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The purpose of this paper was to confront some selected physiological parameters that describe aerobic capacity with young swimmers’ sports achievements. For the study, some athletes with the average age of 14.67, who train swimming at the SMS Szczecin Club, were selected. A progressive test of their oxygen power was performed in order to determine their aerobic capacity, with the means of the European Ranking (LEN). Each swimmer’s sports level was presented in points [pts.]. The swimmers’ characteristics were presented as divided into three groups: (S) – short-distance specialization, (M) – medium-distance specialization and (L) – longdistance specialization. In group (S), maximum oxygen consumption – VO2max [l/min] achieved the levels of 3.95 [l/min] (male swimmers) and 2,77 [l/min] (female swimmers); in group (M) – 4.12 [l/min] and 2.97 [l/min], respectively; and in group (L) – 4.14 [l/min] and 3.338 [l/min]. Among male swimmers, level of VO2max [ml/kg/min] equaled 58.96 – group (S), 59.72 – group (M) and 62.10 – group (L); while among female swimmers it reached 48.67 (S), 49.36 (M) and 54.60 (L), respectively. The recorded values of VO2max [ml/kg/min] qualify the young swimmers to the group of people with a very high physical capacity. Our selection of Szczecin’s athletes to individual groups proved to be correct. The considerations presented in the paper bring one’s attention to the substantive quality of the intake and selection of swimmers. In the selection, it is necessary to take such physiologic rates as VO2max or VO2/HR into consideration.
According to the statistical data, there is being observed a definite increase in percentage of children affected by posture defects, particularly scolioses. The aquatic environment facilitates treatment of scolioses, since it provides relief conditions used in order to perform prophylactic, corrective and therapeutic tasks. Hydrokinetic therapy is one of the many rehabilitation methods. It seems, however, that corrective and therapeutic swimming is far too rarely used as an auxiliary measure for treatment of scolioses. This paper presents the concept of treatment of scolioses employing asymmetrical exercises in aquatic environment, the author of which in Poland is Iwanowski. In the study desk research of literature studies was applied along with the analysis of publications, including available study reports, articles, documents and also own video and photographic materials. The author suggests the concept of conservative treatment of scolioses through the application of asymmetrical swimming exercises in aquatic environment. Such procedure is efficient in preventing significant spinal deformations, which may protect against surgical intervention.
Swimming is an Olympic kind of sport in which sportsmen demonstrate their technical skills and speed and also set worldwide records. The chosen sport combines the possibility of harmonious development of the body, wellbeing orientation, and emotionality. The predominant orientation of the training process in the groups of initial training is the training and improvement of swimming skills in sporting ways, the development of overall endurance, flexibility and speed of movement. The goal is to improve the technique of development of physical qualities of 5-6 year-old swimmers at the stage of initial training. Organization of the research. We divided a school year symbolically into 2 semesters. There was an indepth study of swimming techniques like crawl and backstroke and familiarization with the elements of swimming in a dolphin way during the first half of the year (October-December). The second half (January-May) was devoted to improving such swimming techniques as crawl and backstroke. Results. It is important to determine the target indicators - the final and intermediate (current), which can be judged on the implementation of tasks; develop a general scheme for constructing a training process; determine the dynamics of training parameters and loads, as well as the system of restoration of work, aimed at achieving the main and intermediate goals in order to maximize the implementation of our methodology. As a result, the best growth of the results was in the tests: flexion and unbending of the hands in lying position: Control Group (hereinafter CG) – 9,71%; Experimental Group (hereinafter EG) – 15, 21%; body inclination forward in sitting position: CG – by 6,34%; EG – 12,62%; burpee: CG – 8,65%; EG – 16,34%; high jump: CG – 8,37%; EG – 14,03%. Conclusions. The obtained results testify the effectiveness of our improved methodology, which aim is to use specially selected exercises and has an alternative percentage distribution of all components of sports training.
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Swimming and bathing in Czechoslovakia until 1938

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Swimming and bathing in Czechoslovakia started to take shape at the beginning of the 19th century. At first, suitable locations in nature were used, with the first swimming baths built later on, primarily on rivers. The first competitive swimming races were held in 1845 on the Vltava River and in 1890, the AC Prague Sports Club founded a swimming department which also in-cluded competitive swimming races. In 1914, the Czech Union of Swimming was founded and in 1919 it was renamed as the Czechoslovak Amateur Swimming Association. The number of swimming pools at this time was very low, the conditions of Czechoslovak swimmers were not ideal, and their results at international swimming competitions suffered as a result.
