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apply-speed-agility-drills

Use when designing or delivering SAQ (speed, agility, quickness) training for athletes who need to improve linear sprint speed, change-of-direction ability, or reactive agility in their sport.

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Repository
jeffreytse/grimoire-core
Letzte Quellaktivität
18. Juli 2026 um 16:32
Erkannte Sprache von SKILL.md
Englisch
Sterne
4
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1

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SKILL.md
Quellanweisungen · Schreibgeschützte Vorschau
name
apply-speed-agility-drills
description
Use when designing or delivering SAQ (speed, agility, quickness) training for athletes who need to improve linear sprint speed, change-of-direction ability, or reactive agility in their sport.
source
NSCA "Developing Speed" (Jeffreys, 2013); Gambetta "Athletic Development" (2007); Cissik "Developing Speed and Agility" (NSCA); Young et al. (2015) "Resistance Training for Speed" (Sports Med)
tags
["speed","agility","quickness","saq","sprint","change-of-direction","athleticism"]
# Apply Speed Agility Drills Improve athletic speed and agility through structured sprint mechanics training, change-of-direction work, and reactive drills sequenced from technique to sport-specific application. ## Why This Is Best Practice **Why best:** Speed and agility are trainable skills governed by distinct neuromuscular qualities (linear speed, COD, reactive agility) that degrade without targeted, periodized practice — treating SAQ as an afterthought to conditioning leaves measurable performance and injury-prevention gains on the table. **Adopted by:** NFL Combine preparation programs (EXOS, Bommarito Performance), Olympic sprint coaches, and elite team sport academies (Premier League, NBA G-League, NCAA Division I programs) structure SAQ training as a discrete, periodized component — separate from conditioning — because speed is a skill that degrades without targeted practice. **Impact:** Young et al. (2001) demonstrated that change-of-direction speed and linear speed are distinct qualities requiring separate training stimuli. Nimphius et al. (2016) showed that 6 weeks of structured COD training improved 505 test scores by 5-9% independent of strength gains. Reactive agility — the ability to change direction in response to a stimulus — shows minimal transfer from closed-drill COD work alone, requiring decision-making training to develop. ## Steps ### 1. Assess the athlete's current speed profile Before designing drills, identify the limiting factor: - **Linear speed weakness:** slow 10m split → acceleration mechanics issue; slow 40m → max velocity issue - **COD weakness:** slow 505 or Illinois test → force application angle, deceleration, or braking strength - **Reactive agility weakness:** good closed COD, poor open COD → perceptual-decision training needed Use timing gates for objective measurement. Establish baseline before and test after each training block. ### 2. Sequence drill complexity (closed → open → reactive) Follow the progression hierarchy for every training block: 1. **Closed drills:** fixed pattern, athlete knows the direction (ladder drills, cone patterns) 2. **Semi-open:** coach signals direction at drill start 3. **Open/reactive:** athlete responds to live stimulus (defender, ball, light gate) Never use reactive drills before mastering the underlying movement — poor mechanics under fatigue or uncertainty ingrain bad patterns. ### 3. Train linear speed mechanics Address sprint mechanics explicitly: - **Acceleration phase (0-30m):** forward lean, aggressive arm drive, triple extension, push behind hips - **Max velocity phase (30m+):** tall posture, cyclical stride, high knee lift, toe dorsiflexion, elastic ground contact - Drill examples: A-skips, B-skips, wicket runs, resisted sleds (≤15% body mass for acceleration, <10% for max velocity), wicket sprints ### 4. Develop change-of-direction mechanics COD quality requires three components: 1. **Deceleration:** penultimate-step braking, low heel contact, eccentric quad loading 2. **Plant foot:** single-leg stability, hip abductor strength, ankle stiffness 3. **Re-acceleration:** push angle, hip extension power Drill examples: 5-10-5 shuttle, T-drill, L-drill, pro-agility; focus on technique at submaximal speed before all-out effort. ### 5. Program SAQ within the weekly structure SAQ training requires full CNS readiness — schedule: - After dynamic warm-up, before conditioning or strength work - Frequency: 2-3 sessions/week in off-season; 1-2 sessions/week in-season (higher intensity, lower volume) - Volume: 15-30 total reps/session for sprint work; rest 1-3 min between quality reps (full recovery = quality output) - Fatigue is the enemy of speed training — stop when mechanics deteriorate ### 6. Progress through the training block Week 1-2: technique at 80-90% effort; Week 3-4: 90-100% with cue focus; Week 5-6: reactive, game-speed. ## Common Mistakes - **Using SAQ as conditioning:** Ladder drills done for heart rate have no speed transfer. Speed requires maximal intent with full rest. - **Skipping deceleration training:** Most ACL injuries occur during deceleration. COD ability depends on the ability to brake, not just accelerate. - **Random drill selection:** Drills should match the movement demands of the sport. A basketball player needs multi-directional; a 100m sprinter needs linear mechanics. ## When NOT to Use - Athlete returning from lower-limb injury — apply `design-return-to-play-protocol` first. - Pre-season conditioning priority outweighs speed quality — acknowledge the trade-off explicitly.
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