✅ Voice works on Chrome, Edge, Safari (iOS 14.5+). Tap 🎤 — it turns 🔴 when listening — speak, then Bessi auto-answers.
Write rules that tell the agents exactly what to say when a condition is met.
Draft rules are saved but silent until you lock them.
Locked rules ✅ active are injected into every agent response.
➕ Add New Rule
Loading rules…
Add notes about individual horses. These are injected into the agent whenever that horse is asked about.
Use this for quirks, preferences, or context that affects how you interpret the data.
➕ Add / Update Horse Note
Matches the name in your reports exactly (case-insensitive)
Loading horse notes…
❤️
Equimetre
Loading...
🎯
Readiness
Loading...
🏆
Race Day Summary
Loading...
📊
Post Race Analysis
Available
🗺️
eTRAKKA GPS
Loading...
📋
Exercise Prescription
Available
✅
Prescription Tracker
Coming Soon
📝
Workout Manager
Coming Soon
📅
Training Schedule
Coming Soon
📆
Annual Plan
Available
🧪
Lactate Analyser
Available
⭐
Talent ID
Available
🔬
Training Regimes
Available
🎓
Sport Science Concepts
4-Week Challenge
📊
Trainer Dashboard
SOON
Daily snapshot · Alerts
🐴
Horse Dashboard
SOON
Readiness · Load · Tier
📱
Polar System
SOON
GPS · HR monitoring
🥽
Meta Glass AR
FUTURE
Live speed · HUD in saddle
🎙️ Bessi
🎓
Sport Science Concepts
4-Week Challenge — First 12 Concepts · Energy Systems & Muscle Physiology
12
Concepts
4
Weeks
3
Per Week
Every elite human sporting team has a Sport Science Department. These are your first 12 concepts — the foundational energy systems and muscle physiology that underpins every training decision you make.
WEEK 1 — Foundations
Concepts 1–3 · Understanding muscle energy
1
ATP — The Currency of Muscle Contraction
Adenosine triphosphate (ATP) is the only molecule a muscle cell can actually "spend" to produce movement. Everything a horse eats — carbohydrate, fat, protein — must ultimately be converted into ATP before a muscle fibre can contract. Understanding ATP removes the mystery from feeding: the goal is always to supply enough substrate to regenerate ATP fast enough for the work being asked.
🎙️ Lactate AudioFoundational
2
The ATP-PC (Phosphocreatine) System
The fastest but smallest energy store. Creatine phosphate (CP) resynthesises ATP almost instantly without oxygen, but only lasts ~4 seconds at maximum effort. A horse has 11–23 mmol CP per kg of muscle. This system powers explosive starts, sprint acceleration bursts, and very short gallop segments. Poor speed cannot usually be traced to CP shortage — more often it's technique, coordination, or strength.
🎙️ Lactate AudioSprint-critical
3
The Anaerobic Lactic (Glycolytic) System
Breaks down muscle glycogen rapidly to produce pyruvate → ATP without oxygen. Highly responsive to high-intensity demands. The "auxiliary" system that bridges CP depletion with full aerobic engagement. Lactate is the end-product — not a waste product but a fuel signal. The percentage of this system used in any race must be managed carefully to avoid premature acidosis.
🎙️ Lactate AudioRace-pacing critical
WEEK 2 — Scheduling Mastery
Concepts 4–6 · Aerobic systems & thresholds
4
The Aerobic (Oxidative) System
Mitochondria use oxygen to combust carbohydrate, fat, and some protein, producing large amounts of ATP per glucose molecule. This system kicks in within seconds of exercise onset but takes 2–3 minutes to reach full contribution. Dominant in sustained efforts beyond 90 seconds. In horses, this is the primary system for all race distances beyond a short sprint. The trainability of this system is the highest of all three.
