Baseline total sleep time during the Control night
Measured via polysomnography/EEG, scored according to American Academy of Sleep Medicine guidelines
Baseline total sleep time during the A1 night
Measured via polysomnography/EEG, scored according to American Academy of Sleep Medicine guidelines
Baseline total sleep time during the A2 night
Measured via polysomnography/EEG, scored according to American Academy of Sleep Medicine guidelines
Baseline total sleep time during the B1 night
Measured via polysomnography/EEG, scored according to American Academy of Sleep Medicine guidelines
Baseline total sleep time during the B2 night
Measured via polysomnography/EEG, scored according to American Academy of Sleep Medicine guidelines
Total sleep time during exposure to nocturnal tyre noise combination A1
Measured via polysomnography/EEG, scored according to American Academy of Sleep Medicine guidelines
Total sleep time during exposure to nocturnal tyre noise combination A2
Measured via polysomnography/EEG, scored according to American Academy of Sleep Medicine guidelines
Total sleep time during exposure to nocturnal tyre noise combination B1
Measured via polysomnography/EEG, scored according to American Academy of Sleep Medicine guidelines
Total sleep time during exposure to nocturnal tyre noise combination B2
Measured via polysomnography/EEG, scored according to American Academy of Sleep Medicine guidelines
Total amount of baseline N1 sleep during the Control night
Measured via polysomnography/EEG, scored according to American Academy of Sleep Medicine guidelines
Total amount of baseline N2 sleep during the Control night
Measured via polysomnography/EEG, scored according to American Academy of Sleep Medicine guidelines
Total amount of baseline N3 sleep during the Control night
Measured via polysomnography/EEG, scored according to American Academy of Sleep Medicine guidelines
Total amount of baseline rapid eye movement (REM) sleep during the Control night
Measured via polysomnography/EEG, scored according to American Academy of Sleep Medicine guidelines
Total amount of N1 sleep during exposure to nocturnal tyre noise combination A1
Measured via polysomnography/EEG, scored according to American Academy of Sleep Medicine guidelines
Total amount of N2 sleep during exposure to nocturnal tyre noise combination A1
Measured via polysomnography/EEG, scored according to American Academy of Sleep Medicine guidelines
Total amount of N3 sleep during exposure to nocturnal tyre noise combination A1
Measured via polysomnography/EEG, scored according to American Academy of Sleep Medicine guidelines
Total amount of rapid eye movement (REM) sleep during exposure to nocturnal tyre noise combination A1
Measured via polysomnography/EEG, scored according to American Academy of Sleep Medicine guidelines
Total amount of N1 sleep during exposure to nocturnal tyre noise combination A2
Measured via polysomnography/EEG, scored according to American Academy of Sleep Medicine guidelines
Total amount of N2 sleep during exposure to nocturnal tyre noise combination A2
Measured via polysomnography/EEG, scored according to American Academy of Sleep Medicine guidelines
Total amount of N3 sleep during exposure to nocturnal tyre noise combination A2
Measured via polysomnography/EEG, scored according to American Academy of Sleep Medicine guidelines
Total amount of rapid eye movement (REM) sleep during exposure to nocturnal tyre noise combination A2
Measured via polysomnography/EEG, scored according to American Academy of Sleep Medicine guidelines
Total amount of N1 sleep during exposure to nocturnal tyre noise combination B1
Measured via polysomnography/EEG, scored according to American Academy of Sleep Medicine guidelines
Total amount of N2 sleep during exposure to nocturnal tyre noise combination B1
Measured via polysomnography/EEG, scored according to American Academy of Sleep Medicine guidelines
Total amount of N3 sleep during exposure to nocturnal tyre noise combination B1
Measured via polysomnography/EEG, scored according to American Academy of Sleep Medicine guidelines
Total amount of rapid eye movement (REM) sleep during exposure to nocturnal tyre noise combination B1
Measured via polysomnography/EEG, scored according to American Academy of Sleep Medicine guidelines
Total amount of N1 sleep during exposure to nocturnal tyre noise combination B2
Measured via polysomnography/EEG, scored according to American Academy of Sleep Medicine guidelines
Total amount of N2 sleep during exposure to nocturnal tyre noise combination B2
Measured via polysomnography/EEG, scored according to American Academy of Sleep Medicine guidelines
