Effects of Goat Milk Yogurt on Postprandial Glycemic Responses, Arterial Blood Pressure and Energy Intake
Short-term Effects of Goat Milk Yogurt on Postprandial Glycemic Responses, Arterial Blood Pressure, Energy Intake and Satiety
Study Overview
Status
Status
Conditions
Conditions
Intervention / Treatment
Intervention / Treatment
Detailed Description
Study Type
Study Type
Enrollment (Actual)
Enrollment
Phase
Phase
- Not Applicable
Contacts and Locations
Study Locations
-
-
-
Athens, Greece, 11855
- Agricultural University of Athens
-
-
Participation Criteria
Eligibility Criteria
Eligibility Criteria
Ages Eligible for Study
Accepts Healthy Volunteers
Genders Eligible for Study
Description
Inclusion Criteria:
- Healthy, non-smoking, non-diabetic men and women individuals with normal body mass index (BMI; between 18.5 and 24.9 kg/m2)
Exclusion Criteria:
- Severe chronic disease (e.g. tumors, manifest coronary heart disease, diabetes mellitus, severe kidney or liver conditions, endocrine and immunological conditions)
- Gastrointestinal disorders (e.g. chronic inflammatory bowel disease)
- Lactose intolerance
- Pregnancy
- Competitive sports
- Lactation
- Alcohol
- Drug dependency
Study Plan
How is the study designed?
Design Details
- Primary Purpose: Other
- Allocation: Randomized
- Interventional Model: Crossover Assignment
- Masking: Single
Number of Arms
Arms and Interventions
Participant Group / ArmParticipant Group / Arm |
Intervention / TreatmentIntervention / Treatment |
|---|---|
|
Experimental: Glucose as reference food
Twelve healthy, normal-weight subjects (male: 4, female: 8) after 10-14 hr fast, consumed 25g available carbohydrate from glucose, three times, in different weeks as reference foods along with 250ml water; and 25g available carbohydrates from a) goat milk yogurt, b) goat milk yogurt and currants, c) currants, d) sultanina raisins, one time each, in different weeks along with 250ml water.
Fingertip capillary blood glucose samples were taken at baseline, 15, 30, 45, 60, 90 and 120 min.
The first glucose sample was taken exactly 15min after the first bite of food or drink.
|
Twelve subjects (male: 4 female: 8) consumed 25g glucose diluted in 150ml water, two times, in different weeks, within 5-10 min.
Fingertip capillary blood glucose samples were taken at baseline, 15, 30, 45, 60, 90 and 120 min.
Twelve subjects (male: 4 female: 8) consumed 617 g goat milk yogurt, offering 25g available carbohydrate along with 250 mL water, one time, in different weeks, within 10-15 min.
Fingertip capillary blood glucose samples were taken at baseline, 15, 30, 45, 60, 90 and 120 min.
Twelve subjects (male: 4 female: 8) consumed 308 g goat milk yogurt and 19 g currants, offering 25g available carbohydrate along with 250 mL water, one time, in different weeks, within 10-15 min.
Fingertip capillary blood glucose samples were taken at baseline, 15, 30, 45, 60, 90 and 120 min.
Twelve subjects (male: 4 female: 8) consumed 37.8 g currants, offering 25g available carbohydrate along with 250 mL water, one time, in different weeks, within 10-15 min.
Fingertip capillary blood glucose samples were taken at baseline, 15, 30, 45, 60, 90 and 120 min.
Twelve subjects (male: 4 female: 8) consumed 37.5 g sultanina raisins, offering 25g available carbohydrate along with 250 mL water, one time, in different weeks, within 10-15 min.
Fingertip capillary blood glucose samples were taken at baseline, 15, 30, 45, 60, 90 and 120 min.
Forty-five healthy subjects (male: 12, female: 33) consumed a standardized breakfast (bread and honey) and 2h after were offered a preload given as snack (200g goat milk yogurt).
