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Contributions to the physical-pedagogical control of the sports performance of 400m flat runners

                  =                                                                            =                                                      

 

 <= /span>

Contribuciones al control físico-pedagógico del rendimiento deportivo = de  los corredores de 400 m planos.<= span style=3D'mso-no-proof:yes'>

 

Ra= ynier Montoro Bombú [1], Víc= tor Hernández Toro[2], Patricio Ortiz Ortiz [3]& Washington Castro Acosta[4],

 

Recibido: 10-02-2019 / Revisado: 15-02-2019 /Acept= ado: 04-03-2019/ Publicado: 14-06-2019

 

 Resumen          =                 DOI: https://doi.org/10.32/cienciadigital.v3i1.947            

La carrera de 400 metros planos en todos l= os eventos de atletismo ha sido durante mucho tiempo un punto de atracción por= las características biológicas que se desempeñan en esta modalidad deportiva. A= su vez esta prueba ha suscitado mucho interés por parte de los entrenadores que buscan diversos recursos para conocer los factores limitantes del rendimien= to, así como los test físicos-pedagógicos  más importantes para el control = del rendimiento en las diferentes etapas de entrenamiento. Con el objetivo de Contribuir en la teoría al control físico-pedagógico del rendimiento deportivo de<= span style=3D'mso-spacerun:yes'>  los corredores de 400 m planos en sus diferentes etapas de entrenamiento, realizamos una revisión bibliográfica con ponderación de datos principales en diferentes b= ases de datos dentro de las que se encuentran Scopus= , Ibecs= , Scielo, Dialnet, Lat= index y Sportdiscus= . Para desarrollar esta revisión bibliográfica nos enfocamos fundamentalmente en el indicador físico-pedagóg= ico del rendimiento deportivo. Al mismo tiempo nos apoyamos en los métodos revi= sión de fuentes documentales el Análisis y Síntesis e Inducción-Deducción, los cuales permitieron la exploración de diferentes artículos y analizar, sintetizar e inducir independienteme= nte las concepciones relacionadas con sus factores, además permitió sintetizar su aparato teórico-cognitivo y establecer en el  plano teór= ico los test para el control del rendimiento en las diferentes etapas de la prepara= ción. Se obtiene como principales resultados aportes sobre las pruebas más influyentes en el control el rendimiento en los corredores de 400 m planos,= así como tareas para el control en esta disciplina e indicaciones metodológicas= que permite adecuarse como elementos de contante revisión por parte de los entrenadores que se desempeñen en esta modalidad deportiva. 

Palabras claves: Rendimiento Deportivo, Atletismo de velocidad, Corredores de 400 m planos. = Te= st pedagógicos.

 <= /span>

Abstract.=

 
The 400-meter race at all athletics eve=
nts has long been a point of attraction for the biological characteristics =
of this sport. At the same time, this test has aroused great interest on th=
e part of the coaches who seek various resources to know the factors limiti=
ng performance, as well as the most important physical-pedagogical tests fo=
r the control of performance in the different stages of training. With the =
objective of contributing in the theory to the physical-pedagogical control=
 of the sports performance of the 400 m runners in their different stages o=
f training, we carry out a bibliographic review with weighting of main data=
 in different databases within which they are located. Scopus, Ibecs, Scielo, Dialnet, Latindex and Sportdiscus. In order to develop this bibliographic r=
eview, we focus mainly on the physical-pedagogical indicator of sports perf=
ormance. At the same time we relied on the methods review of documentary so=
urces, Analysis and Synthesis and Induction-Deduction, which allowed the ex=
ploration of different articles and analyze, synthesize and independently i=
nduce conceptions related to their factors, also allowed to synthesize thei=
r theoretical apparatus- cognitive and establish in the theoretical plane t=
he tests for the control of the performance in the different stages of the =
preparation. It is obtained as main results contributions on the most influ=
ential tests in the control of the performance in the 400 m flat corridors,=
 as well as tasks for the control in this discipline and methodological ind=
ications that allows to be adjusted as elements of constant review by the t=
rainers that they perform in this sport modality.
 
