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Intraaccumbens dopaminergic lesion suppresses desipramine effects in the forced swim test but not in the neuronal activity of lateral septal nucleus.

The nucleus accumbens (NAcc) function is related to locomotor activity, while the lateral septal nucleus (LSN) is related to the motivational aspects of behavior. Thus, a dopaminergic lesion of the NAcc blocks the antiimmobility effect of desipramine (DMI) and this tricyclic increases the firing rate of the LSN; however, it is unknown whether a relation exists between a dopaminergic lesion of the NAcc and the response of LSN neurons to DMI treatment. Therefore, we conducted a longitudinal study to further explore the participation of NAcc dopaminergic terminals in the immobility reduction exerted by DMI in the forced swim test and its relation to the firing rate of the LSN, at the same time exploring motor and motivational aspects of DMI-dopaminergic relationships in the animals. A dopaminergic lesion was bilaterally produced by 6-hydroxydopamine (6-OHDA) injection into the NAcc of adult ovariectomized Wistar rats pretreated with DMI (25 mg/kg ip, 30 min before lesion to protect NA terminals but to destroy DA endings). Treatments with DMI or saline began 24 h after stereotaxic surgery. The results showed that DMI once a day during 9 days (10 mg/kg) reduced immobility in the forced swim test in the sham-lesion group (P<.02); however, in the dopaminergic lesion group submitted to DMI treatment, immobility remained at control level in agreement with other reports. DMI increased the firing rate of the LSN (P<.001) independently of the 6-OHDA lesion. In conclusion, the dopaminergic terminals of the NAcc seem to be essential for the motor manifestation associated with motivation induced by DMI in the forced swim test, given that the antiimmobility actions of DMI are blocked after a dopaminergic NAcc lesion; however, the effect on the firing rate of LSN neurons is still present.

Animals↗

Desipramine restricts estral cycle oscillations in swimming.

1. Desipramine (DMI) is a tricyclic antidepressant which reduces the immobility in rats forced to swim; however, it is unknown whether estral cycle phases impinge on DMI actions on immobility in daily swimming tests during several weeks. 2. In female wistar rats, vaginal smears taken before testing defined four estral phases. Afterwards, the authors assessed the latency for the first period of immobility in five-min forced swim tests practiced on 21-day DMI (DMI group), 21-day washout saline given after a 21-day DMI treatment (washout-saline group), or non-treated rats (control group). 3. We observed a longer latency for the first period of immobility in proestrus-estrus from the control and washout-saline groups. The 21-day treatment with DMI (2.1 mg/kg i.p., once a day) significantly (p < 0.001) increased the latency by about 160% from control regardless of the estral cycle phase. 4. It is concluded that proestrus-estrus relates to increased struggling behavior. DMI enhances struggling behavior independently of hormonal state.

Animals↗

Identified neurons and leech swimming behavior.

Since the experiments of Nicholls and Baylor, the initial characterization of identified neurons has provided significant insight into the circuitry transforming mechanosensory input into the motor output of swimming. From physiological characterization of only a small percentage of cells within the leech CNS, we have gained important information about how the decision to swim is processed and how the rhythmic motor pattern is generated. While many of the synaptic connections in the swim-generating circuit have been identified, the elucidation of the biophysical and biochemical mechanisms underlying these connections has only recently begun. The observation that constant input can result in variable motor output suggests that, in addition to describing a cell's identity in terms of structure and function, factors such as behavioral context and the "internal state" of the nervous system must also be considered. As circuits controlling other behaviors become known, one can examine the interactions between these networks to understand issues of behavioral choice at the level of identified neurons. The leech CNS has expanded our understanding of how the nervous system produces behavior and continues to serve as an excellent model in this endeavor.

Animals↗

Ion channels and the control of swimming in the Xenopus embryo.

