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Reactivation of oral-lingual herpes by chlorinated swimming pool water: a case report.

The authors describe the case of a highly stressed 36-year-old man who experienced ten or more painful episodes per year of recurrent oral-lingual herpes simplex virus 1, which were only partially responsive to acyclovir therapy for three years. A three-year diary of activities, personal stresses, concurrent infections, local trauma, and other possible psychogenic, somatogenic, and environmental events was used systematically to attempt to pair the stresses with the recurrent herpes episodes. Chlorinated swimming pool water seems to have been the triggering agent of the recurrent herpes simplex virus 1 episodes due to its temporal correlation and the greater than twenty-four-month asymptomatic period after the patient discontinued swimming in chlorinated water, but continued to swim in fresh and salt water, along with his normal pursuit of all other activities and habits.

Adult↗

Ventilation tubes, swimming and otorrhoea: a New Zealand perspective.

OBJECTS: To compare advice given by specialist otolaryngologists to patients following ventilation tube insertion and the management of purulent otorrhoea in these patients. METHODS: A postal questionnaire was sent to all 59 specialists currently listed in the New Zealand Otolaryngology Specialist Register. RESULTS: 96.5% of specialist otolaryngologists replied, 88% in sufficient detail for analysis in this study. The vast majority (96%) allowed patients to swim with tubes in situ, and all allowed hair washing. Advice for ear protection varied. If otorrhoea develops with ventilation tubes in situ, 90% of specialists advise patients to stop swimming, but allow hair washing to continue with ear protection. Ninety percent of specialists' initial treatment of otorrhoea involves a combination of suction toilet and topical steroid/antibiotic drops. CONCLUSION: In general, specialist otolaryngologists in New Zealand give similar advice to patients with ventilation tubes. However, the specific methods of ear protection advised when swimming and hair washing varies markedly.

Amoxicillin↗

Flow velocity in carotid artery in humans during immersions and underwater swimming.

Heart rate and flow velocity in the common carotid artery were examined on eight subjects in various underwater conditions. The heart rate decreased more markedly during whole-body immersion than during head-out immersion. The end-diastolic flow velocity and the flow-velocity integral in a cardiac cycle during whole-body immersion increased more markedly than during head-out immersion. Differences in heart rate and flow velocity were not detected between sitting and prone positions in whole-body immersion. Heart rate increased at the beginning and after underwater swimming. The peak systolic flow velocity increased significantly after the end of underwater swimming. The flow-velocity integral in a cardiac cycle decreased during underwater swimming, but in a minute did not change significantly. These results suggest that facial immersion is important in eliciting pronounced carotid artery flow-velocity response in addition to the heart-rate response and that underwater exercise influences these responses. However, underwater posture apparently does not influence them.

Adult↗

Thermographic evaluation of the relative heat loss by area in man after swimming.

Regional differences in skin temperature (Ts) were determined by infrared radiography in four competitive swimmers of varying body compositions, prior to, after 5 min of immersion in water (Tw) at 23.5 degrees C, and after a 500-m freestyle swim at a training pace. Decreases in skin temperature that correlated with skinfold thickness were seen post-immersion (r = 0.56, p less than 0.05). After swimming, skin temperatures were highest in regions overlying active muscle masses and were independent of skinfold thickness. These regions were the deltoids, trapezius, triceps and biceps brachi, and pectorals. Swimming increased the extent of warmer skin surface areas and gradient Ts-Tw, over which heat loss could occur.

Adolescent↗

Changes in body composition and daily energy expenditure induced in rats during eight weeks of daily swim training.

The body weight, body composition, and daily (post-exercise) energy expenditure of five groups of male rats were examined following 1, 2, 4, 6 or 8 weeks of daily (1 h) swim training. Rats that swam daily weighed less than sedentary controls and had smaller adipose and lean tissue masses. The size of these body weight and composition changes grew as daily training progressed. Relative to sedentary rats, the 24 h (post-exercise) expenditure of swim-trained rats, expressed either per BW0.75kg or per g of body protein, was significantly higher after two weeks of daily training. This training-induced elevation in daily (post-exercise) expenditure likewise grew larger as training continued. After eight weeks, rats that swam, although now maintaining significantly smaller lean and adipose masses, expended more calories daily (post-exercise) than sedentary rats (42.2 vs. 39.2 kcal/day respectively). Thus, though exercise-induced elevations in expenditure have been associated with an increased lean tissue mass, other factors are apparently responsible for the progressive elevation (from sedentary levels) of 24 h expenditure found here with extended daily swim training.

Adipose Tissue↗

Children's readiness for learning front crawl swimming.