Three hours after, subjects were given ad libitum access to a meal (lunch and dessert).
The meal consisted of rice, roasted chicken breast and chocolate vanilla cake.
Foods were weighed before serving and any leftovers were weighed again after meal.
Fingertip capillary blood glucose samples were taken before breakfast, 120min after breakfast; before preload, 120minand 180minpost-preload consumption; before meal (lunch and dessert), 60minand 120min post-meal consumption.
Subjective appetite ratings were assessed with 100mm VAS.
Forty-five healthy subjects (male: 12, female: 33) consumed a standardized breakfast (bread and honey) and 2h after were offered a preload given as snack (200g milk with lactic acid).
Three hours after, subjects were given ad libitum access to a meal (lunch and dessert).
The meal consisted of rice, roasted chicken breast and chocolate vanilla cake.
Foods were weighed before serving and any leftovers were weighed again after meal.
Fingertip capillary blood glucose samples were taken before breakfast, 120min after breakfast; before preload, 120minand 180minpost-preload consumption; before meal (lunch and dessert), 60minand 120min post-meal consumption.
Subjective appetite ratings were assessed with 100mm VAS.
|
|
Experimental: Goat milk as test food
Twelve healthy, normal-weight subjects (male: 4, female: 8) after 10-14 hr fast, consumed 25g available carbohydrate from glucose, three times, in different weeks as reference foods along with 250ml water; and 25g available carbohydrates from a) goat milk yogurt, b) goat milk yogurt and currants, c) currants, d) sultanina raisins, one time each, in different weeks along with 250ml water.
Fingertip capillary blood glucose samples were taken at baseline, 15, 30, 45, 60, 90 and 120 min.
The first glucose sample was taken exactly 15min after the first bite of food or drink.
|
Twelve subjects (male: 4 female: 8) consumed 25g glucose diluted in 150ml water, two times, in different weeks, within 5-10 min.
Fingertip capillary blood glucose samples were taken at baseline, 15, 30, 45, 60, 90 and 120 min.
Twelve subjects (male: 4 female: 8) consumed 617 g goat milk yogurt, offering 25g available carbohydrate along with 250 mL water, one time, in different weeks, within 10-15 min.
Fingertip capillary blood glucose samples were taken at baseline, 15, 30, 45, 60, 90 and 120 min.
Twelve subjects (male: 4 female: 8) consumed 308 g goat milk yogurt and 19 g currants, offering 25g available carbohydrate along with 250 mL water, one time, in different weeks, within 10-15 min.
Fingertip capillary blood glucose samples were taken at baseline, 15, 30, 45, 60, 90 and 120 min.
Twelve subjects (male: 4 female: 8) consumed 37.8 g currants, offering 25g available carbohydrate along with 250 mL water, one time, in different weeks, within 10-15 min.
Fingertip capillary blood glucose samples were taken at baseline, 15, 30, 45, 60, 90 and 120 min.
Twelve subjects (male: 4 female: 8) consumed 37.5 g sultanina raisins, offering 25g available carbohydrate along with 250 mL water, one time, in different weeks, within 10-15 min.
Fingertip capillary blood glucose samples were taken at baseline, 15, 30, 45, 60, 90 and 120 min.
Forty-five healthy subjects (male: 12, female: 33) consumed a standardized breakfast (bread and honey) and 2h after were offered a preload given as snack (200g goat milk yogurt).
Three hours after, subjects were given ad libitum access to a meal (lunch and dessert).
The meal consisted of rice, roasted chicken breast and chocolate vanilla cake.
Foods were weighed before serving and any leftovers were weighed again after meal.
Fingertip capillary blood glucose samples were taken before breakfast, 120min after breakfast; before preload, 120minand 180minpost-preload consumption; before meal (lunch and dessert), 60minand 120min post-meal consumption.
Subjective appetite ratings were assessed with 100mm VAS.
Forty-five healthy subjects (male: 12, female: 33) consumed a standardized breakfast (bread and honey) and 2h after were offered a preload given as snack (200g milk with lactic acid).