🎙️ Lactate AudioDominant race system
5
VO₂max — Maximal Oxygen Uptake
The ceiling of aerobic power: the maximum volume of oxygen the cardiovascular-respiratory system can deliver to, and muscles can use, per minute. In horses, VO₂max is extraordinary (up to 200+ ml/kg/min vs ~80 in elite human athletes). Both sprinters AND distance horses need a high VO₂max. A strong VO₂max also speeds recovery between intense workouts and between race day heats/finals.
🎙️ Lactate AudioKey test metric
6
VLAmax — Maximal Lactate Production Rate
The glycolytic speed ceiling — how fast the muscle can produce pyruvate/lactate. High VLAmax = strong anaerobic capacity (sprint power). But in longer events, high VLAmax competes with aerobic energy delivery, raising the lactate threshold speed. The optimal VLAmax differs by race distance. Many coaches raise VO₂max but forget that VLAmax management is equally important for race-specific performance.
🎙️ Lactate AudioAdvanced metric
WEEK 3 — Annual Planning
Concepts 7–9 · Thresholds, capacity & power
7
Lactate Threshold / Maximal Lactate Steady State (MLSS)
The highest exercise intensity at which lactate production equals lactate clearance — the steady state is maintained. Above MLSS, lactate accumulates exponentially and performance collapses. In horses, MLSS has been found anywhere from 2.5 mmol/L (elite distance) to 9.3 mmol/L (sprinters). A sprinter's higher MLSS is not "better fitness" — it reflects a faster glycolytic rate. Knowing each horse's MLSS is central to prescribing training zones.
🎙️ Lactate AudioTraining zone anchor
8
Aerobic Capacity vs Aerobic Power
Aerobic capacity = the absolute ceiling of VO₂max (how big the engine). Aerobic power = the percentage of VO₂max that can be sustained in competition (how efficiently the engine is used). Building capacity requires extensive low-intensity base work. Power training fine-tunes the use of that capacity at near-competition speeds. Both must be developed, but always in the right sequence — capacity first.
🎙️ Lactate AudioPeriodisation cornerstone
9
Anaerobic Capacity vs Anaerobic Power
Anaerobic capacity = VLAmax — the total rate of lactate the muscle can generate (built in base phase). Anaerobic power = the percentage of VLAmax that can be sustained in competition without triggering early acidosis (fine-tuned in competition phase). A horse with high anaerobic capacity but poor aerobic capacity will acidose early every race. Balance is the key, not simply maximising one system.
When lactate exceeds MLSS, hydrogen ion accumulation lowers intracellular pH (acidosis), impairing enzyme function and calcium cycling in muscle. Speed drops rapidly — the horse "dies" before the winning post. The art of race riding is selecting a pace that uses the anaerobic system maximally without triggering this collapse before the finish line. Distance-specific pacing strategy flows directly from this concept.
🎙️ Lactate AudioRace tactics
11
Lactate as Fuel, Not Just Waste
Historically viewed as a fatigue metabolite, lactate is now understood as an inter-organ fuel shuttle. Lactate produced by fast-twitch fibres can be transported to and burned by slow-twitch fibres and the heart aerobically. Horses with a high VO₂max clear lactate faster during AND after exercise, masking how hard they are working at any given speed. This has major implications for interpreting field lactate tests.
🎙️ Lactate AudioExpert-added
12
Muscle Fibre Types: Type I, IIa, IIx
Type I (slow-twitch): fatigue-resistant, mitochondria-rich, ideal for sustained aerobic work. Type IIa (fast-oxidative-glycolytic): versatile, recruited at moderate-high intensities. Type IIx (fast-twitch glycolytic): explosive power, low endurance, high lactate production. The proportion is largely genetically fixed. Thoroughbreds tend toward more IIb/IIx fibres. Training can shift IIx toward IIa phenotype over years but cannot convert Type I to Type II.
🎙️ Lactate AudioPhysiology foundation
📄
Concept Library
HTML's released progressively as you work through the 4-Week Challenge. Locked concepts will unlock as your trainer approves each one.