The Xenopus embryo has been well studied and the circuitry underlying motor pattern generation largely elucidated. We have extended this analysis by determining the roles of individual voltage- and ligand-gated ion channels in controlling the motor pattern for swimming and two mechanisms that control rundown of this pattern. Xenopus embryo spinal neurons possess at least six classes of ion channel: a fast Na+ channel; a mixture of kinetically similar Ca2+ channels; a fast K+ channel; a slow K+ channel; a Na(+)-dependent K+ channel; and a slowly activating Ca2(+)-dependent K+ channel. The roles of the voltage-gated currents in determining neuronal firing properties and operation of the locomotor circuitry have been examined both pharmacologically and in realistic computer simulations. Model neurons fire repetitively in response to current injection. The Ca2+ current seems essential for repetitive firing. The fast K+ current appears mainly to control spike width, whereas the slow K+ current exerts a powerful influence on repetitive firing. These predictions from the model have been confirmed by the use of specific pharmacological blockers of the fast and slow K+ currents. Both the model network and the real spinal locomotor circuit appear to tolerate a wide variation in the relative strengths of the component synapses but are very sensitive to the magnitudes of the voltage-gated currents. In particular the slow K+ current, despite being a small component of the total outward current, plays a critical role in stabilizing the motor pattern. Like many other rhythmic motor patterns, swimming in the Xenopus embryo is episodic; it undergoes run-down and self-termination even in the absence of sensory inputs. The slow Ca2(+)-dependent K+ current appears to play a role in the self-termination of swimming. However, intrinsic modulation mediated by the release of ATP and production of adenosine in the extracellular space appears to be a very powerful determinant of run-down of the motor pattern.

Animals↗

Susceptibility to abnormal (kinetotic) swimming fish correlates with inner ear carbonic anhydrase-reactivity.

Larval cichlid fish (Oreochromis mossambicus) were kept at hypergravity (hg; centrifuge) for 6 h. Following the transfer to 1 g (i.e. stopping the centrifuge), animals were separated into normally and abnormally (kinetotic) swimming individuals (the latter were swimming kinetotically, i.e. performing spinning movements). Subsequently, carbonic anhydrase- (CA-) reactivity was histochemically demonstrated and densitometrically determined in inner ear maculae. It was found that both the total macular CA-reactivity as well as the difference in reactivates between left and right maculae were significantly lower in normally swimming hg-animals as compared to the kinetotically behaving hg-fish (P<0.0001). This result is in complete agreement with closely related studies carried out on the calcium incorporation of inner ear otoliths and indicates that a regulatory mechanism, which adjusts otolithic calcium carbonate incorporation towards the gravity vector, acts via activation/deactivation of macular CA.

Acoustic Maculae↗

Argyrophilic dark neurons distribute with a different pattern in the brain after over hours treadmill running and swimming in the rat.

Argyrophil III staining is a useful method for the detection of dark neurons (DNs) that would reflect an early cytopathic feature. We examined the appearance of DNs following the stressful exercises (0.5-3 h swimming in a pool of 25-45 cm depth; 1-2 h running on a treadmill at the speed of 600-1200 cm/min) in the rat. After the swimming, DNs were detected in the hippocampus (CA1-2 pyramidal cell layer, oriens layer), somatosensory cortex, entorhinal cortex, hypothalamus, habenular nucleus, amygdaloid nucleus, striatum, accumbens and sometimes in lateral septal nucleus. After the running, DNs appeared in the visual cortex, deepest layer of area 17 and 18a, motor cortex, red nucleus, somatosensory cortex, entorhinal cortex, and hippocampus (dentate gyrus). Thus, the DNs appeared mainly in the limbic structure after the swimming, and in the limbic structure, motor-related regions and visual cortex after the running. Further, the number of the DNs and the extent of area where they distributed were dependent on the strength and the duration of the exercises. In hematoxylin-eosin (H-E) staining, we often detected pycnotic cells (dark stained soma) in CA1 hippocampus where argyrophil positive cells were most abundant. The picnotic cells were not so common in other areas. Data suggest that DNs are induced by stressful exercises. They might reflect an early cell injury following stress and overexcitation.

Animals↗

Antidepressant-like actions of pregnancy, and progesterone in Wistar rats forced to swim.