Three hours after, subjects were given ad libitum access to a meal (lunch and dessert).
The meal consisted of rice, roasted chicken breast and chocolate vanilla cake.
Foods were weighed before serving and any leftovers were weighed again after meal.
Fingertip capillary blood glucose samples were taken before breakfast, 120min after breakfast; before preload, 120minand 180minpost-preload consumption; before meal (lunch and dessert), 60minand 120min post-meal consumption.
Subjective appetite ratings were assessed with 100mm VAS.
|
|
Experimental: Goat milk and currants as test food
Twelve healthy, normal-weight subjects (male: 4, female: 8) after 10-14 hr fast, consumed 25g available carbohydrate from glucose, three times, in different weeks as reference foods along with 250ml water; and 25g available carbohydrates from a) goat milk yogurt, b) goat milk yogurt and currants, c) currants, d) sultanina raisins, one time each, in different weeks along with 250ml water.
Fingertip capillary blood glucose samples were taken at baseline, 15, 30, 45, 60, 90 and 120 min.
The first glucose sample was taken exactly 15min after the first bite of food or drink.
|
Twelve subjects (male: 4 female: 8) consumed 25g glucose diluted in 150ml water, two times, in different weeks, within 5-10 min.
Fingertip capillary blood glucose samples were taken at baseline, 15, 30, 45, 60, 90 and 120 min.
Twelve subjects (male: 4 female: 8) consumed 617 g goat milk yogurt, offering 25g available carbohydrate along with 250 mL water, one time, in different weeks, within 10-15 min.
Fingertip capillary blood glucose samples were taken at baseline, 15, 30, 45, 60, 90 and 120 min.
Twelve subjects (male: 4 female: 8) consumed 308 g goat milk yogurt and 19 g currants, offering 25g available carbohydrate along with 250 mL water, one time, in different weeks, within 10-15 min.
Fingertip capillary blood glucose samples were taken at baseline, 15, 30, 45, 60, 90 and 120 min.
Twelve subjects (male: 4 female: 8) consumed 37.8 g currants, offering 25g available carbohydrate along with 250 mL water, one time, in different weeks, within 10-15 min.
Fingertip capillary blood glucose samples were taken at baseline, 15, 30, 45, 60, 90 and 120 min.
Twelve subjects (male: 4 female: 8) consumed 37.5 g sultanina raisins, offering 25g available carbohydrate along with 250 mL water, one time, in different weeks, within 10-15 min.
Fingertip capillary blood glucose samples were taken at baseline, 15, 30, 45, 60, 90 and 120 min.
Forty-five healthy subjects (male: 12, female: 33) consumed a standardized breakfast (bread and honey) and 2h after were offered a preload given as snack (200g goat milk yogurt).
Three hours after, subjects were given ad libitum access to a meal (lunch and dessert).
The meal consisted of rice, roasted chicken breast and chocolate vanilla cake.
Foods were weighed before serving and any leftovers were weighed again after meal.
Fingertip capillary blood glucose samples were taken before breakfast, 120min after breakfast; before preload, 120minand 180minpost-preload consumption; before meal (lunch and dessert), 60minand 120min post-meal consumption.
Subjective appetite ratings were assessed with 100mm VAS.
Forty-five healthy subjects (male: 12, female: 33) consumed a standardized breakfast (bread and honey) and 2h after were offered a preload given as snack (200g milk with lactic acid).
Three hours after, subjects were given ad libitum access to a meal (lunch and dessert).
The meal consisted of rice, roasted chicken breast and chocolate vanilla cake.
Foods were weighed before serving and any leftovers were weighed again after meal.
Fingertip capillary blood glucose samples were taken before breakfast, 120min after breakfast; before preload, 120minand 180minpost-preload consumption; before meal (lunch and dessert), 60minand 120min post-meal consumption.