Key words:

 

 

Introduction
The control pro=
cess is one of the most influential aspects in the process of sports traini=
ng, its continuous application becomes necessary for the acquisition of hig=
h sports performance, prestigious authors such as Harre (1973), which describes the stadiums of control=
, Zatsiorski (1989) who gives form and content to the d=
ifferent types of pedagogical and biomechanical controls, as well as Cintra=
 (1992) who applies different tests for the control over the different proc=
esses and their implication in several sports.
 
 These inv=
estigations are largely due to the fact that today it is unthinkable to eff=
ectively manage all the components of training with the application of cont=
rol methods Grosser  Starischka (1989) The=
 current changes in training condition alter the traditional to prevail the=
 effectiveness of the process (Absaliamov & Timakova, 1990)con=
ditioned by the availability of data in the control, so it is important to =
have information about the athlete, the variation of their ability of work,=
 the state of the organism under training, the level of development of the =
physical qualities, the degree of mastery of the techniques, the magnitude =
of the load, the change of sporting results, etc.
 
From experiment=
al research established in contemporary sport, many disciplines have discov=
ered and explained the particularities of the behavior of the human organis=
m that is trained in the specific conditions of sports practice. (Oña, 2002) have also been studied extensively the mec=
hanisms that ensure the adaptation of the training, basing the validity or =
otherwise of means and methods to achieve functional improvement. (Calderón=
, Benito, Meléndez & González, M. 2011).<=
/pre>
 
In recent decad=
es, a new methodological direction for scientific research in sport has bee=
n formed (Anguera  He=
rnández, 2015) which incorporates the most varied observations made in spor=
ts practice and fundamental scientific research. Together with the deepenin=
g of knowledge about the norms, principles, regularities and laws that gove=
rn the training process, the investigations have deepened the influence of =
control on performance Montoro & De la Paz (2014). Others have associat=
ed it from career economics, energy expenditure at a given submaximal race =
speed Saunders, Pyne, Telford  Ha=
wley (2004). Thus, Svedenhag (2000) identified 13 determinants of race e=
conomy (specialty distance, training and tuning, terrain slope, temperature=
, air and wind, fatigue, ventilation, stride width, stiffness / elastic com=
ponents, other biomechanical factors, gender, age and emotional / psycholog=
ical state), but none of these factors studied, despite being limiting fact=
ors, can identify the shortcomings in the training process nor can it predi=
ct which are the strong and weak aspects in the discipline. In turn, Saunde=
rs, et al. (2004) grouped and divided into 5 large groups of indicators for=
 control in careers (training, environmental, physiological, biomechanical =
and anthropometric). And although the factors discussed have an impact on t=
he career economy, and this in turn on perform=
ance, the career economy is still one more within the physiological factors=
 that affect performance (Basset & Howley, 2000) but it does not guaran=
tee with all veracity the performance control function.
 