In rats, some behavioral changes occurring during pregnancy related to the presence of progesterone may be analyzed in the forced swimming task (FST), which is designed to test the antidepressant profile of drugs. The present study was aimed to analyze in pregnant rats, in rats after delivery, or in rats after receiving progesterone those behavioral changes displayed in the FST. We hypothesize that pregnancy and progesterone will produce antidepressant-like effects in rats forced to swim. Therefore, pregnant rats (14th, 17th, and 20th days), or rats after delivery (3rd, and 7th days) were tested in the FST. Ovariectomized rats receiving saline (0.9%; i.p.), clomipramine (1.25 mg/kg; i.p.), or desipramine (2.14 mg/kg; i.p.) for 28 days were also tested in the FST. In a second series of experiments, ovariectomized rats receiving vehicle or progesterone (0.5 mg/kg; or 2.0 mg/kg; sc.) were tested in the FST. Locomotion was evaluated in the open field test. Results showed that in the FST: 1) pregnancy (P < 0.05), or progesterone (P < 0.05), or desipramine (P < 0.05), reduced immobility by increasing climbing; 2) clomipramine (P < 0.05) reduced immobility by increasing swimming; 3) rats tested after delivery displayed similar behavior than control rats. A lower locomotion was observed only at the end of pregnancy. In conclusion, results suggest that during pregnancy, a reproductive process characterized by its high levels of progesterone, antidepressant-like effects can be found.

Animals↗

Development of antinociceptive tolerance and changes of opioid receptor ligand binding in central nervous system of the mouse forced to single and repeated swimming in the cold water.

The present study was designed to characterize underlying mechanism involved in the development of tolerance in the production of antinociceptive effect induced by repeated cold water swimming stress (CWSS) using the tail-flick test. Mice were forced to swim at 4 degrees C for 3min and the tail-flick test was performed 5, 10, 20, and 30min after the swimming. The profound antinociception was induced by a single CWSS. However, when the mice were exposed to CWSS repeatedly seven times, they showed a tolerance in the production of antinociception. In the opioid receptor binding study, Bmax of delta opioid receptor (DOR) was decreased in the brainstem, midbrain and the spinal cord areas by both a single and repeated CWSS, without altering Kd value. However, Bmax values of mu opioid receptor (MOR) and kappa opioid receptor (KOR) were increased in the brainstem, midbrain and spinal cord regions by repeated CWSS, without changing Kd values. Our results suggest that the development of tolerance in the production of antinociception in mice forced to the repeated CWSS may be, at least, due to the reduction of DOR number in the brainstem, midbrain and the spinal cord regions.

Analgesics↗

Role of 5-HT(1A) and 5-HT(1B) receptors in the mediation of behavior in the forced swim test in mice.

The purpose of this study was to further examine the effect of activation of 5-HT(1A) and 5-HT(1B) receptors in the forced swim test in mice and to determine if activation of these receptors played a role in the mediation of the effects of the tricyclic antidepressant imipramine. The 5-HT(1A) agonist 8-OH-DPAT decreased immobility in the forced swim test in mice as previously described. Both the selective 5-HT(1B) agonist anpirtoline (1.25-5 mg/kg) and mixed 5-HT(1A/B) agonist RU24969 (0.6-2.5 mg/kg) significantly increased time spent swimming in the FST.

8-Hydroxy-2-(di-n-propylamino)tetralin↗

Strain differences in the behavioral effects of antidepressant drugs in the rat forced swimming test.

Wistar-Kyoto (WKY) rats provide a model of stress-induced depressive behavior, because they show enhanced vulnerability to the effects of stressors. The present study examined differences in the behavioral response to different types of antidepressant drugs between WKY and Sprague-Dawley (SD) rats in the forced swimming test (FST). WKY rats displayed significantly greater immobility than SD rats during their exposure to the FST. The noradrenergic antidepressant, desipramine, produced a dose-dependent reduction of immobility and increase of climbing behavior in the SD rats. In WKY rats, desipramine reduced immobility at a lower dose and produced increases of both swimming and climbing behavior. The serotonergic compounds, fluoxetine and 8-OH-DPAT, produced dose-dependent reductions of immobility and increases of swimming behavior in the FST in SD rats, but the response to the serotonergic drugs were blunted in WKY rats. These results indicate that genetic or constitutive differences may determine the distinct behavioral profiles for antidepressant compounds with selective pharmacological effects in different rat strains, and these effects may be related to genetic heterogeneity of antidepressant responses in depressed patients.