Subjective appetite ratings were assessed with 100mm VAS.
|
|
Experimental: Currants as test food
Twelve healthy, normal-weight subjects (male: 4, female: 8) after 10-14 hr fast, consumed 25g available carbohydrate from glucose, three times, in different weeks as reference foods along with 250ml water; and 25g available carbohydrates from a) goat milk yogurt, b) goat milk yogurt and currants, c) currants, d) sultanina raisins, one time each, in different weeks along with 250ml water.
Fingertip capillary blood glucose samples were taken at baseline, 15, 30, 45, 60, 90 and 120 min.
The first glucose sample was taken exactly 15min after the first bite of food or drink.
|
Twelve subjects (male: 4 female: 8) consumed 25g glucose diluted in 150ml water, two times, in different weeks, within 5-10 min.
Fingertip capillary blood glucose samples were taken at baseline, 15, 30, 45, 60, 90 and 120 min.
Twelve subjects (male: 4 female: 8) consumed 617 g goat milk yogurt, offering 25g available carbohydrate along with 250 mL water, one time, in different weeks, within 10-15 min.
Fingertip capillary blood glucose samples were taken at baseline, 15, 30, 45, 60, 90 and 120 min.
Twelve subjects (male: 4 female: 8) consumed 308 g goat milk yogurt and 19 g currants, offering 25g available carbohydrate along with 250 mL water, one time, in different weeks, within 10-15 min.
Fingertip capillary blood glucose samples were taken at baseline, 15, 30, 45, 60, 90 and 120 min.
Twelve subjects (male: 4 female: 8) consumed 37.8 g currants, offering 25g available carbohydrate along with 250 mL water, one time, in different weeks, within 10-15 min.
Fingertip capillary blood glucose samples were taken at baseline, 15, 30, 45, 60, 90 and 120 min.
Twelve subjects (male: 4 female: 8) consumed 37.5 g sultanina raisins, offering 25g available carbohydrate along with 250 mL water, one time, in different weeks, within 10-15 min.
Fingertip capillary blood glucose samples were taken at baseline, 15, 30, 45, 60, 90 and 120 min.
Forty-five healthy subjects (male: 12, female: 33) consumed a standardized breakfast (bread and honey) and 2h after were offered a preload given as snack (200g goat milk yogurt).
Three hours after, subjects were given ad libitum access to a meal (lunch and dessert).
The meal consisted of rice, roasted chicken breast and chocolate vanilla cake.
Foods were weighed before serving and any leftovers were weighed again after meal.
Fingertip capillary blood glucose samples were taken before breakfast, 120min after breakfast; before preload, 120minand 180minpost-preload consumption; before meal (lunch and dessert), 60minand 120min post-meal consumption.
Subjective appetite ratings were assessed with 100mm VAS.
Forty-five healthy subjects (male: 12, female: 33) consumed a standardized breakfast (bread and honey) and 2h after were offered a preload given as snack (200g milk with lactic acid).
Three hours after, subjects were given ad libitum access to a meal (lunch and dessert).
The meal consisted of rice, roasted chicken breast and chocolate vanilla cake.
Foods were weighed before serving and any leftovers were weighed again after meal.
Fingertip capillary blood glucose samples were taken before breakfast, 120min after breakfast; before preload, 120minand 180minpost-preload consumption; before meal (lunch and dessert), 60minand 120min post-meal consumption.
Subjective appetite ratings were assessed with 100mm VAS.
|
|
Experimental: Sultanina raisins as test food
Twelve healthy, normal-weight subjects (male: 4, female: 8) after 10-14 hr fast, consumed 25g available carbohydrate from glucose, three times, in different weeks as reference foods along with 250ml water; and 25g available carbohydrates from a) goat milk yogurt, b) goat milk yogurt and currants, c) currants, d) sultanina raisins, one time each, in different weeks along with 250ml water.
Fingertip capillary blood glucose samples were taken at baseline, 15, 30, 45, 60, 90 and 120 min.