On the other ha=
nd, scientific knowledge that is conferred about the load-control relations=
hip of performance is of great importance for coaches, since it is the basi=
s of the optimal amount of training necessary to improve performance (Avalo=
s, Hellard, & Chatard, 2=
003); (Foster, Florhaug, Franklin, Gottschall, =
Hrovatin, Parker,  Doleshal,  &a=
mp; Dodge, 2001); (Chaverra, Gaviria & Gonzalez, 2018). Currently th=
ere is no common theory of the training control process that describes the =
type, quantity or model of a specific training control that is optimal to a=
chieve a certain response to the proposed load for a Banister athlete Calve=
rt, Savage & Bach (1975). The main knowledge that exists is basically e=
mpirical. However, there is consensus (Banister, Morton & Clarke, 1997)=
 about the existence of a dependency between training and performance, whic=
h refers to a dose-response correlation Viru <=
span style=3D'mso-spacerun:yes'> (2003) Athletics coaches hav=
e also been given the means of control that will allow them to comply with =
the goal outlined. In fact, the existing training literature includes a lar=
ge number of control tests with an acceptable level of safety, which provid=
e information on the progress of the training process and make it possible =
to assess the level of functional adaptation of the organism being trained.=
 Such is the case that Jiménez-Reye & González-Badillo (2012). They car=
ry out a study of Control of the load of training through the CMJ in speed =
tests (...) to optimize athletic performance in athletics. (Monitoring trai=
ning load through the CMJ in sprints and jump events for optimizing perform=
ance in athletics). This began the study with a follow-up of the physical p=
erformance of the athletes during a period of 71 weeks evaluated through th=
e performance obtained in the CMJ test and the training load used weekly. T=
he CMJ test was carried out on Mondays of each week, after having rested on=
 Sunday, and 5 jumps were made. At the same time, the coaches on that same =
day in which the athletes performed this test gave us detailed information =
about the training followed by the athletes in the previous week to collect=
 the data of the weekly training load together with the CMJ test data. . But the study maintains a single test for a long t=
ime and does not differentiate its usefulness depending on the stages of pr=
eparation. Another contribution made by Oña, A et al. (1994) where they make a description of=
 a computerized system of automatic processing for the optimization of spor=
ts performance based on the control of information. The system presented is=
 oriented in this direction, providing very interesting expectations that a=
re specified in the design of a precise, flexible system applicable to a wi=
de range of situations. It is necessary, however, to achieve a greater degr=
ee of interaction between the answers given by the athletes and the informa=
tion provided by the machine, to provoke the simultaneous modification of t=
he athlete through the self-regulation of their processes. Furthermore, the=
 indicators of when they should be used are not expressed at all. Other res=
earches more focused on medicine also make contributions to the control of =
performance, this time Rodríguez, Garcia, Sarmiento & of Saa, Ro=
dríguez, Vagabonded & da Silva. G. (2012) experiment in an evaluation o=
f the muscular response as a control tool in the field of physical activity=
, health and sport, they use a high precision mechanical sensor placed dire=
ctly on the skin at a constant pressure and pre-established for each protoc=
ol. The creators of this tool initially proposed previous pressures of the =
end of the sensor (113 mm2) of approximately 0.2 N / mm (ranges between 0.1=
 and 0.5 N / mm), being recommended the adequate calibration and the use of=
 references visuals on the sensor to establish the pressure before stimulat=
ion. This research has an interesting and valid validity for the update tha=
t the coaches need but in another order of ideas, it does not provide infor=
mation about the most used tests for the control of the training itself. So=
 far the forms of control studied, do not offer a more complete view of the=
 most appropriate tests for these runners, at what time of the season apply=
 them, as well as the most suitable, even It becomes evident to think wheth=
er the extrapolation of tests of other sports with the same type and functi=
onal orientation, will provide the same information for each of the sports =
specialties. Aspect that although we did not address in this article, it wo=
uld be good to deepen in other investigations. In this sense, the objective=
 of this article is: Objectively to select the physical-pedagogical control=
 tests in the sports performance of 400 m flat runners in their different t=
raining stages. For this, it is proposed to separate the tests at different=
 times according to the preparation objective. Therefore we distinguish it for its better understandi=
ng in tests for general preparation and tests for special preparation accom=
panied by methodological indications that regulate its application.
For the selecti=
on of the physical-pedagogical control tests in the different moments of th=
e season, the quality criteria that a physical test must meet according to =
Fetz  Kornexl (1976) were taken into consideration; MacDoug=
all (1993), as well as Haag & Dassel (1995) & Martínez (2006). C=
riteria that were modified for this article based on the objectivity of the=
 tests presented. We assume for its description and presentation: 1. Name o=
f the test, 2. Procedure, 3. Objectives, 4. Validity and 5. Instruments use=
d. We do not disregard other factors such as reliability, usefulness, relev=
ance and specificity, but we take it into account as elements of reliabilit=
y, but not of description and presentation.
 
The aforementioned =
criteria allow pedagogical control to be applied not only to evaluate the r=
esults achieved, but also to determine the possible deficiencies and potent=
ialities, as well as the causes that slow down and optimize the scope of th=
e objectives proposed in training or competition. 
<= pre style=3D'text-align:justify;line-height:115%;background:white'> 

In this sense, the present research proposes the use of tests with different guidelines for the control of performance, which were selected according to their feasibility = from the weighting of criteria reflected in the revised bibliography. These tests are separated according to the aforementioned preparation stage. Table 1.