8-Hydroxy-2-(di-n-propylamino)tetralin↗

Severe allergic contact eyelid dermatitis caused by swimming goggles.

BACKGROUND: Contact dermatitis of the eyelids is the most common cutaneous reaction that affects the eyelids. It is frequently caused by the cosmetics used on face, hair, and fingernails. Rarely, eyelid contact dermatitis can be caused by direct contact with either irritant or allergen. OBJECTIVE: To report a case of severe eyelid dermatitis caused by swimming goggles. METHODS: Patch skin tests were performed in duplicate using a small piece of black rubber foam padding from the swimming goggles. Allergy skin prick tests for inhalant aeroallergens were also performed. RESULTS: The results of the patch skin tests were strongly positive. The results of allergy skin prick tests for inhalant aeroallergens were positive for both seasonal and perennial aeroallergens. CONCLUSIONS: This case illustrates that sensitization to the black, foam rubber padding on swimming goggles can occur after long-term contact with the goggles and should be considered in the differential diagnosis of eyelid dermatitis in an appropriate setting.

Dermatitis, Allergic Contact↗

Review: Analysis of the evolutionary convergence for high performance swimming in lamnid sharks and tunas.

Elasmobranchs and bony fishes have evolved independently for more than 400 million years. However, two Recent groups, the lamnid sharks (Family Lamnidae) and tunas (Family Scombridae), display remarkable similarities in features related to swimming performance. Traits separating these two groups from other fishes include a higher degree of body streamlining, a shift in the position of the aerobic, red, locomotor muscle that powers sustained swimming to a more anterior location in the body and nearer to the vertebral column, the capacity to conserve metabolic heat (i.e. regional endothermy), an increased gill surface area with a decreased blood-water barrier thickness, a higher maximum blood oxygen carrying capacity, and greater muscle aerobic and anaerobic enzyme activities at in vivo temperatures. The suite of morphological, physiological, and biochemical specializations that define "high-performance fishes" have been extensively characterized in the tunas. This review examines the convergent features of lamnid sharks and tunas in order to gain insight into the extent that comparable environmental selection pressures have led to the independent origin of similar suites of functional characteristics in these two distinctly different taxa. We propose that, despite differences between teleost and elasmobranch fishes, lamnid sharks and tunas have evolved morphological and physiological specializations that enhance their swimming performance relative to other sharks and most other high performance pelagic fishes.

Adaptation, Biological↗

Cytogenetic comparison of the sensitivity to mutagens in mice selected for high (HA) and low (LA) swim stress-induced analgesia.

Sensitivity to mutagens was studied in mouse lines selectively bred for high analgesia (HA) and for low analgesia (LA) induced by 3-min swimming in 20 degrees C water. Apart from pain-related traits HA mice also manifest, as compared to the LA line, higher emotionality in various behavioural tests, and cope worse with the hypothermic challenge of swimming in cold water. In the present study HA mice appeared more susceptible to the mutagenic effect of whole-body gamma-radiation and mitomycin-C injection. Both treatments caused higher frequencies of chromosomal aberrations and micronucleus in bone marrow cells in the HA than in the LA line. The results are discussed in terms of a genetic correlation between animals' susceptibility to environmental stressors and the mechanism of mutagenesis. As shown by our recent molecular study, the selection for magnitude of swim analgesia has differentiated the parental outbred population into two distinct genotypes characterised by specific minisatellite and microsatellite sequences for each line, which may be genetic markers of particular traits. We conceive that the breeding strategy, along with the differentiation of stress-related phenomena, has altered the frequencies of genes controlling DNA repair in each line.

Analgesia↗

A multistage shuttle swim test to assess aerobic fitness in competitive water polo players.