The first glucose sample was taken exactly 15min after the first bite of food or drink.
|
Twelve subjects (male: 4 female: 8) consumed 25g glucose diluted in 150ml water, two times, in different weeks, within 5-10 min.
Fingertip capillary blood glucose samples were taken at baseline, 15, 30, 45, 60, 90 and 120 min.
Twelve subjects (male: 4 female: 8) consumed 617 g goat milk yogurt, offering 25g available carbohydrate along with 250 mL water, one time, in different weeks, within 10-15 min.
Fingertip capillary blood glucose samples were taken at baseline, 15, 30, 45, 60, 90 and 120 min.
Twelve subjects (male: 4 female: 8) consumed 308 g goat milk yogurt and 19 g currants, offering 25g available carbohydrate along with 250 mL water, one time, in different weeks, within 10-15 min.
Fingertip capillary blood glucose samples were taken at baseline, 15, 30, 45, 60, 90 and 120 min.
Twelve subjects (male: 4 female: 8) consumed 37.8 g currants, offering 25g available carbohydrate along with 250 mL water, one time, in different weeks, within 10-15 min.
Fingertip capillary blood glucose samples were taken at baseline, 15, 30, 45, 60, 90 and 120 min.
Twelve subjects (male: 4 female: 8) consumed 37.5 g sultanina raisins, offering 25g available carbohydrate along with 250 mL water, one time, in different weeks, within 10-15 min.
Fingertip capillary blood glucose samples were taken at baseline, 15, 30, 45, 60, 90 and 120 min.
Forty-five healthy subjects (male: 12, female: 33) consumed a standardized breakfast (bread and honey) and 2h after were offered a preload given as snack (200g goat milk yogurt).
Three hours after, subjects were given ad libitum access to a meal (lunch and dessert).
The meal consisted of rice, roasted chicken breast and chocolate vanilla cake.
Foods were weighed before serving and any leftovers were weighed again after meal.
Fingertip capillary blood glucose samples were taken before breakfast, 120min after breakfast; before preload, 120minand 180minpost-preload consumption; before meal (lunch and dessert), 60minand 120min post-meal consumption.
Subjective appetite ratings were assessed with 100mm VAS.
Forty-five healthy subjects (male: 12, female: 33) consumed a standardized breakfast (bread and honey) and 2h after were offered a preload given as snack (200g milk with lactic acid).
Three hours after, subjects were given ad libitum access to a meal (lunch and dessert).
The meal consisted of rice, roasted chicken breast and chocolate vanilla cake.
Foods were weighed before serving and any leftovers were weighed again after meal.
Fingertip capillary blood glucose samples were taken before breakfast, 120min after breakfast; before preload, 120minand 180minpost-preload consumption; before meal (lunch and dessert), 60minand 120min post-meal consumption.
Subjective appetite ratings were assessed with 100mm VAS.
|
|
Experimental: Goat milk as preload
Forty-five healthy subjects (male: 12, female: 33) were offered a standardized breakfast and 2h after consumed one of the two preloads (goat milk yogurt and milk with lactic acid) served as snack in random order.
Three hours after, subjects were given ad libitum access to a meal (lunch and dessert).
Foods were weighed at the time of serving and any leftovers were weighed again after meal to determine the amount of food consumed.
Fingertip capillary blood glucose samples were collected before and after foods.
Subjective appetite ratings were collected using 100mm visual analogue scales (VAS).
|
Twelve subjects (male: 4 female: 8) consumed 25g glucose diluted in 150ml water, two times, in different weeks, within 5-10 min.
Fingertip capillary blood glucose samples were taken at baseline, 15, 30, 45, 60, 90 and 120 min.
Twelve subjects (male: 4 female: 8) consumed 617 g goat milk yogurt, offering 25g available carbohydrate along with 250 mL water, one time, in different weeks, within 10-15 min.
Fingertip capillary blood glucose samples were taken at baseline, 15, 30, 45, 60, 90 and 120 min.