Total amount of N3 sleep during exposure to nocturnal tyre noise combination B2
Measured via polysomnography/EEG, scored according to American Academy of Sleep Medicine guidelines
Total amount of rapid eye movement (REM) sleep during exposure to nocturnal tyre noise combination B2
Measured via polysomnography/EEG, scored according to American Academy of Sleep Medicine guidelines
Baseline wakefulness after sleep onset (WASO) during the Control night
Total number of minutes awake during the night after the first appearance of sleep of any stage. Measured via polysomnography/EEG, scored according to American Academy of Sleep Medicine guidelines
Wakefulness after sleep onset (WASO) during exposure to nocturnal tyre noise combination A1
Total number of minutes awake during the night after the first appearance of sleep of any stage. Measured via polysomnography/EEG, scored according to American Academy of Sleep Medicine guidelines
Wakefulness after sleep onset (WASO) during exposure to nocturnal tyre noise combination A2
Total number of minutes awake during the night after the first appearance of sleep of any stage. Measured via polysomnography/EEG, scored according to American Academy of Sleep Medicine guidelines
Wakefulness after sleep onset (WASO) during exposure to nocturnal tyre noise combination B1
Total number of minutes awake during the night after the first appearance of sleep of any stage. Measured via polysomnography/EEG, scored according to American Academy of Sleep Medicine guidelines
Wakefulness after sleep onset (WASO) during exposure to nocturnal tyre noise combination B2
Total number of minutes awake during the night after the first appearance of sleep of any stage. Measured via polysomnography/EEG, scored according to American Academy of Sleep Medicine guidelines
Baseline number of awakenings during the Control night
Measured via polysomnography/EEG, scored according to American Academy of Sleep Medicine guidelines
Number of awakenings during exposure to nocturnal tyre noise combination A1
Measured via polysomnography/EEG, scored according to American Academy of Sleep Medicine guidelines
Number of awakenings during exposure to nocturnal tyre noise combination A2
Measured via polysomnography/EEG, scored according to American Academy of Sleep Medicine guidelines
Number of awakenings during exposure to nocturnal tyre noise combination B1
Measured via polysomnography/EEG, scored according to American Academy of Sleep Medicine guidelines
Number of awakenings during exposure to nocturnal tyre noise combination B2
Measured via polysomnography/EEG, scored according to American Academy of Sleep Medicine guidelines
Baseline sleep onset latency (SOL) during the Control night
Defined as the time from lights out to the first epoch of sleep measured via polysomnography/EEG, scored according to American Academy of Sleep Medicine guidelines.
Sleep onset latency (SOL) during exposure to nocturnal tyre noise combination A1
Defined as the time from lights out to the first epoch of sleep measured via polysomnography/EEG, scored according to American Academy of Sleep Medicine guidelines.
Sleep onset latency (SOL) during exposure to nocturnal tyre noise combination A2
Defined as the time from lights out to the first epoch of sleep measured via polysomnography/EEG, scored according to American Academy of Sleep Medicine guidelines.
Sleep onset latency (SOL) during exposure to nocturnal tyre noise combination B1
Defined as the time from lights out to the first epoch of sleep measured via polysomnography/EEG, scored according to American Academy of Sleep Medicine guidelines.
Sleep onset latency (SOL) during exposure to nocturnal tyre noise combination B2
Defined as the time from lights out to the first epoch of sleep measured via polysomnography/EEG, scored according to American Academy of Sleep Medicine guidelines.
Baseline sleep efficiency during the Control night
Defined as the percentage of time in bed spent in a non-wake sleep stage, measured via polysomnography/EEG, scored according to American Academy of Sleep Medicine guidelines.
Sleep efficiency during exposure to nocturnal tyre noise combination A1
Defined as the percentage of time in bed spent in a non-wake sleep stage, measured via polysomnography/EEG, scored according to American Academy of Sleep Medicine guidelines.
Sleep efficiency during exposure to nocturnal tyre noise combination A2
Defined as the percentage of time in bed spent in a non-wake sleep stage, measured via polysomnography/EEG, scored according to American Academy of Sleep Medicine guidelines.