This study attempted to establish whether an optimal age could be identified at which children were ready to learn the front crawl swimming stroke. The variables examined were: the number of lessons, the age of commencing lessons and the time duration for learning to swim 10m front crawl (Level 3). Longitudinal records of 326 children, aged between 2 and 8 years, were analysed using General Linear Model two-way (Age x Sex) analysis of variance procedures. The main effect for age was significant (p < 0.001) for all three variables. Post hoc analysis revealed that the children who started at 5 years of age received significantly fewer number of lessons and took shorter duration compared to those who commenced learning to swim at an earlier age. Whether pupils started lessons at 2, 3 or 4 years of age, they achieved Level 3 at approximately the same mean age of 5 1/2 years. The optimal readiness period was identified in this study to be between 5 and 6 years of age. There was little evidence of gender differences for all three variables.

Age Factors↗

Dynamics of the vortex wakes of flying and swimming vertebrates.

The vortex wakes of flying and swimming animals provide evidence of the history of aero- and hydrodynamic force generation during the locomotor cycle. Vortex-induced momentum flux in the wake is the reaction of forces the animal imposes on its environment, which must be in equilibrium with inertial and external forces. In flying birds and bats, the flapping wings generate lift both to provide thrust and to support the weight. Distinct wingbeat and wake movement patterns can be identified as gaits. In flow visualization experiments, only two wake patterns have been identified: a vortex ring gait with inactive upstroke, and a continuous vortex gait with active upstroke. These gaits may be modelled theoretically by free vortex and lifting line theory to predict mechanical energy consumption, aerodynamic forces and muscle activity. Longer-winged birds undergo a distinct gait change with speed, but shorter-winged species use the vortex ring gait at all speeds. In swimming fish, the situation is more complex: the wake vortices form a reversed von Kármán vortex street, but little is known about the mechanism of generation of the wake, or about how it varies with speed and acceleration or with body form and swimming mode. An unresolved complicating factor is the interaction between the drag wake of the flapping fish body and the thrusting wake from the tail.

Animals↗

Interactions between muscle activation, body curvature and the water in the swimming lamprey.

The travelling wave of curvature which propels a fish forward arises from the interaction of the patterns of motoneurone activity generated by the spinal cord with the mechanical properties of (1) the muscle, (2) the skin, bone and connective tissues of the body, and (3) the water in which it is swimming. Furthermore, in the lamprey, a powerful feedback system has been demonstrated which allows local body curvature to influence the timing of the activity pattern generated by the spinal cord. The relative timing between activation and curvature are illustrated for both closed- and open-loop conditions, using data from intact swimming lampreys and from an in vitro preparation of lamprey spinal cord and notochord. The mechanical behaviour of a lamprey has been simulated with a mathematical model based on springs, dashpots, light rods, point masses and power units incorporating properties of lamprey muscle. Results are presented which illustrate the behaviour of a lamprey out of water. To anticipate the inclusion of the lamprey body model in the computation of the fluid dynamics, a hydrodynamical model has been developed in which the body motion and the forward swimming have been prescribed by mathematical functions. Results are presented to illustrate the hydrodynamic vortex structure as predicted by a two-dimensional, time-dependent numerical solution of the Navier-Stokes equations, including both viscous and inertial terms.

Animals↗

Maximal lactate values following competitive performance varying according to age, sex and swimming style.

Peak blood lactate concentration for a given individual in a given event could be considered as indicator of exercise effort, especially if the race is fast as it occurs following competitive swimming events. The present study attempts to describe the postcompetition lactate profile across all the swimming distances and strokes according to the age and sex of the swimmer. Blood samples (100 micro lambda) were taken from an arterialized fingertip of a total of 337 swimmers (171 males and 166 females) at the end of 3rd and 6th minutes of competition over 50 to 1500 meter distances and for the following 3 age group divisions: AGE1 = > 18 years of age, AGE2 = 16-17 years of age and AGE3 = 14-15 years of age. For AGE1 group the subjects who were picked up for testing were all the first three who met the criteria for this age category in the OPEN winter and summer National and Provincial Championships. For AGE2 and AGE3 groups the subjects who were picked up for testing were ranked among the first three in their age group winter and summer National and Provincial Championships. Results showed that the highest mean peak lactate values for groups AGE2 and AGE3 were recorded in 200 medley event for both sexes while for group AGE1 the highest mean peak lactate value was recorded in 200 and 400 meter medley events for males and females respectively. On the other hand, the lowest mean lactate value was recorded in long distance events of 1500 and 800 meters for males and females respectively and for all the age group divisions. Furthermore, swimming performance was related to peak lactate values which subsequently was independent of sex but dependent on age with higher lactate values and older age documented by the subjects with faster times.

Adolescent↗

Clomipramine modifies fluctuations of forced swimming immobility in different phases of the rat estrous cycle.