Twelve subjects (male: 4 female: 8) consumed 308 g goat milk yogurt and 19 g currants, offering 25g available carbohydrate along with 250 mL water, one time, in different weeks, within 10-15 min.
Fingertip capillary blood glucose samples were taken at baseline, 15, 30, 45, 60, 90 and 120 min.
Twelve subjects (male: 4 female: 8) consumed 37.8 g currants, offering 25g available carbohydrate along with 250 mL water, one time, in different weeks, within 10-15 min.
Fingertip capillary blood glucose samples were taken at baseline, 15, 30, 45, 60, 90 and 120 min.
Twelve subjects (male: 4 female: 8) consumed 37.5 g sultanina raisins, offering 25g available carbohydrate along with 250 mL water, one time, in different weeks, within 10-15 min.
Fingertip capillary blood glucose samples were taken at baseline, 15, 30, 45, 60, 90 and 120 min.
Forty-five healthy subjects (male: 12, female: 33) consumed a standardized breakfast (bread and honey) and 2h after were offered a preload given as snack (200g goat milk yogurt).
Three hours after, subjects were given ad libitum access to a meal (lunch and dessert).
The meal consisted of rice, roasted chicken breast and chocolate vanilla cake.
Foods were weighed before serving and any leftovers were weighed again after meal.
Fingertip capillary blood glucose samples were taken before breakfast, 120min after breakfast; before preload, 120minand 180minpost-preload consumption; before meal (lunch and dessert), 60minand 120min post-meal consumption.
Subjective appetite ratings were assessed with 100mm VAS.
Forty-five healthy subjects (male: 12, female: 33) consumed a standardized breakfast (bread and honey) and 2h after were offered a preload given as snack (200g milk with lactic acid).
Three hours after, subjects were given ad libitum access to a meal (lunch and dessert).
The meal consisted of rice, roasted chicken breast and chocolate vanilla cake.
Foods were weighed before serving and any leftovers were weighed again after meal.
Fingertip capillary blood glucose samples were taken before breakfast, 120min after breakfast; before preload, 120minand 180minpost-preload consumption; before meal (lunch and dessert), 60minand 120min post-meal consumption.
Subjective appetite ratings were assessed with 100mm VAS.
|
|
Experimental: Milk with lactic acid as preload
Forty-five healthy subjects (male: 12, female: 33) were offered a standardized breakfast and 2h after consumed one of the two preloads (goat milk yogurt and milk with lactic acid) served as snack in random order.
Three hours after, subjects were given ad libitum access to a meal (lunch and dessert).
Foods were weighed at the time of serving and any leftovers were weighed again after meal to determine the amount of food consumed.
Fingertip capillary blood glucose samples were collected before and after foods.
Subjective appetite ratings were collected using 100mm visual analogue scales (VAS).
|
Twelve subjects (male: 4 female: 8) consumed 25g glucose diluted in 150ml water, two times, in different weeks, within 5-10 min.
Fingertip capillary blood glucose samples were taken at baseline, 15, 30, 45, 60, 90 and 120 min.
Twelve subjects (male: 4 female: 8) consumed 617 g goat milk yogurt, offering 25g available carbohydrate along with 250 mL water, one time, in different weeks, within 10-15 min.
Fingertip capillary blood glucose samples were taken at baseline, 15, 30, 45, 60, 90 and 120 min.
Twelve subjects (male: 4 female: 8) consumed 308 g goat milk yogurt and 19 g currants, offering 25g available carbohydrate along with 250 mL water, one time, in different weeks, within 10-15 min.
Fingertip capillary blood glucose samples were taken at baseline, 15, 30, 45, 60, 90 and 120 min.
Twelve subjects (male: 4 female: 8) consumed 37.8 g currants, offering 25g available carbohydrate along with 250 mL water, one time, in different weeks, within 10-15 min.
Fingertip capillary blood glucose samples were taken at baseline, 15, 30, 45, 60, 90 and 120 min.
