Carbohydrate foods and beverages

Capsules containing Carbohydrate foods and beverages

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GB register claims, verbatim

From the Great Britain nutrition and health claims register. Authorised claims carry conditions of use we deliberately do not reproduce; qualifying a product against them is the seller's and brand's responsibility.

Non-authorised (6) — claims sellers may not make
  • / maximises glycogen stores. Carbohydrate before, during exercise improves endurance performance / perform for longer. Carbohydrate rich diets before exercise help elevate pre-exercise glycogen stores. Ingestion during exercise maintains blood glucose. Glucose is the body’s naturally preferred source of energy during intense exercise Consumption in events as short as 1 hr improves exercise performance. Endurance capacity / time to exhaustion / delays fatigue. Carbohydrate loading can delay fatigue and benefits endurance and multiple sprint sports. Energy for endurance / fuel for your muscles. Carbohydrate before and after exercise extends endurance time and work output more than either alone. Glycogen Sparing. Clarification provided Enhances / maximises glycogen stores. Carbohydrate before, during exercise improves endurance performance / perform for longer. Carbohydrate rich diets before exercise help elevate pre-exercise glycogen stores. Ingestion during exercise maintains blood glucose. Glucose is the body’s naturally preferred source of energy during intense exercise Consumption in events as short as 1 hr improves exercise performance. Endurance capacity / time to exhaustion / delays fatigue Carbohydrate loading can delay fatigue and benefits endurance and multiple sprint sports. Energy for endurance / fuel for your muscles. Carbohydrate before and after exercise extends endurance time and work output more than either alone Glycogen Sparing
  • Carbohydrate after exercise maximises muscle glycogen replacement. High GI carbohydrate post exercise results in higher muscle glycogen levels after 24 hours than low GI. Liquid carbohydrate is as effective as a solid form for glycogen resynthesis. Replaces glycogen stores used during exercise. Consumption at frequent intervals maintains enhanced muscle glycogen synthesis. Helps recovery and enhances subsequent performance / endurance capacity / delayed onset of fatigue. Carbohydrate during first hour after exercise assures maximal muscle glycogen resynthesis rate and speed of recovery Clarification provided Carbohydrate after exercise maximises muscle glycogen replacement. High GI carbohydrate post exercise results in higher muscle glycogen levels after 24 hours than low GI. Liquid carbohydrate is as effective as a solid form for glycogen resynthesis. Replaces glycogen stores used during exercise. Consumption at frequent intervals maintains enhanced muscle glycogen synthesis. Helps recovery and enhances subsequent performance / endurance capacity / delayed onset of fatigue. Carbohydrate during first hour after exercise assures maximal muscle glycogen resynthesis rate and speed of recovery
  • Carbohydrate after exercise maximises muscle glycogen replacement. High GI carbohydrate post exercise results in higher muscle glycogen levels after 24 hours than low GI. Liquid carbohydrate is as effective as a solid form for glycogen resynthesis. Replaces glycogen stores used during exercise. Consumption at frequent intervals maintains enhanced muscle glycogen synthesis. Helps recovery and enhances subsequent performance / endurance capacity / delayed onset of fatigue. Carbohydrate during first hour after exercise assures maximal muscle glycogen resynthesis rate and speed of recovery. Clarification provided Carbohydrate after exercise maximises muscle glycogen replacement. High GI carbohydrate post exercise results in higher muscle glycogen levels after 24 hours than low GI. Liquid carbohydrate is as effective as a solid form for glycogen resynthesis. Replaces glycogen stores used during exercise. Consumption at frequent intervals maintains enhanced muscle glycogen synthesis. Helps recovery and enhances subsequent performance / endurance capacity / delayed onset of fatigue. Carbohydrate during first hour after exercise assures maximal muscle glycogen resynthesis rate and speed of recovery.
  • Consumption before and during exercise enhances feelings of energetic arousal which may impact on task persistence and performance Reduces the perception of athletic fatigue Helps maintain alertness / mood Helps reduce the perception of effort, making you feel better during exercise A high carbohydrate diet helps to reduce feelings of fatigue / perceived effort during prolonged exercise
  • Consumption before and during exercise enhances feelings of energetic arousal which may impact on task persistence and performance. Reduces the perception of athletic fatigue. Helps maintain alertness / mood. Helps reduce the perception of effort, making you feel better during exercise. A high carbohydrate diet helps to reduce feelings of fatigue / perceived effort during prolonged exercise.
  • Enhances / maximises glycogen stores. Carbohydrate before, during exercise improves endurance performance / perform for longer. Carbohydrate rich diets before exercise help elevate pre-exercise glycogen stores. Ingestion during exercise maintains blood glucose. Glucose is the body’s naturally preferred source of energy during intense exercise. Consumption in events as short as 1 hr improves exercise performance. Endurance capacity / time to exhaustion / delays fatigue. Carbohydrate loading can delay fatigue and benefits endurance and multiple sprint sports. Energy for endurance / fuel for your muscles. Carbohydrate before and after exercise extends endurance time and work output more than either alone. Glycogen Sparing. Ingestion during exercise maintains blood glucose. Glucose is the body’s naturally preferred source of energy during intense exercise.