Many symptoms that define the premenstrual syndrome (PMS) are present in depressive states. The fact that there are not adequate animal models to study the PMS may explain the lack of knowledge about its etiology. An alternative might be the use of animal models which are useful to study depression, such as the forced swimming test. Eighteen female rats were subjected to the forced swimming test once a week for six consecutive weeks. An increase of immobility was observed during diestrus as compared to estrus. On the other hand, some premenstrual symptoms have been suggested to be caused by the influence of gonadal hormones on the activity of central serotonergic systems. Thus, the effects of clomipramine were further studied. The drug reduced rat immobility during diestrus, so that the differences between the two estrous cycle phases disappeared. We conclude that the use of the forced swimming test might be a helpful model in the study of PMS.

Animals↗

[Relationship between learning behavior and genetic factor on immobility shown during forced swimming test].

The relationship between learning and genetic factor on immobility in mice during a forced swimming test (FST) has been studied. The duration of immobility during the FST did not change significantly after the administration of either scopolamine (2.5 mg/kg, ip) or cyclohexamine (150 mg/kg, ip), although both drugs produced impairment in the learning task. This suggests that the increase in immobility observed during the second trial of the FST may not be related to learning which could occur during the first trial. Concerning the strain difference, first, the duration of immobility in C3H mice was shorter than that in ICR, ddY, C57BL and BALB mice. Second, after receiving shock stress in a box, ICR, ddY and C57BL mice, but not C3H mice showed a marked decrease in locomotor activity when placed in the box again without shock. Also during the FST, both C57BL and ddY mice, but not C3H mice showed prolongation of immobility and reduction in swimming after shock stress. The changes in locomotor activity, and immobility and swimming during the FST caused by shock stress in ddY mice recovered to normal levels after treatment with imipramine. From these results, it is suggested that the immobility shown during the FST, which may be independent of learning and dependent on some genetic factor, is a suitable model of depression in animals.

Animals↗

Inescapable shocks accentuate fluctuations of forced swimming immobility in different phases of the rat estrous cycle.

The forced swimming test is an animal model that is sensitive to the different antidepressant treatments. On the other hand, it is also sensitive to the characteristic changes suffered by animals that have been previously exposed to different depression models. In the present study we explored the effects of inescapable shocks on the forced swimming test, during different phases of the rat estrous cycle. There was an increase of the immobility during diestrus as compared to estrus. Furthermore, inescapable shocks increased the immobility, but only during diestrus. Thus, the differences found between both phases of the estrous cycle were accentuated. Due to the fact that during diestrus there is an absence of progesterone, and that depressed women exacerbate their symptoms during the premenstrual phase, the authors suggest that the immobility registered during the forced swimming test may be useful in the study of premenstrual depression.

Animals↗

Antidepressant-like properties of some serotonin receptor ligands and calcium channel antagonists measured with the forced swimming test in mice.

This study has examined the effects of 8-hydroxy-2-(di-n-propylamino)-tetralin (8-OH-DPAT), buspirone, nifedipine and verapamil on duration of immobility in the forced swimming test in mice. The 5-HT1A agonist-8-OH-DPAT (0.25, 0.5, 1 mg/kg) and dihydropyridine calcium channel antagonist-nifedipine (10 mg/kg) produced decreases in immobility time. These effects were similar to those of the tricyclic antidepressant-imipramine (5 and 10 mg/kg). Non-dihydropyridine calcium channel antagonist-verapamil (10 and 20 mg/kg) had no effect on immobility time. The non-benzodiazepine anxiolytic and 5-HT1A agonist-buspirone (1 mg/kg) when given in a single injection or as repeated treatment, did not exert antidepressant-like activity in the forced swimming test. Pretreatment with dopamine antagonist-haloperidol (0.5 mg/kg) significantly antagonized the effects of 8-OH-DPAT (1 mg/kg), imipramine (10 mg/kg) and nifedipine (10 mg/kg). Pretreatment with benzodiazepine anxiolytic-diazepam (2 mg/kg) antagonized the effect of imipramine (10 mg/kg) but not that of 8-OH-DPAT (1 mg/kg) or nifedipine (10 mg/kg). Neither haloperidol nor diazepam produced any effects in this test. Single or repeated administration of buspirone (1 mg/kg) did not alter the reduction of immobility time produced by imipramine (10 mg/kg). These results suggest that 5-HT1A agonists and dihydropyridine calcium channel blockers may have antidepressant efficacy in the forced swimming test, but the effects of buspirone and 8-OH-DPAT may be mediated via different mechanisms. These results also indicate that the relationship between serotonin and dopamine neurons may play a role in the action of antidepressant drugs. In addition, the interactions involving both GABAergic and serotoninergic processes exist between benzodiazepine anxiolytics and some antidepressants.