Sleep efficiency during exposure to nocturnal tyre noise combination B1
Defined as the percentage of time in bed spent in a non-wake sleep stage, measured via polysomnography/EEG, scored according to American Academy of Sleep Medicine guidelines.
Sleep efficiency during exposure to nocturnal tyre noise combination B2
Defined as the percentage of time in bed spent in a non-wake sleep stage, measured via polysomnography/EEG, scored according to American Academy of Sleep Medicine guidelines.
Baseline sleep depth assessed using the odds ratio product (ORP) during the Control night
Average ORP over the full night, from 0 (never occurs during wake) to 2.5 (only occurs during wake). Derived via polysomnography/EEG measurements.
Sleep depth assessed using the odds ratio product (ORP) during exposure to nocturnal tyre noise combination A1
Average ORP over the full night, from 0 (never occurs during wake) to 2.5 (only occurs during wake). Derived via polysomnography/EEG measurements.
Sleep depth assessed using the odds ratio product (ORP) during exposure to nocturnal tyre noise combination A2
Average ORP over the full night, from 0 (never occurs during wake) to 2.5 (only occurs during wake). Derived via polysomnography/EEG measurements.
Sleep depth assessed using the odds ratio product (ORP) during exposure to nocturnal tyre noise combination B1
Average ORP over the full night, from 0 (never occurs during wake) to 2.5 (only occurs during wake). Derived via polysomnography/EEG measurements.
Sleep depth assessed using the odds ratio product (ORP) during exposure to nocturnal tyre noise combination B2
Average ORP over the full night, from 0 (never occurs during wake) to 2.5 (only occurs during wake). Derived via polysomnography/EEG measurements.
Spontaneous maximal change of odds ratio product (ORP) during the Control night
Primary measure of acute sleep disruption by noise, calculated as the difference between the ORP in the 30s prior to noise onset and the maximum ORP during traffic noise. Averaged over 120 sham noise events during the night.
Maximal change of odds ratio product (ORP) during exposure to tyre noise events combination A1
Primary measure of acute sleep disruption by noise, calculated as the difference between the ORP in the 30s prior to noise onset and the maximum ORP during traffic noise. Averaged over all 120 noise events during the night.
Maximal change of odds ratio product (ORP) during exposure to tyre noise events combination A2
Primary measure of acute sleep disruption by noise, calculated as the difference between the ORP in the 30s prior to noise onset and the maximum ORP during traffic noise. Averaged over all 120 noise events during the night.
Maximal change of odds ratio product (ORP) during exposure to tyre noise events combination B1
Primary measure of acute sleep disruption by noise, calculated as the difference between the ORP in the 30s prior to noise onset and the maximum ORP during traffic noise. Averaged over all 120 noise events during the night.
Maximal change of odds ratio product (ORP) during exposure to tyre noise events combination B2
Primary measure of acute sleep disruption by noise, calculated as the difference between the ORP in the 30s prior to noise onset and the maximum ORP during traffic noise. Averaged over all 120 noise events during the night.