Twelve subjects (male: 4 female: 8) consumed 37.5 g sultanina raisins, offering 25g available carbohydrate along with 250 mL water, one time, in different weeks, within 10-15 min.
Fingertip capillary blood glucose samples were taken at baseline, 15, 30, 45, 60, 90 and 120 min.
Forty-five healthy subjects (male: 12, female: 33) consumed a standardized breakfast (bread and honey) and 2h after were offered a preload given as snack (200g goat milk yogurt).
Three hours after, subjects were given ad libitum access to a meal (lunch and dessert).
The meal consisted of rice, roasted chicken breast and chocolate vanilla cake.
Foods were weighed before serving and any leftovers were weighed again after meal.
Fingertip capillary blood glucose samples were taken before breakfast, 120min after breakfast; before preload, 120minand 180minpost-preload consumption; before meal (lunch and dessert), 60minand 120min post-meal consumption.
Subjective appetite ratings were assessed with 100mm VAS.
Forty-five healthy subjects (male: 12, female: 33) consumed a standardized breakfast (bread and honey) and 2h after were offered a preload given as snack (200g milk with lactic acid).
Three hours after, subjects were given ad libitum access to a meal (lunch and dessert).
The meal consisted of rice, roasted chicken breast and chocolate vanilla cake.
Foods were weighed before serving and any leftovers were weighed again after meal.
Fingertip capillary blood glucose samples were taken before breakfast, 120min after breakfast; before preload, 120minand 180minpost-preload consumption; before meal (lunch and dessert), 60minand 120min post-meal consumption.
Subjective appetite ratings were assessed with 100mm VAS.
|
What is the study measuring?
Primary Outcome Measures
Primary Outcome Measures
Outcome Measure |
Measure Description |
Time Frame |
|---|---|---|
|
Capillary blood glucose
Time Frame: 7 hours
|
Clinically useful change in serum glucose (mg/dL), defined as the restoration of glucose within normal limits during the 2hr glucose tolerance test and for a total of 5 hours
|
7 hours
|
Secondary Outcome Measures
Secondary Outcome Measures
Outcome Measure |
Measure Description |
Time Frame |
|---|---|---|
|
Subjective appetite ratings
Time Frame: 7 hours
|
Useful change in subjective appetite (hunger, desire to eat, motivation to eat, preoccupation with thoughts of food, thirst) scores 0 up to 10 from 100mm Visual Analogue Scales
|
7 hours
|
|
Energy intake after preload
Time Frame: 6 hours
|
Useful change in energy intake (kcal) the day of the intervention (actual weighing of foods in grams consumed and leftovers using a Kern & Sohn (Germany) food weight scale (Max 3500 g, d=0.01g) and analysis from 24hr recalls using Diet Analysis Software
|
6 hours
|
|
Arterial blood pressure
Time Frame: 7 hours
|
Clinically useful change in systolic and diastolic blood pressure (mmHg) before and after consumption of test foods
|
7 hours
|
Collaborators and Investigators
Sponsor
Sponsor
Study record dates
Study Major Dates
Study Start (Actual)
Study Start
Primary Completion (Actual)
Primary Completion
Study Completion (Actual)
Study Completion
Study Registration Dates
First Submitted
First Submitted
First Submitted That Met QC Criteria
First Submitted That Met QC Criteria
First Posted (Actual)
First Posted
Study Record Updates
Last Update Posted (Actual)
Last Update Posted
Last Update Submitted That Met QC Criteria
Last Update Submitted That Met QC Criteria
Last Verified
Last Verified
More Information
Terms related to this study
Additional Relevant MeSH Terms
Other Study ID Numbers
Other Study ID Numbers
- HRBD 24 Session 04/04/2019 NHA
Plan for Individual participant data (IPD)
Plan to Share Individual Participant Data (IPD)?
Drug and device information, study documents
Studies a U.S. FDA-regulated drug product
Studies a U.S. FDA-regulated device product
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