Animals↗

Analysis of force generation during flagellar assembly through optical trapping of free-swimming Chlamydomonas reinhardtii.

Many studies have used velocity measurements, waveform analyses, and theoretical flagella models to investigate the establishment, maintenance, and function of flagella of the biflagellate green algae Chlamydomonas reinhardtii. We report the first direct measurement of Chlamydomonas flagellar swimming force. Using an optical trap ("optical tweezers") we detect a 75% decrease in swimming force between wild type (CC124) cells and mutants lacking outer flagellar dynein arms (oda1). This difference is consistent with previous estimates and validates the force measurement approach. To examine mechanisms underlying flagella organization and function, we deflagellated cells and examined force generation during flagellar regeneration. As expected, fully regenerated flagella are functionally equivalent to flagella of untreated wild type cells. However, analysis of swimming force vs. flagella length and the increase in force over regeneration time reveals intriguing patterns where increases in force do not always correspond with increases in length. These investigations of flagellar force, therefore, contribute to the understanding of Chlamydomonas motility, describe phenomena surrounding flagella regeneration, and demonstrate the advantages of the optical trapping technique in studies of cell motility.

Animals↗

Three-dimensional bend propagation in hamster sperm models and the direction of roll in free-swimming cells.

Iontophoretic application of ATP to the flagellum of the demembranated hamster spermatozoon produced a planar pair of bends at the two ends of the stimulated site. During bend propagation, torsion appeared in the vicinity of the interbend in some responses such that the distal bend was twisted clockwise when viewed from the base of the flagellum. This pattern of propagation is consistent with the instantaneous configurations of free-swimming cells previously described. The technique used here establishes that the three dimensionality arises from propagation per se, and does not depend on forces developed during swimming. The rolling of both free-swimming intact and demembranated spermatozoa was examined by two-color darkground videomicroscopy and the direction of rotation was, as predicted, always anticlockwise. A hypothetical mechanism, involving differential speeds of propagation of active sliding within the active microtubule subset, is proposed to account for the observed waveforms.

Adenosine Triphosphate↗

Rotational and translational swimming of human spermatozoa: a dynamic laser light scattering study.

The rotational swimming motion of human spermatozoa is evaluated from measurements of depolarized dynamic laser light scattering at zero angle. The analysis is based on a Maxwellian angular velocity distribution and yields a rotational frequency of about 4 Hz that is ascribed to the rotation of the sperm head. From comparison with the translational swimming motion, a propelling efficiency of about 10 micron per turn is deduced. This parameter describes the linkage between the rotational and translational swimming motion and is likely to be discriminatory in the analysis of physiological and pathological sperm motions.

Cell Movement↗

Presence and possible function of root effect hemoglobins in fishes lacking functional swim bladders.

The adult hemoglobins of 15 species of teleost and the midgestation fetal hemoglobin of the seaperch Embiotoca lateralis show a pronounced decrease in oxygen-carrying capacity at low pH, a Root effect. All of these fishes lack a functional swim bladder, which is generally thought to be the likely site of Root effect hemoglobin function. All of the teleosts examined, including the fetal sea perch, however, have a choroid rete, a structure that is proposed to be involved in oxygen secretion to the eye. The data are inconsistent with the generalization that only fishes with swim bladders possess Root effect hemoglobins, and that the only function of Root effect hemoglobins is in the secretion of oxygen to a swim bladder. The data for the fishes examined in this study suggests that a better correlation may exist between Root effect hemoglobins and the presence of a choroid rete. This is consistent with the hypothesis that Root effect hemoglobins may be involved in the physiology of the eye in many fishes.

Air Sacs↗

Superoxide dismutase, catalase, and glutathione peroxidase in the swim bladder of the physoclistous fish, Opsanus tau L.

The antioxidant enzymes superoxide dismutase, glutathione peroxidase, and catalase were measured in the rete mirabile and gas gland epithelium area of the swim bladder of the toadfish Opsanus tau. When the concentration of enzyme in the swim bladder was compared with the concentration in other organs (kidney, heart, gills) of the same fish, the swim bladder was found to have the highest concentration of superoxide dismutase but relatively low levels of glutathione peroxidase and catalase. Cytochemical assay for the peroxidatic activity of catalase confirmed that virtually no catalase is present in epithelial cells of the gas gland. A similar assay for peroxidase revealed a cyanide-sensitive peroxidase in the multilamellar bodies of these cells. Most of the catalase and peroxidase in the rete mirabile appears to be confined to the granules of neutrophils and the cytoplasm of erythrocytes. Enzyme activity in the neutrophils is not inhibited by 10(-1) M KCN. Cyanide does not appear to inhibit the peroxidase activity in erythrocytes but has little effect on catalase in these cells.

Air Sacs↗