= Dimensions

Addresses

 = ;

Type of address
Parameters E. P General
Parameters E. P Special

 = ;

 

 

 

 

 

Strength

 = ;


Explosive  strength

 

 

Conditioner
<=
o:p> 
=
Length jump without impulse stroke (m).
=
Bullet drive of 4 Kg. (F) and 5 Kg. (M), back to the area.
=
Length jump without impulse stroke (m).
=
Bullet drive of 4 Kg. (F) and 5 Kg. (M), back to the area.

 

 

 

 

Maximum strength

Conditioner

=
ABS
=
Half-squat: 1RM (Kg)
=
Force lying down (Kg.)
=
Max force of the Biceps-femoral (Kg.)

 

ABS Semi-screed: 1RM (Kg.) Force lying down (Kg.) Max force of the Biceps-femoral (Kg.)

 =

 =

= Rapidity

=
Rapidity of reaction with displacement
  

 

Conditioner

 = ;

 

=
Time in 10 m (m / s)
  

 

A= naerobic Power Alactacid

Determinant

 


100m race with 50m steering wheels 60 m Total

=
100 m race with 50 m flyers
  

 

Resistance

A= erobic Capacity

Conditioner

 

distance in the T= VP progressive speed test: (m)

 

A= erobic power

Conditioner

 

Race of 1000m. With time control every 200m.

 

Race of 1000m. wi= th time control every 200 m.

R= esistance to the Force.=

Determinant

 = ;

=
60 m race with ballast from 4m to 33% of the maximum leg strength. And time=
 control every 20m.

 = ;

 = ;

Resistance to speed. (Specific<= span class=3DGramE>) )

A= lactac Anaerobic Capacity

Determinant

 = ;

=
Race of 200 m (m / s)

 = ;

=
Race of 200 m (m / s)

L= actacid Anaerobic Power=

Determinant

        300m + 100m 

       300m + 100m 

L= actacid Anaerobic Capacity

Conditioner

 

R= ace of 500 m (m / s)

R= ace of 600 m (m / s)

R= ace of 400 m (m / s)=


Flexi= bility

 

Conditioner

 

=
Flexibility of the spine
  

 

=
Flexibility of the spine
  

 

 = ;

 = ;

 = ;

Resulting tests

 = ;

= Technique

Conditioner

 

 = ;

A= nalysis of the 400m race with time control every 50m.

= Effectiveness

Conditioner

 

 

A= nalysis of the 400m race with time control every 50m.

= Tactic

Determinant

 

RV=3D (t dr / n) –= t pt

= Rational

Determinant

 

CR=3D t dr / t rc     

Table 1.= Physico-pedagogical tests with different functional orientations for performance control in 400 m flat corridors.

Source.<= span lang=3DEN-US style=3D'font-size:10.0pt;mso-bidi-font-size:11.0pt;line-heigh= t:115%; font-family:"Arial",sans-serif;color:#212121;background:white;mso-ansi-lang= uage: EN-US'> Msc. Raynier Montoro.

The=
 application of these tests are not straitjackets of strict compliance for the coa=
ches, but a methodological guide of tests to analyze the physical-pedagogic=
al dimensions that determine and condition the performance of the 400m runn=
ers, in different moments of the season. The inclusion of any test that pro=
vides the necessary information at a given time of preparation can be plann=
ed and executed according to the desired result, always respecting the meth=
odological indications declared.
Now for a bette=
r understanding of the tests we will establish a summary of some tests and =
their descriptive structure based on the criteria set out above.=
 
Example for Str=
ength Tests.
Name of the tes=
t: Long jump without impulse race. This test has been studied by different =
authors such as Reid, Quinn & Crespo (2003) & Galiano (1992) in =
their talent selection programs. Procedure: The student placed on a line pr=
eviously marked on the ground and with his feet shoulder-width apart and hi=
s arms upwards, made a concentric movement of arms and legs and will jump a=
s far as possible. The best result of two jumps is selected. Objective: Mea=
sure the explosive strength of the legs. Validity: Both feet must be even b=
ehind the line, the drop surface must be the same for all athletes, in the =
fall they will not rest their hands on the ground. It will be measured from=
 the take-off line to the most lagging place of fall. The distance will be =
measured in meters and centimeters. A meter and an annotator will control t=
he test. Instruments: Tape measure. 
 