Morning neurobehavioural speed in the morning immediately after the Control night
Average of one key speed indicator from each of 10 cognitive tests (motor praxis, visual object learning, fractal 2-back, abstract matching, line orientation, emotion recognition, matrix reasoning, digit symbol substitution, balloon analog risk, psychomotor vigilance)
Morning neurobehavioural speed in the morning immediately after the A1 night
Average of one key speed indicator from each of 10 cognitive tests (motor praxis, visual object learning, fractal 2-back, abstract matching, line orientation, emotion recognition, matrix reasoning, digit symbol substitution, balloon analog risk, psychomotor vigilance)
Morning neurobehavioural speed in the morning immediately after the A2 night
Average of one key speed indicator from each of 10 cognitive tests (motor praxis, visual object learning, fractal 2-back, abstract matching, line orientation, emotion recognition, matrix reasoning, digit symbol substitution, balloon analog risk, psychomotor vigilance)
Morning neurobehavioural speed in the morning immediately after the B1 night
Average of one key speed indicator from each of 10 cognitive tests (motor praxis, visual object learning, fractal 2-back, abstract matching, line orientation, emotion recognition, matrix reasoning, digit symbol substitution, balloon analog risk, psychomotor vigilance)
Morning neurobehavioural speed in the morning immediately after the B2 night
Average of one key speed indicator from each of 10 cognitive tests (motor praxis, visual object learning, fractal 2-back, abstract matching, line orientation, emotion recognition, matrix reasoning, digit symbol substitution, balloon analog risk, psychomotor vigilance)
Morning neurobehavioural accuracy in the morning after the control night
Average of one key accuracy indicator from each of 9 cognitive tests (motor praxis, visual object learning, fractal 2-back, abstract matching, line orientation, emotion recognition, matrix reasoning, digit symbol substitution, psychomotor vigilance)
Morning neurobehavioural accuracy in the morning after exposure to nocturnal tyre noise combination A1
Average of one key accuracy indicator from each of 9 cognitive tests (motor praxis, visual object learning, fractal 2-back, abstract matching, line orientation, emotion recognition, matrix reasoning, digit symbol substitution, psychomotor vigilance)
Morning neurobehavioural accuracy in the morning after exposure to nocturnal tyre noise combination A2
Average of one key accuracy indicator from each of 9 cognitive tests (motor praxis, visual object learning, fractal 2-back, abstract matching, line orientation, emotion recognition, matrix reasoning, digit symbol substitution, psychomotor vigilance)
Morning neurobehavioural accuracy in the morning after exposure to nocturnal tyre noise combination B1
Average of one key accuracy indicator from each of 9 cognitive tests (motor praxis, visual object learning, fractal 2-back, abstract matching, line orientation, emotion recognition, matrix reasoning, digit symbol substitution, psychomotor vigilance)
Morning neurobehavioural accuracy in the morning after exposure to nocturnal tyre noise combination B2
Average of one key accuracy indicator from each of 9 cognitive tests (motor praxis, visual object learning, fractal 2-back, abstract matching, line orientation, emotion recognition, matrix reasoning, digit symbol substitution, psychomotor vigilance)
Baseline evening neurobehavioural speed following the Control night
Average of one key speed indicator from each of 10 cognitive tests (motor praxis, visual object learning, fractal 2-back, abstract matching, line orientation, emotion recognition, matrix reasoning, digit symbol substitution, balloon analog risk, psychomotor vigilance)
Evening neurobehavioural speed after exposure to nocturnal tyre noise combination A1
Average of one key speed indicator from each of 10 cognitive tests (motor praxis, visual object learning, fractal 2-back, abstract matching, line orientation, emotion recognition, matrix reasoning, digit symbol substitution, balloon analog risk, psychomotor vigilance)
Evening neurobehavioural speed after exposure to nocturnal tyre noise combination A2
Average of one key speed indicator from each of 10 cognitive tests (motor praxis, visual object learning, fractal 2-back, abstract matching, line orientation, emotion recognition, matrix reasoning, digit symbol substitution, balloon analog risk, psychomotor vigilance)
