 0.001), insulin (10 +/- 1 vs 32 +/- 2 microU/mL; p less than 0.001) and free carnitine (37 +/- 2 vs 52 +/- 2 microM; p less than 0.001). There was no significant difference in the survival rate of diabetic animals, either early after coronary artery ligation (32 vs 42% at 20 min; p greater than 0.1) or later (21 vs 25% at 1 week; p greater than 0.1). This suggests that the increased mortality rate found in diabetic subjects suffering from myocardial infarction is due to some long-term changes associated with chronic diabetes mellitus rather than to the acute metabolic disturbances present at the time of this event.

Acute Disease↗

Effect of physical training on norepinephrine turnover in tissues of normal and diabetic rats.

This study was designed to examine the influence of physical training on the norepinephrine turnover rate in heart, pancreas, liver, and gastrocnemius muscles of normal and diabetic male rats at rest. Diabetes was induced with the IV injection of streptozotocin (45 mg/kg) and physical training was done on a treadmill according to a ten-week program. Norepinephrine turnover rate of tissues was estimated by following over time the decay in the specific activity of norepinephrine after a single IV bolus of tritiated norepinephrine (30 microCi/kg). Plasma glucose, insulin, and glucagon levels were also measured at the time of death. Although training caused a reduction in the plasma glucose values of diabetic rats, no changes in norepinephrine turnover rate were observed after the conditioning program. On the other hand, diabetes was associated with a significant 30% to 40% decrease in the pancreatic norepinephrine turnover rate. It is concluded that the beneficial effects of physical training on diabetes mellitus cannot be explained by adaptive changes in the sympathetic nervous system activity and that further work will be necessary to elucidate the mechanism whereby streptozotocin diabetes diminishes the pancreatic norepinephrine turnover.

Animals↗

Genotype dependency of the thermic effect of a meal and associated hormonal changes following short-term overfeeding.

The purpose of this experiment was to assess the effects of short-term overfeeding (mixed diet) on the thermic effect of a meal (TEM) and associated hormonal changes and to investigate the role of the genotype in the observed changes. Six pairs of male sedentary monozygotic (MZ) twins consumed an extra 1,000 kcal per day over their individual level of energy expenditure while maintaining a sedentary existence. Resting metabolic rate (RMR) and TEM following a 4.2 MJ meal challenge was measured before and after 22 days of overfeeding. RMR did not change significantly (7% elevation) in response to the positive caloric stimulus, whereas significant increases (P less than 0.01) in TEM were observed. Moreover, postprandial insulin and glucose responses were not modified. Overfeeding did not significantly alter catecholamine levels but induced significant elevations in plasma levels of T3 and T4 (P less than 0.05). Changes in RMR exhibited moderate but nonsignificant within twin pair resemblance in response whereas significant within pair resemblance was noted in the magnitude of TEM changes induced by overfeeding (P less than 0.05). Hormonal responses exhibited a weaker genotype dependency. These results suggest that short-term overfeeding can induce an elevation in TEM with accompanying increases in T3 and T4. Large individual response variation in metabolic and hormonal measures were observed. The similarity of response within twin pairs suggests that sensitivity to change in TEM induced by short-term overfeeding is genetically influenced.

Adult↗

Increased mortality rate in diabetic rats submitted to acute experimental myocardial infarction.

Diabetes mellitus is well known to increase the death rate after acute myocardial infarction in humans. The mechanisms of this adverse effect of diabetes, however, remain unknown. In the present study an animal model was developed in which the influence of diabetes on the survival rate after acute myocardial infarction could be studied in more detail. Male Wistar rats were rendered diabetic with streptozotocin (45 mg X kg-1 intravenously) and kept in the study if one week later their tail blood glucose concentration was between 13.9 and 22.2 mmol X litre-1 after a four hour fast. Ten weeks later they underwent acute left coronary artery ligation. In comparison with control rats (n = 30), diabetic rats (n = 32) had a higher mortality in the first 20 minutes after acute coronary artery ligation (78% vs 53%; p less than 0.05 by chi 2 test). Creatine kinase-MB isoenzyme activity tended to increase less in surviving diabetic rats than in their non-diabetic counterparts. Moreover, blood samples collected a few minutes before the surgical procedure showed that diabetic rats dying within the first 20 minutes (n = 25) had higher mean (SEM) plasma glucose concentrations (26.9(0.5) vs 23.4(1.2) mmol X litre-1; p less than 0.01) and lower mean(SEM) plasma insulin concentrations (20(1) vs 26(2) mU X litre-1; p less than 0.05) than those (n = 7) that survived that critical period.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