Name of the test: Bullet drive with two=
 hands facing the area. Test studied by different authors such as Montoro, =
Quizhpe, Zapata & Espinoza (2018), as well as Gar=
cía & Jiménez (2018). Procedure: The student placed on a l=
ine previously marked on the ground and with his feet shoulder-width apart =
and the bullet placed in the palm of his hands, performed a concentric move=
ment of arms and legs downwards and then propelled the bullet in front as f=
ar as possible. Objective: Measure the explosive strength of the arms. Vali=
dity: Both feet must be even behind the line, the bullet will be 4 kg for t=
he ladies and 5 kg. For knights, it will be measured from the impulse line =
to the place of fall of the implement. The distance will be measured in met=
ers and centimeters. A meter and an annotator will control the test. Instru=
ments: Tape measure, bullet of 4 and 5 kg of weight.
 
Example for spe=
ed tests.
Name of the eve=
nt: Started with 10m race. In this test researchers like Martínez (2006). K=
ovacs, Pritchett, Wickwire, Green & Bishop (2007) have made various contributions, among which is its appl=
ication for distances of 5 to 20 meters. Procedure: The student placed on a=
 line previously marked on the ground, is placed in three-point snatch and =
the sound of an acoustic stimulus reacts by running a 10m race in the short=
est possible time. Objective: To measure the speed of simple reaction with =
displacement. Validity: The test will be carried out with a suitable wardro=
be and footwear, it will be done on a synthetic track. The ti=
me will be taken by the same person in all cases. Instruments: Digital stop=
watch and tape measure.
 
Name of the tes=
t: Alactacid Anaerobic Power. This is a universal test u=
sed by many sports disciplines. Procedure: From the start of three points, =
make a 100m race to the maximum of possibilities. Objective: Measure the sp=
eed of displacement in 100m. Validity: Only one race will be held on a synt=
hetic track, which the athlete previously placed behind the starting line, =
placed in a three-point start, will wait for the sound of an acoustic stimu=
lus. The clothing and footwear must be suitable for the test, there will be=
 only one timekeeper, it will be covered by the final straight of a synthet=
ic track. Instruments: Digital chronometer and synthetic track.=
 
Example for res=
istance tests.
Test name: Coop=
er test. Test prepared by Cooper (1968) still in force and used by differen=
t authors such as Michael & Kenneth (2013) in his study on this te=
st in young athletes. Procedure: The one 400m track to the start voice will=
 run through lane 1 as far as possible in 12 minutes. Objective: Measure ae=
robic capacity Validity: Only one race will be done, the costumes and footw=
ear must be suitable for the test, there will be only one timekeeper, a whi=
stle sound will be made every 4 min. Instruments: Digital stopwatch and whi=
stle.
 
Name of the tes=
t: Test of 1000m. Taking from Fetz, F. et al. (1976). Procedure: The one 400m track=
 to the start voice will run through lane 1 two and a half laps to the trac=
k to cover a distance of 1000m. Objective: Measure aerobic power. Validity:=
 Only one race will be held, all athletes must run in the first lane, the c=
ostumes and footwear must be suitable for the test, there will be only one =
timekeeper and one scorer. Instruments: Digital chronometer.
 