Evening neurobehavioural speed after exposure to nocturnal tyre noise combination B1
Average of one key speed indicator from each of 10 cognitive tests (motor praxis, visual object learning, fractal 2-back, abstract matching, line orientation, emotion recognition, matrix reasoning, digit symbol substitution, balloon analog risk, psychomotor vigilance)
Evening neurobehavioural speed after exposure to nocturnal tyre noise combination B2
Average of one key speed indicator from each of 10 cognitive tests (motor praxis, visual object learning, fractal 2-back, abstract matching, line orientation, emotion recognition, matrix reasoning, digit symbol substitution, balloon analog risk, psychomotor vigilance)
Baseline evening neurobehavioural accuracy following the Control night
Average of one key speed indicator from each of 9 cognitive tests (motor praxis, visual object learning, fractal 2-back, abstract matching, line orientation, emotion recognition, matrix reasoning, digit symbol substitution, psychomotor vigilance
Evening neurobehavioural accuracy after exposure to nocturnal tyre noise combination A1
Average of one key speed indicator from each of 9 cognitive tests (motor praxis, visual object learning, fractal 2-back, abstract matching, line orientation, emotion recognition, matrix reasoning, digit symbol substitution, psychomotor vigilance)
Evening neurobehavioural accuracy after exposure to nocturnal tyre noise combination A2
Average of one key speed indicator from each of 9 cognitive tests (motor praxis, visual object learning, fractal 2-back, abstract matching, line orientation, emotion recognition, matrix reasoning, digit symbol substitution, psychomotor vigilance)
Evening neurobehavioural accuracy after exposure to nocturnal tyre noise combination B1
Average of one key speed indicator from each of 9 cognitive tests (motor praxis, visual object learning, fractal 2-back, abstract matching, line orientation, emotion recognition, matrix reasoning, digit symbol substitution, psychomotor vigilance)
Evening neurobehavioural accuracy after exposure to nocturnal tyre noise combination B2
Average of one key speed indicator from each of 9 cognitive tests (motor praxis, visual object learning, fractal 2-back, abstract matching, line orientation, emotion recognition, matrix reasoning, digit symbol substitution, psychomotor vigilance)
Event-related Cardiovascular activation in response to noise during Control night
Change in heart rate (ECG)
Event-related Cardiovascular activation in response to noise during A1
Change in heart rate (ECG)
Event-related Cardiovascular activation in response to noise during A2
Change in heart rate (ECG)
Event-related Cardiovascular activation in response to noise during B1
Change in heart rate (ECG)
Event-related Cardiovascular activation in response to noise during B2
Change in heart rate (ECG)
Evening subjective sleepiness, assessed using the Karolinska Sleepiness Scale on the control night
The scale is a 9-level verbal scale from 1 - "Extremely alert" (best outcome) to 9 - "Very sleepy. great effort to keep alert, fighting sleep" (worst outcome)
Evening subjective sleepiness, assessed using the Karolinska Sleepiness Scale on the A1 night
The scale is a 9-level verbal scale from 1 - "Extremely alert" (best outcome) to 9 - "Very sleepy. great effort to keep alert, fighting sleep" (worst outcome)
Evening subjective sleepiness, assessed using the Karolinska Sleepiness Scale on the A2 night
The scale is a 9-level verbal scale from 1 - "Extremely alert" (best outcome) to 9 - "Very sleepy. great effort to keep alert, fighting sleep" (worst outcome)
Evening subjective sleepiness, assessed using the Karolinska Sleepiness Scale on the B1 night
The scale is a 9-level verbal scale from 1 - "Extremely alert" (best outcome) to 9 - "Very sleepy. great effort to keep alert, fighting sleep" (worst outcome)
Evening subjective sleepiness, assessed using the Karolinska Sleepiness Scale on the B2 night
The scale is a 9-level verbal scale from 1 - "Extremely alert" (best outcome) to 9 - "Very sleepy. great effort to keep alert, fighting sleep" (worst outcome)
Morning subjective sleepiness, assessed using the Karolinska Sleepiness Scale after the control night
The scale is a 9-level verbal scale from 1 - "Extremely alert" (best outcome) to 9 - "Very sleepy. great effort to keep alert, fighting sleep" (worst outcome)
Morning subjective sleepiness, assessed using the Karolinska Sleepiness Scale after the A1 night
The scale is a 9-level verbal scale from 1 - "Extremely alert" (best outcome) to 9 - "Very sleepy. great effort to keep alert, fighting sleep" (worst outcome)