Irregular heartbeats and different forms of ventricular ectopic activity are a common occurrence among elite athletes with high contractile cardiac capacity. At the same time, experiments demonstrated that the electrical stimulation threshold, causing ventricular fibrillation, increases during adaptation to physical exercise, without the increase in the contractile cardiac capacity. The research purpose is to examine the dependence of ventricular fibrillation threshold and contractile cardiac capacity on intensity and duration of swimming sessions, as well as duration of the training period. Female Wistar rats were assigned to five groups: sedentary (S), training 1 (T1, low intensity), training 2 (T2, moderate intensity), training 3 (T3, long-term), training 4 (T4, exhaustive). At the end of the experimental period, the rats were anesthetized and their ventricles irritated with rectangular pulses of 10 ms duration, to determine the minimum current causing ventricular fibrillation. The cardiac capacity was assessed by the maximum pressure in the left ventricle, at full aortic-cross clamping. The ventricular fibrillation threshold was increased by 60% in T1, 57.5% in T2 and 74% in T3, but no difference in T4 was observed, compared with S. The pick pressure in the left ventricle after aortic cross-clamping in T1 and T2 was not enhanced, compared with S; in T3 and T4, however, it was significantly increased. Physical exercise training changed the ventricular fibrillation threshold and cardiac contractile capacity, independently of the intensity of exercise. The rise of the ventricular fibrillation threshold and its contractile capacity can be demonstrated during a long adaptation to moderate-term sessions of aerobic exercises.
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Selection in swimming training - theoretical study

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The aim of this research study is to summarize the notion of preference and selection, which are considered to be the key element of sports training, whatever the discipline. This review provides a theoretical study on the subject. The introduction section deals with the abovementioned terminology, whereas the main paragraph predominantly discusses the process of preference and selection in swimming. Pre-school period (6–7 years of age) is the most significant for swimming selection. Such selection should be led by adequately qualified trainers with long-standing experience in professional training of young swimmers. Young swimming candidates should be characterized by higher-level motor skills, which in turn affect the time/efficiency of acquiring new swimming techniques and sport level. In selection process, it is advised/important to utilize tests which predominantly determine the level of specific motor skills such as: speed, strength, agility, motor coordination, suppleness, and so-called ‘water feeling’. The above mentioned motor skills play an important role in sport training and sport performance. During selection process, sports team trainers should pay special attention to child’s body posture and its length parameters, specifically body’s height, length of upper and lower extremities, length of hands and feet, width parameters of the shoulders and chest. First Grade school swimming classes enrollment is also a crucial factor in identifying sport talents. The selection process should be transparent, have clear health, somatic, as well as motoric requirements, which then affect the pace and effectiveness of acquiring swimming skills and sport level.
More and more often specialized literature mentions the contemporarily relevant notion of the application of swimming as one of the therapeutic methods in modern medicine. The thesis reviews specialized literature and analyzes documents in order to demonstrate the significance of aquatic therapy and corrective swimming exercises as a corrective and therapeutic function in the treatment of postural deficits and scoliosis. As this article has a character of a review, its purpose is to attempt a concise synthesis of the knowledge concerning the impact of swimming as a sport on the development of the physiological spinal curvature, as well as to emphasize the significance of aquatic therapy and corrective swimming exercises in counterbalancing gravity and supporting the body weight and to demonstrate their health benefits.
Gyrodactylus rysavyi, a monogenean parasite of the skin, fins and gills of the Nile catfish, Ciarias gariepinus, is capable of directional swimming when detached from the host and released in open water. The parasite propels itself by vigorously bending the body into a loop and then unbending the body with equal vigour. A typical Swimming phase lasts for 2-6 sec, involves between 4 and 8 looping/unlooping actions per sec and propels the parasite in any direction, including vertically upwards or downwards, at speeds of 1.7-5 mm/sec. The parasite is capable of swimming upwards for a distance of at least 15 cm. At the end of each swimming phase, the parasite sinks slowly, performing while it does so twisting and turning movements. The duration of this resting phase is similar to that of the swimming phase. A unique feature of the haptor of G. rysavyi is a posterior shift in the position of the 16 hooklets relative to the two large hamuli. The long handles of the hooklets radiate outwards, and like ribs support the fan-shaped posterior region of the haptor. This arrangement may be a specialization related to the adoption of looping and unlooping swimming movements, since the hooklet-supported fan is likely to provide most of the propulsion during swimming. Consideration is given to the possible role of swimming and the twisting and turning behaviour of the passively sinking parasite in the dispersal and transmission of G. rysavyi. The gyrodactylids Macrogyrodactylus congolensis and M. clarii, which also parasitize C. gariepinus, do not swim when detached from the substrate.
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