Example for the tests of resistance to =
speed (Specific).
Name of the test: Test of 300 + 100m. T=
his is a test derived from the 400 meter flat test. It was developed in fusion of the=
 experience gained as a coach where we recommend that when we are close to =
major competitions do not apply the test of 400 m, but look for tests close=
r to reality to avoid alterations either positive or negative in the compet=
itive stage. Author’s tale as Aparicio (1998). They use it in other sports =
for other purposes. Procedure: The one 400m track to the start voice will r=
un the first 300m. After this, 5 sec. to stop the race after the 300 m mark=
, the pulse is taken in 10 seconds and 5 seconds are given. More to start a=
 100m race to the finish. Both races must be done in the shortest possible =
time. Objectives: To measure the lactic acid anaerobic power from a modelin=
g of the 400m-plane race. Validity: Only one race will be held, the costume=
s and footwear must be suitable for the test, there will be two timekeepers=
 one placed in the 300m and another in the goal. Instruments: Digital chron=
ometer.
 
Example for flexibility tests.
Test name: Spine flexibility test. Anot=
her of the tests studied in different literatures Benavent, Tella, González=
-Millan, Colado (2007) address them and establish adjustments =
that are applied in this review. Procedure: Seated on the floor with the le=
gs extended to the front, without shoes, with the feet placed on the inside=
 edge of the wooden box that serves to measure the maximum flexion performe=
d. After this, a deep ventral flexion of the trunk is performed without fle=
xing the legs. The position must be maintained at least one second and the =
measurement will be taken by the last finger that lies on the wooden box. O=
bjective: Measure the spine flexibility. Validity: The legs must remain extended, it is required that the arms during the flex=
ion of the trunk remain extended evenly. Instruments: Millimeter wooden dra=
wer.
 <=
/o:p>
Example for the tests resulting from th=
e work other tests. These tests were elaborated as a proposal of the invest=
igations of Zatsiorski (1989) in his book of Sports Metrology. Th=
ese tests are the result of the same tests applied previously and also prov=
ide coaches with a very accessible view of the controls applied. They are:<=
o:p>
 
From the 300 + 100 m test with time con=
trol. Procedure: After this, the 50m sections will be evaluated to compare =
the fastest and slowest sections comparing them with the most weighty directions in this discipline. From here =
the analysis of the test will lie. Reviewing the strategies used in the rac=
e, the tactical structure of the runner. Objective: Analyze the effective t=
echnique and rational tactics. The same previous descriptive standards are =
maintained.
     
The tests of Reserve of speed and Coeff=
icient of special resistance. They will be applied through the Speed ​=
;​Reservation Formulas: RV =3D (t dr / n) - t p. Where: t dr is the time of the distance traveled by 400m, n is the number of times th=
e standard distance (50) is traveled and t p is the best time in that dista=
nce. As well as the formula of resistance coefficient: CR =3D t dr / t p. Where: The indicators remain the same as in=
 the Speed ​​reserve. Objective: Analyze the Speed ​̴=
3;Reserve and the Individual Resistance Coefficient of the athlete. The low=
er the CR and the RV, the greater the level of special resistance of the ru=
nners, in the same way you can compare this data with the best runners for =
the category in which the test is applied. (Zatsiorski, 1988).
 

In conclusion the application of these physical apti= tude tests, it is necessary to have a group of knowledge, which highlights = the possibility of carrying out this application at appropriate times, in f= avorable conditions and that guarantees the standardization of the applied = controls. In this sense, methodological indications were prepared. To carry= out these indications, the protocol of Howley & Franks (1992) adapted = by Vila (1993) and reorganized by the author of the research was assumed. W= here it is considered that: 1.The preparation to apply the test should be as accur= ate as possible. (This refers to the fact that all the examiners who are go= ing to initiate an exercise plan must be evaluated by means of a stress tes= t (maximum or submaximum) .This includes knowledge on the part of t= he evaluator about physical activities carried out the day before, if they = smoke, ingestion of alcohol or drugs, medications, as well as the last meal= , which was and when 2. The place where the test is performed, must be clea= n, without obstacles, good ventilation, and the temperature must be maintai= ned at comfortable values. 3. Only personnel who are applying the test shou= ld remain in place.
4. The subject must know in advance what the test consists of and what= its purpose is. 5 They should be applied in the morning and away from the = ingestion of food. 6. Emergence of symptoms (pain, cyanosis, dyspnea, palpi= tations), before which it is interrupted immediately. 7. In the case of fem= ale athletes, the last day of the previous menstruation should be taken int= o account. 8. Apply the tests immediately after heating. 9. Do not apply te= sts designed for force capabilities in accordance with those designed for s= peed capabilities. 10. Do not apply tests designed for short-term resistanc= e capabilities in conjunction with those designed for medium or long-term c= apabilities. 11. Do not train the resistance of medium or long duration on = the days of application of the tests or on the alternate days in which othe= r addresses are being controlled. 12. The application of flexibility may co= incide with the evaluation of the other addresses. If it is designed in suc= h a way that there is such a coincidence, the heating is carried out, then = the address is evaluated, and then the other test is carried out.13. Do not= perform the coordination evaluation the day after the F.max or long-term resistance tests.14. The coordinat= ion can coincide with the evaluation of any other motor capacity, provided = that it is carried out after the warm-up and before the other motor-capacit= y test.