Morning subjective sleepiness, assessed using the Karolinska Sleepiness Scale after the A2 night
The scale is a 9-level verbal scale from 1 - "Extremely alert" (best outcome) to 9 - "Very sleepy. great effort to keep alert, fighting sleep" (worst outcome)
Morning subjective sleepiness, assessed using the Karolinska Sleepiness Scale after the B1 night
The scale is a 9-level verbal scale from 1 - "Extremely alert" (best outcome) to 9 - "Very sleepy. great effort to keep alert, fighting sleep" (worst outcome)
Morning subjective sleepiness, assessed using the Karolinska Sleepiness Scale after the B2 night
The scale is a 9-level verbal scale from 1 - "Extremely alert" (best outcome) to 9 - "Very sleepy. great effort to keep alert, fighting sleep" (worst outcome)
Taurine concentration (mmol/L) immediately after the Control night
Determined from GC-MS analysis of blood plasma
Taurine concentration (mmol/L) in the morning immediately after the Tyre noise combination A1
Determined from GC-MS analysis of blood plasma
Taurine concentration (mmol/L) in the morning immediately after the Tyre noise combination A2
Determined from GC-MS analysis of blood plasma
Taurine concentration (mmol/L) in the morning immediately after the Tyre noise combination B1
Determined from GC-MS analysis of blood plasma
Taurine concentration (mmol/L) in the morning immediately after the Tyre noise combination B2
Determined from GC-MS analysis of blood plasma
Serotonin concentration (mmol/L) In the morning immediately after the Control night
Determined from GC-MS analysis of blood plasma
Serotonin concentration (mmol/L) In the morning immediately after the Tyre noise combination A1
Determined from GC-MS analysis of blood plasma
Serotonin concentration (mmol/L) In the morning immediately after the Tyre noise combination A2
Determined from GC-MS analysis of blood plasma
Serotonin concentration (mmol/L) In the morning immediately after the Tyre noise combination B1
Determined from GC-MS analysis of blood plasma
Serotonin concentration (mmol/L) In the morning immediately after the Tyre noise combination B2
Determined from GC-MS analysis of blood plasma
Tryptophan concentration (mmol/L) In the morning immediately after the Control night
Determined from GC-MS analysis of blood plasma
Tryptophan concentration (mmol/L) In the morning immediately after the Tyre noise combination A1
Determined from GC-MS analysis of blood plasma
Tryptophan concentration (mmol/L) In the morning immediately after the Tyre noise combination A2
Determined from GC-MS analysis of blood plasma
Tryptophan concentration (mmol/L) In the morning immediately after the Tyre noise combination B1
Determined from GC-MS analysis of blood plasma
Tryptophan concentration (mmol/L) In the morning immediately after the Tyre noise combination B2
Determined from GC-MS analysis of blood plasma
Isoleucine concentration (mmol/L) In the morning immediately after the Control night
Determined from GC-MS analysis of blood plasma
Isoleucine concentration (mmol/L) In the morning immediately after the Tyre noise combination A1
Determined from GC-MS analysis of blood plasma
Isoleucine concentration (mmol/L) In the morning immediately after the Tyre noise combination A2
Determined from GC-MS analysis of blood plasma
Isoleucine concentration (mmol/L) In the morning immediately after the Tyre noise combination B1
Determined from GC-MS analysis of blood plasma
Isoleucine concentration (mmol/L) In the morning immediately after the Tyre noise combination B2
Determined from GC-MS analysis of blood plasma
Baseline Leucine concentration (mmol/L) In the morning immediately after the Control night
Determined from GC-MS analysis of blood plasma
Leucine concentration (mmol/L) In the morning immediately after the Tyre noise combination A1
Determined from GC-MS analysis of blood plasma
Leucine concentration (mmol/L) In the morning immediately after the Tyre noise combination A2
Determined from GC-MS analysis of blood plasma
Leucine concentration (mmol/L) In the morning immediately after the Tyre noise combination B1
Determined from GC-MS analysis of blood plasma
Leucine concentration (mmol/L) In the morning immediately after the Tyre noise combination B2
Determined from GC-MS analysis of blood plasma
Baseline Valine concentration (mmol/L) In the morning immediately after the Control night
Determined from GC-MS analysis of blood plasma
Valine concentration (mmol/L)In the morning immediately after the Tyre noise combination A1
