Skip to content

Acute Health Effects of Low Temperature Exposure

Acute Health Effects of Low Temperature Exposure in Healthy Young Adults: A Randomized Controlled Study

Status
Active, not recruiting
Phases
Unknown
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT06076629
Enrollment
50
Registered
2023-10-11
Start date
2023-10-10
Completion date
2026-12-31
Last updated
2026-09-02

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Cardiovascular System, Cognitive Function, Respiratory System

Keywords

Low temperature, Randomized controlled trial, Cardiopulmonary effects, Cognitive function

Brief summary

This is a randomized controlled human exposure crossover study. Investigators aims to assess the acute effects of low temperature exposure and the underlying mechanisms.

Detailed description

The investigators will conduct a randomized controlled human exposure crossover study among about 50 healthy young adults in Shanghai, China. Each subject will be exposed twice: once to the low temperature (16#) and once to the moderate temperature (22#) in a chamber for about 2-2.5 hours. During the exposure session, each subject will be requested to rest. Health examinations will be conducted immediately prior to exposure (within 1 hour before the exposure session), during the period of exposure, and after exposure (within 2 hours after the exposure session). Health examinations include spirometry, Holter monitoring, blood pressure tests, cognitive function tests, symptom questionnaires, and magnetic resonance imaging. Investigators plan to collect blood, urine, exhaled breath condensate, and oropharyngeal swabs samples.

Interventions

OTHERLow temperature (16#) group

The exposure group will be exposed to low temperature (16#) in a chamber for about 2 hours, resting during the whole periods.

OTHERModerate temperature (22#) group

The exposure group will be exposed to thermoneutral temperature (22#) in a chamber for about 2 hours, resting during the whole periods.

Sponsors

Fudan University
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
CROSSOVER
Primary purpose
PREVENTION
Masking
SINGLE (Outcomes Assessor)

Eligibility

Sex/Gender
ALL
Age
18 Years to 30 Years
Healthy volunteers
Yes

Inclusion criteria

* Living in Shanghai during the study period; * Body mass index \> 18.5 and ≤ 28; * Right-handed; * Receiving or having received higher education; * With the ability to read and understand Chinese smoothly.

Exclusion criteria

* Smoking and alcohol abuse; * Current drug and dietary supplements intake; * Subjects with allergic diseases, such as allergic rhinitis, allergic asthma, and atopy; * Subjects with cardiovascular diseases, such as congenital heart disease, pulmonary heart disease, and hypertension; * Subjects with respiratory diseases, such as asthma, chronic bronchitis, and chronic obstructive pulmonary disease; * Subjects with chronic diseases, such as diabetes, chronic hepatitis, and kidney disease; * Subjects who have a history of major surgery due to cardiovascular, cerebrovascular, respiratory, or neurological diseases; * Subjects with neurologic disorders, such as stroke, traumatic brain injury, epilepsy, and schizophrenia; * Abnormal spirometry (FEV1 and FVC ≤ 75% of predicted and FEV1/FVC ≤ 0.65); * Subjects with color vision disabilities.

Design outcomes

Primary

MeasureTime frameDescription
Heart Rate Variability ParametersVolunteers will be asked to wear electrographic Holter monitors for 24 hours from 1:00 P.M. at the day of intervention to 1:00 P.M. at the next day.Investigators plan to measure heart rate variability (HRV) parameters (e.g., SDNN, PNN50, LF, HF)
Blood PressureBlood pressure will be examined before exposure and immediately after the exposure sessionThe changes of systolic blood pressure (SBP) and diastolic blood pressure (DBP) will be measured.
Forced vital capacityLung function will be examined before exposure and half an hour after the exposure sessionInvestigators plan to measure forced vital capacity (FVC) by spirometry
Forced expiratory volume in one secondLung function will be examined before exposure and half an hour after the exposure sessionInvestigators plan to measure forced expiratory volume in one second (FEV1) by spirometry.
Maximal mid-expiratory flowLung function will be examined before exposure and half an hour after the exposure sessionInvestigators plan to measure maximal mid-expiratory flow (MMEF) by spirometry.
Results of Stroop TestsThe tests will be conducted before exposure and immediately after the exposure sessionInvestigators plan to measure the changes of cognitive function using Stroop Test.

Secondary

MeasureTime frameDescription
Changes of skin temperatureSkin temperature will be examined from 1:00 P.M. to 4:30 P.M. at the day of interventionThe changes of wrist skin temperature will be measured
Results of simple reaction timeSimple reaction time will be examined before exposure and immediately after the exposure sessionInvestigators plan to measure the changes of cognitive function using visual simple reaction time test.
Results of visual memoryVisual memory will be examined before exposure and immediately after the exposure sessionInvestigators plan to measure the changes of cognitive function using visual memory test. Every level, a number of tiles will flash white. The participants will be required to memorize them, and pick them again after the tiles are reset. Higher levels refer to better visual memory.
Activated brain regions demonstrating brain activity related to the low temperature exposureMRI will be examined 1 hour after the exposure sessionInvestigators plan to conduct magnetic resonance imaging (MRI) after exposure. The MRI data will be processed through Data Processing and Analysis for Brain Imaging (DPABI) sofrware to obtain brain activity parameters, such as fractional amplitude of low-frequency fluctuation (fALFF). Brain regions that change after exposure between the two groups would be further idenfitied.
Changes in cerebral hemodynamics demonstrating brain activity related to the low temperature exposurefNIRS will be examined before exposure and immediately after the exposure sessionInvestigators plan to conduct functional near-infrared spectroscopy (fNIRS) to measure the changes in oxygenated hemoglobin and deoxygenated hemoglobin after exposure. Matlab would be applied to process data and evaluate the changes in cerebral hemodynamics associated with low temperature exposure

Countries

China

Contacts

STUDY_DIRECTORHaidong Kan, PhD

Department of Environmental Health, School of Public Health, Fudan University

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Sep 3, 2026