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Banister, E.W., Morton, R.H. & Clarke, J.R. (1997). Clinical dose-response effects of exercise. In: = The Physiology and Pathophysiology of Exercise Tolerance. = Steinacker JM and Ward SA (Eds.). New York: Plenum, pp. 297-309

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PARA CITAR EL ARTÍCULO INDEXADO.=

 

 

Montoro Bombú Rayni= er, Hernández Toro Víctor, Ortiz Ortiz Patricio & Castro Acosta Washing= ton. (2019). Contributions to the physical-pedagogical contr= ol of the sports performance of 400m flat runners. <= span style=3D'font-size:12.0pt;line-height:115%;font-family:"Times New Roman",se= rif; mso-ansi-language:ES-EC'>Revista electrónica Ciencia Digital 3(2), 78-97. Recuperado des= de: http://cienciadigital.org/revistacienciadigital2/index.php/CienciaDigi= tal/article/view/263/567

 

 

 

El artículo que se publica es de exclusiva responsabilidad de los autores y no necesariamente reflejan el pensamiento de la Revi= sta Ciencia Digital.

 

El artículo queda en propiedad de la revista y, por tanto, su publicación parc= ial y/o total en otro medio tiene que ser autorizado por el director de la Revista Ciencia Digital.

 

 

 

 

 

 



[1] Universidad Técnica de Ambato Carrera Pedagogía de la Actividad Física y Deportes. Ambato, Ecuador, email (r.mont= oro@uta.edu.ec)

[2]Universidad Técnica de Ambato Decano d= e la Facultad de Ciencias Humanas.  Amba= to, Ecuador, email (vhernandez3347@uta.edu.ec)

[3]Universidad Técnica de Ambato Carrera = Pedagogía de la Actividad Física y Deporte. Ambato, Ecuador, email (patriciogortizo@u= ta.edu.ec)

[4]Universidad Técnica de Ambato Carrera = Pedagogía de la Actividad Física y Deporte. Ambato, Ecuador, email (w.ecastro@uta.edu= .ec)

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Práctica= s innovadoras en búsqueda de políticas. El caso de Chile. En C. Cox (Edit= .), Políticas educacionales en el cambio de siglo. La reforma del Sistema = Escolar de Chile (pp. 5592003). ÃvalosB.56Ãva031Book<= b:Guid>{C986B030-BFCA-43F8-8F72-6968586E10A3}<= b:NameList>ÃvalosB.La formación de profesores y= su desarrollo profesional. Prácticas innovadoras en búsqueda de polític= as.2003559ChileEn C. Cox57Mon15JournalArticle= {5A8E1DF9-C9E0-42BA-8F4C-41FA34B20EE4}= Montoro&de laPaz.Razonamientos so= bre el rendimiento deportivo. 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www.cienciadigital.org

                                                 =                                                                       ISSN: 2602-8085<= /p>

                                                 =                                   Vol. 3, N°2, p. 78-97, abril - junio, 2019

 

CIENCIAS D= E LA ACTIVIDAD FÍSICA Y EL DEPORTE                                 =                                                Página 1

 

 

 

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