Determined from GC-MS analysis of blood plasma
Valine concentration (mmol/L) In the morning immediately after the Tyre noise combination A2
Determined from GC-MS analysis of blood plasma
Valine concentration (mmol/L)In the morning immediately after the Tyre noise combination B1
Determined from GC-MS analysis of blood plasma
Valine concentration (mmol/L) In the morning immediately after the Tyre noise combination B2
Determined from GC-MS analysis of blood plasma
Baseline Diacylglycerol (36:3) concentration (mmol/L) In the morning immediately after the Control night
Determined from GC-MS analysis of blood plasma
Diacylglycerol (36:3) concentration (mmol/L)In the morning immediately after the Tyre noise combination A1
Determined from GC-MS analysis of blood plasma
Diacylglycerol (36:3) concentration (mmol/L) In the morning immediately after the Tyre noise combination A2
Determined from GC-MS analysis of blood plasma
Diacylglycerol (36:3) concentration (mmol/L) In the morning immediately after the Tyre noise combination B1
Determined from GC-MS analysis of blood plasma
Diacylglycerol (36:3) concentration (mmol/L)In the morning immediately after the Tyre noise combination B2
Determined from GC-MS analysis of blood plasma
Baseline Lauroylcarnitine (C12:0) concentration (mmol/L) In the morning immediately after the Control night
Determined from GC-MS analysis of blood plasma
Lauroylcarnitine (C12:0) concentration (mmol/L) In the morning immediately after the Tyre noise combination A1
Determined from GC-MS analysis of blood plasma
Lauroylcarnitine (C12:0) concentration (mmol/L) In the morning immediately after the Tyre noise combination A2
Determined from GC-MS analysis of blood plasma
Lauroylcarnitine (C12:0) concentration (mmol/L)In the morning immediately after the Tyre noise combination B1
Determined from GC-MS analysis of blood plasma
Lauroylcarnitine (C12:0) concentration (mmol/L) In the morning immediately after the Tyre noise combination B2
Determined from GC-MS analysis of blood plasma
Baseline Octanoylcarnitine (C8:0) concentration (mmol/L) In the morning immediately after the Control night
Determined from GC-MS analysis of blood plasma
Octanoylcarnitine (C8:0) concentration (mmol/L) In the morning immediately after the Tyre noise combination A1
Determined from GC-MS analysis of blood plasma
Octanoylcarnitine (C8:0) concentration (mmol/L) In the morning immediately after the Tyre noise combination A2
Determined from GC-MS analysis of blood plasma
Octanoylcarnitine (C8:0) concentration (mmol/L) In the morning immediately after the Tyre noise combination B1
Determined from GC-MS analysis of blood plasma
Octanoylcarnitine (C8:0) concentration (mmol/L) In the morning immediately after the Tyre noise combination B2
Determined from GC-MS analysis of blood plasma
Baseline Myristoylcarnitine (C14:0) concentration (mmol/L) In the morning immediately after the Control night
Determined from GC-MS analysis of blood plasma
Myristoylcarnitine (C14:0) concentration (mmol/L) In the morning immediately after the Tyre noise combination A1
Determined from GC-MS analysis of blood plasma
Myristoylcarnitine (C14:0) concentration (mmol/L) In the morning immediately after the Tyre noise combination A2
Determined from GC-MS analysis of blood plasma
Myristoylcarnitine (C14:0) concentration (mmol/L) In the morning immediately after the Tyre noise combination B1
Determined from GC-MS analysis of blood plasma
Myristoylcarnitine (C14:0) concentration (mmol/L) In the morning immediately after the Tyre noise combination B2
Determined from GC-MS analysis of blood plasma
Baseline 1-Methyl-4-pyridone-5-carboxamide (4-Pyr) concentration (mmol/L) In the morning immediately after the Control night
Determined from GC-MS analysis of blood plasma
1-Methyl-4-pyridone-5-carboxamide (4-Pyr) concentration (mmol/L) In the morning immediately after the Tyre noise combination A1
Determined from GC-MS analysis of blood plasma
1-Methyl-4-pyridone-5-carboxamide (4-Pyr) concentration (mmol/L) In the morning immediately after the Tyre noise combination A2
Determined from GC-MS analysis of blood plasma
1-Methyl-4-pyridone-5-carboxamide (4-Pyr) concentration (mmol/L)In the morning immediately after the Tyre noise combination B1
Determined from GC-MS analysis of blood plasma
1-Methyl-4-pyridone-5-carboxamide (4-Pyr) concentration (mmol/L) In the morning immediately after the Tyre noise combination B2
Determined from GC-MS analysis of blood plasma
Baseline Phenylalanine concentration (mmol/L) In the morning immediately after the Control night