A 10m multistage shuttle swim test (MSST) was designed for the assessment of aerobic fitness of competitive water polo players. Test-retest reliability was determined using a sample of 22 female and 22 male trained water polo players. An intraclass correlation coefficient of 0.99 (p>0.05) was calculated between the two test scores. The technical error of measurement for the test was 2.3 shuttles or 5.0%. The validity of the test was determined using a sample of 13 female and 12 male water polo players. A validation correlation coefficient of 0.88 resulted between the number of shuttles completed during the MSST and VO2max [litres/body surface area/ minute (l x BSA-1 x min-1)] measured during an incremental tethered swim test to exhaustion. A stepwise multiple regression revealed that VO2max (l x BSA-1 x min-1) accounted for approximately 78% of the MSST variance. It was concluded that the 10m multistage shuttle swim test is a reliable and valid field test of aerobic fitness for use with trained water polo players.

Adolescent↗

Performance enhancement in swimming: the effect of mental training with biofeedback.

In this study, the relationship between mental training with biofeedback and swimmers' performance was investigated. The Wingate five-step approach was used as a mental preparation technique for enhancing the performance among 16-18 year-old pre-elite swimmers. Participants (n = 40) were randomly assigned to one of two conditions: (a) experimental--regular training plus the Wingate 5-step mental training program (adapted for swimming), and (b) control--regular training plus relaxing activities. After a baseline measurement, participants were tested on running and swimming five times during a 10-week period. Results indicated that the experimental group improved its performance over time on both running and swimming, with improvement being most substantial during transformation and realisation (steps 4 and 5). In contrast, the control group remained relatively stable on both dependent measures. Results are discussed in reference to previous work on the 5-step approach, including several methodological and theoretical aspects that are particularly relevant to the use of such interventions with other athletic tasks and populations.

Adolescent↗

The laryngectomee and swimming.

Following laryngectomy patients are usually advised that swimming is no longer possible. Under supervised conditions and using a swimming aid, such as described, a laryngectomee may return to an activity previously considered unavailable, rehabilitation thus being more complete. However, for a laryngectomee to proceed a safe supervised environment is required, and the path to this goal is often long and arduous, but with persistent dedication the Laryngectomy Swimming Club may become a reality bringing rich reward.

England↗

An outbreak of cryptosporidiosis associated with a resort swimming pool.

An outbreak of cyptosporidiosis occurred in late April 1993 among resort hotel guests which was temporally associated with, but geographically distant from, a massive waterborne outbreak of cryptosporidiosis in Milwaukee, Wisconsin, that occurred in late March and early April of 1993. A case-control study was performed among groups with members who reported illness and among a systemic sample of groups who stayed at the resort hotel during the risk period. Of 120 persons interviewed, 51 (43%) met the case definition. Swimming in the resort hotel's pool was significantly associated with case status (OR = 9.8; 95% Cl 3.4, 29.7), as was consumption of ice from the hotel's ice machines (OR = 2.3; 95% Cl 1.01, 5.2). When analysis was restricted only to laboratory-confirmed cases and controls, swimming pool use was the only risk factor significantly associated with illness (OR = 13.0; 95% Cl 2.6, 88.7). Following waterborne outbreaks of cryptosporidiosis associated with water supplies, swimming pools should be considered as possible ongoing sources for transmission regionally.

Adolescent↗

Outbreak of Pseudomonas aeruginosa folliculitis associated with a swimming pool inflatable.

On 18 February 2002, the Communicable Disease Unit was notified by the local Public Health Service Laboratory of a child with a positive skin swab for Pseudomonas aeruginosa. This child had attended the local swimming pool and played on an inflatable, subsequently presenting to a Primary Care Nurse Practitioner with folliculitis. A total of 35 cases was identified during the outbreak. This paper describes a case-control study and microbiological sampling of the cases, the suspected inflatable and a survey of 10 swimming pool inflatables in the local area. The odds ratio for developing folliculitis following use of the inflatable was 12 (95% CI 1.05-136.80). The strain of P. aeruginosa found on the inflatable was identical to that obtained from skin swabs of cases. Nine of 10 (90%) of the inflatables sampled were colonized by P. aeruginosa. Attention should be given to the problem of routine decontamination of swimming pool inflatables. P. aeruginosa folliculitis needs to be considered in the differential diagnosis of skin rashes in children, especially in Primary Care.

Case-Control Studies↗