Outcome
Type |
Measure |
Description |
Time frame |
Safety issue |
Primary |
Change in white blood cell count |
White blood cell count will be measured using an automatic blood analyzer |
At baseline, at 24, 48 and 72 hours post speed endurance maintenance protocols. |
|
Primary |
Change in Creatine kinase in blood |
Creatine kinase will be measured in plasma |
At baseline, at 24, 48 and 72 hours post speed endurance maintenance protocols. |
|
Primary |
Change in countermovement jump height |
Countermovement jump height will be measured using two force platforms at 1000Hz, with each foot in parallel on the two platforms providing a seperate yet time-synchronized measurement of the jump height for each leg |
At baseline, post, 1, 2,3, 24, 48 and 72 hours post speed endurance maintenance protocols. |
|
Primary |
Change in ground reaction force (GRF) during countermovement jump test |
The ground reaction force will be measured using two force platforms at 1000Hz, with each foot in parallel on the two platforms providing a seperate yet time-synchronized measurement of the jump height for each leg |
At baseline, at post, at 1, 2, 3, 24, 48 and 72 hours post speed endurance maintenance protocols. |
|
Primary |
Change in peak power during countermovement jump test |
The peak power will be measured using two force platforms at 1000Hz, with each foot in parallel on the two platforms providing a seperate yet time-synchronized measurement of the jump height for each leg |
At baseline, post 1, 2, 3, 24, 48 and 72 hours post speed endurance maintenance protocols. |
|
Primary |
Change in mean power during countermovement jump test |
The mean power will be measured using two force platforms at 1000Hz, with each foot in parallel on the two platforms providing a seperate yet time-synchronized measurement of the jump height for each leg |
At baseline, post, 1, 2, 3, 24, 48 and 72 hours post speed endurance maintenance protocols. |
|
Primary |
Change in vertical stifness during countermovement jump test |
The vertical stifness will be measured using two force platforms at 1000Hz, with each foot in parallel on the two platforms providing a seperate yet time-synchronized measurement of the jump height for each leg |
At baseline, post, 1, 2, 3, 24, 48 and 72 hours post speed endurance maintenance protocols. |
|
Primary |
Change in peak rate of force development during countermovement jump test |
The peak rate of force development will be measured using two force platforms at 1000Hz, with each foot in parallel on the two platforms providing a seperate yet time-synchronized measurement of the jump height for each leg |
At baseline, post, 1, 2, 3, 24, 48 and 72 hours post speed endurance maintenance protocols. |
|
Primary |
Change in peak normalized EMG during the eccentric and concentric phases of the countermovement jmp test |
Electromyography data will be collected wirelessly at 2000Hz using a Myon MA-320 EMG system (Myon AG, Schwarzenberg, Switzerland) for the vastus lateralis (VL), biceps femoris (BF), gastrocnemius (GAS), and gluteus maximus (GM) muscles |
At baseline, post, 1, 2, 3, 24, 48 and 72 hours post speed endurance maintenance protocols. |
|
Primary |
Change in mean normalized EMG during the eccentric and concentric phases of the countermovement jump test |
Electromyography data will be collected wirelessly at 2000Hz using a Myon MA-320 EMG system (Myon AG, Schwarzenberg, Switzerland) for the vastus lateralis (VL), biceps femoris (BF), gastrocnemius (GAS), and gluteus maximus (GM) muscles |
At baseline, post, 1, 2, 3, 24, 48 and 72 hours post speed endurance maintenance protocols. |
|
Primary |
Change in delayed onset of muscle soreness |
Muscle soreness will be assessed during palpation of the muscle belly and the distal region |
At baseline, post, at 1, 2, 3, 24, 48 and 72 hours post speed endurance maintenance protocols. |
|
Primary |
Change in repeated sprint ability (RSA) |
5 x 30 m sprints will be performed with 25 seconds rest in-between |
At baseline, at 24, 48 and 72 hours post speed endurance maintenance protocols. |
|
Primary |
Change in sprint time of 10m |
Sprint time will be assessed over a 10m distance using light cells. |
At baseline, post, 24, 48 and 72 hours post speed endurance maintenance protocols. |
|
Primary |
Change in sprint time of 30m |
Sprint time will be assessed over a 30m distance using light cells. |
At baseline, post, 24, 48 and 72 hours post speed endurance maintenance protocols. |
|
Primary |
Change in field activity during the speed-endurance mainetnance protocols |
Field activity will be continuously recorded during both speed endurance maintenance protocols using global positioning system (GPS) technology |
For 20 minutes during the speed endurance maintenance training day |
|
Primary |
Change in heart rate during the speed-endurance mainetnance protocols |
Heart rate will be continuously recorded during both speed endurance maintenance protocols using heart rate monitors |
For 20 minutes during the speed endurance maintenance training day |
|
Primary |
Change in isometric peak torque |
The isometric peak torque will be assessed on an isokinetic dyanmometer |
At baseline, post, 1, 2, 3 and 24, 48 72 hours post speed endurance maintenance protocols. |
|
Primary |
Change in fatigue index of maximal voluntary isometric contraction (MVIC) during 10 seconds |
Fatigue rate during MVIC will be estimated through the percent drop of peak torque between the first and the last three seconds of a 10-second maximal isometric contaction |
At baseline, post, 1, 2, 3 and 24, 48 72 hours post speed endurance maintenance protocols. |
|
Primary |
Change in blood lactate |
The blood lactate will be measured using a lactate plus system |
At baseline and immediately post speed endurance maintenance protocols. |
|
Secondary |
Body weight |
Body weight will be measured on a beam balance with stadiometer |
At baseline |
|
Secondary |
Body height |
Body height will be measured on a beam balance with stadiometer |
At baseline |
|
Secondary |
Maximal oxygen consumption (VO2max) |
Maximal oxygen consumption will be measured by open circuit spirometry via breath by breath method |
At baseline |
|
Secondary |
Body fat |
Body fat will be measured by using Dual-emission X-ray absorptiometry |
At baseline |
|
Secondary |
Lean body mass |
Lean body mass will be measured by using Dual-emission X-ray absorptiometry |
At baseline |
|
Secondary |
Dietary intake |
Dietary intake will be assessed using 7 -day diet recalls |
Over a 7 -day period at baseline |
|
Secondary |
Soccer Agility drill |
The soccer agility drill will be assesed using light cells chronojump |
At baseline |
|
Secondary |
Yo-Yo Intermittent Recovery Test Level 2 |
The Yo-Yo Intermittent Recovery Test Level 2 is considered as a maximal aerobic endurance fitness test, involving running between markers placed 20 meters apart, at increasing speeds, until exhaustion. |
At baseline |
|
Secondary |
Yo-Yo Intermittent endurance Test Level 2 |
The Yo-Yo Intermittent endurance Test Level 2 evaluates an individual's aerobic endurance fitness, involving running between markers placed 20 meters apart, at increasing speeds, until exhaustion. |
At baseline |
|