Determined from GC-MS analysis of blood plasma
Phenylalanine concentration (mmol/L) In the morning immediately after the Tyre noise combination A1
Determined from GC-MS analysis of blood plasma
Phenylalanine concentration (mmol/L) In the morning immediately after the Tyre noise combination A2
Determined from GC-MS analysis of blood plasma
Phenylalanine concentration (mmol/L) In the morning immediately after the Tyre noise combination B1
Determined from GC-MS analysis of blood plasma
Phenylalanine concentration (mmol/L) In the morning immediately after the Tyre noise combination B2
Determined from GC-MS analysis of blood plasma
Baseline Acylcarnitine C18:1 concentration (mmol/L) In the morning immediately after the Control night
Determined from GC-MS analysis of blood plasma
Acylcarnitine C18:1 concentration (mmol/L) In the morning immediately after the Tyre noise combination A1
Determined from GC-MS analysis of blood plasma
Acylcarnitine C18:1 concentration (mmol/L) In the morning immediately after the Tyre noise combination A2
Determined from GC-MS analysis of blood plasma
Acylcarnitine C18:1 concentration (mmol/L) In the morning immediately after the Tyre noise combination B1
Determined from GC-MS analysis of blood plasma
Acylcarnitine C18:1 concentration (mmol/L) In the morning immediately after the Tyre noise combination B2
Determined from GC-MS analysis of blood plasma
Baseline Acylcarnitine C10:0 concentration (mmol/L) In the morning immediately after the Control night
Determined from GC-MS analysis of blood plasma
Acylcarnitine C10:0 concentration (mmol/L) In the morning immediately after the Tyre noise combination A1
Determined from GC-MS analysis of blood plasma
Acylcarnitine C10:0 concentration (mmol/L) In the morning immediately after the Tyre noise combination A2
Determined from GC-MS analysis of blood plasma
Acylcarnitine C10:0 concentration (mmol/L) In the morning immediately after the Tyre noise combination B1
Determined from GC-MS analysis of blood plasma
Acylcarnitine C10:0 concentration (mmol/L) In the morning immediately after the Tyre noise combination B2
Determined from GC-MS analysis of blood plasma
Baseline Phosphatidylcholine 32:1 concentration (mmol/L) In the morning immediately after the Control night
Determined from GC-MS analysis of blood plasma
Phosphatidylcholine 32:1 concentration (mmol/L) In the morning immediately after the Tyre noise combination A1
Determined from GC-MS analysis of blood plasma
Phosphatidylcholine 32:1 concentration (mmol/L)In the morning immediately after the Tyre noise combination A2
Determined from GC-MS analysis of blood plasma
Phosphatidylcholine 32:1 concentration (mmol/L) In the morning immediately after the Tyre noise combination B1
Determined from GC-MS analysis of blood plasma
Phosphatidylcholine 32:1 concentration (mmol/L) In the morning immediately after the Tyre noise combination B2
Determined from GC-MS analysis of blood plasma
Basline Phosphatidylcholine 38:2 concentration (mmol/L) In the morning immediately after the Control night
Determined from GC-MS analysis of blood plasma
Phosphatidylcholine 38:2 concentration (mmol/L) In the morning immediately after the Tyre noise combination A1
Determined from GC-MS analysis of blood plasma
Phosphatidylcholine 38:2 concentration (mmol/L) In the morning immediately after the Tyre noise combination A2
Determined from GC-MS analysis of blood plasma
Phosphatidylcholine 38:2 concentration (mmol/L) In the morning immediately after the Tyre noise combination B1
Determined from GC-MS analysis of blood plasma
Phosphatidylcholine 38:2 concentration (mmol/L) In the morning immediately after the Tyre noise combination B2
Determined from GC-MS analysis of blood plasma
Baseline Phosphatidylcholine 38:3 concentration (mmol/L) In the morning immediately after the Control night
Determined from GC-MS analysis of blood plasma
Phosphatidylcholine 38:3 concentration (mmol/L) In the morning immediately after the Tyre noise combination A1
Determined from GC-MS analysis of blood plasma
Phosphatidylcholine 38:3 concentration (mmol/L) In the morning immediately after the Tyre noise combination A2
Determined from GC-MS analysis of blood plasma
Phosphatidylcholine 38:3 concentration (mmol/L) In the morning immediately after the Tyre noise combination B1
Determined from GC-MS analysis of blood plasma
Phosphatidylcholine 38:3 concentration (mmol/L) In the morning immediately after the Tyre noise combination B2
Determined from GC-MS analysis of blood plasma