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Assessing the Effect of Cool Roofs on Health Using Smartwatches

A Randomized Controlled Trial (RCT) Evaluating the Effects of Cool Roofs on Health Outcomes Using Smartwatches: a Global Multi-center Study

Status
Active, not recruiting
Phases
Unknown
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT06579963
Acronym
REFLECT
Enrollment
800
Registered
2024-08-30
Start date
2024-09-04
Completion date
2027-09-01
Last updated
2026-02-27

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

Conditions

Active Minutes, All-day Steps, Awake Duration, Distance Walked, Heart Rate, Moderate-intensity Activity Minutes, Sleep Quantity, Sleep Score, Time in Sleep Stages, Vigorous-intensity Activity Duration

Keywords

Hot Temperature, Humidity, Housing, Wearable, Smartwatch, Heart rate, Cardiovascular, Physical activity, Sleep, Cool roof, Heat stress

Brief summary

Ambient air temperatures in Asian, Latin American, African, and Pacific climate hotspots have broken record highs in 2024. Solutions are needed to build heat resilience in communities and adapt to increasing heat from climate change. Sunlight-reflecting cool roof coatings may passively reduce indoor temperatures and energy use to protect home occupants from extreme heat. Occupants living in poor housing conditions globally - for example in informal settlements, slums, and low-socioeconomic households - are susceptible to increased heat exposure. Heat exposure can instigate and worsen numerous physical, mental and social health conditions. The worst adverse health effects are experienced in communities that are least able to adapt to heat exposure. By reducing indoor temperatures, cool roof application may improve heart health, sleep and physical activity in household occupants. The long-term research goal is to identify viable passive housing adaptation technologies with proven health benefits to reduce the burden of heat stress in communities affected by heat globally. To meet this goal, the investigators will use smartwatches to measure the effects cool roof application on heart health, sleep and physical activity in four urban climate hotspots: Ouagadougou, Burkina Faso; Hermosillo, Mexico; Ahmedabad, India; and Niue, Oceania.

Detailed description

Increasing heat exposure from climate change is causing and exacerbating heat-related illnesses in millions worldwide - particularly in low resource settings. June 2024 was the 13th consecutive hottest month on record globally - shattering previous records. Heat exposure can instigate and worsen numerous health conditions. Adaptation is essential for protecting people from increasing heat exposure. The built environment, especially homes, are ideal for deploying interventions to reduce heat exposure and accelerate adaptation efforts. However, evidence is currently lacking on a global scale - generated through empirical studies - guiding the uptake of interventions to reduce indoor heat stress in low resource settings. Sunlight-reflecting cool roof coatings passively reduce indoor temperatures and lower energy use, offering protection to home occupants from extreme heat. Continuous monitoring of health and wellbeing using smartwatches can provide insight into important parameters such as heart rate, sleep and physical activity - which are all affected by heat. Using smartwatches, the investigators will also continuously measure health and wellbeing outcomes during the day and night. The investigators will conduct a global multi-centre study to investigate the effects of cool-roof use on heart rate, sleep and physical activity in four urban climate hotspots - Ouagadougou, Burkina Faso (sub-Saharan Africa), Ahmedabad, India (Asia), Niue (Oceania), and Sonora, Mexico (Latin America). These sites represent hotspots where people experience a triple burden from heat exposure, chronic health issues and vulnerable housing conditions (slums, informal settlements and low socioeconomic housing). They also exhibit diversity in climate profiles, housing typology, level of socioeconomic development, population density and rates of urbanisation. This trial will quantify whether cool roofs are an effective passive home cooling intervention with beneficial health effects for vulnerable populations in four locations. Findings will inform global policy responses on scaling cool roof implementation to protect people from increasing heat exposure driven by climate change.

Interventions

Cool roofs are a sunlight reflecting roof coating that can reduce indoor temperature. Cool roofs have high solar reflectance (reflecting the ultraviolet and visible wavelengths of sunlight, reducing heat transfer to the surface of a roof) and high thermal emittance (radiating absorbed solar energy).

Sponsors

Aditi Bunker
Lead SponsorOTHER
Sika Services AG
CollaboratorUNKNOWN
SOPREMA
CollaboratorUNKNOWN
Engineered Polymer Solutions (EPS B.V.)
CollaboratorUNKNOWN
Resene
CollaboratorINDUSTRY
Pacific Community
CollaboratorOTHER
Habitat for Humanity
CollaboratorOTHER
The Tindall Foundation
CollaboratorOTHER
Labfront
CollaboratorINDUSTRY
Instituto Tecnológico de Hermosillo
CollaboratorUNKNOWN
University of Ouagadougou, Burkina Faso
CollaboratorOTHER
Indian Institute of Public Health, India
CollaboratorOTHER
Boston University
CollaboratorOTHER
Rutgers University
CollaboratorOTHER
London School of Hygiene and Tropical Medicine
CollaboratorOTHER
Heidelberg University
CollaboratorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
PREVENTION
Masking
DOUBLE (Investigator, Outcomes Assessor)

Masking description

Trial participants will be aware of the intervention to which they have been allocated, and the research fieldworkers will be aware of the intervention allocation. The trial steering committee members and trial statistician will remain blinded until the end of trial period and data collection.

Eligibility

Sex/Gender
ALL
Age
18 Years to No maximum
Healthy volunteers
Yes

Inclusion criteria

* Permanent household resident

Exclusion criteria

* Roof damage, inaccessible or instability of roof adversely affecting cool roof coating application. * Participant unable to provide written/verbal informed consent. Participants will be excluded if they are not willing or able to wear a smartwatch. * In Mexico and Niue, participants will be excluded if they do not have a smartphone with an internet connection that can connect to the smartwatch. * Only one participant per household.

Design outcomes

Primary

MeasureTime frameDescription
Heart rateSmartwatches will be worn for two consecutive weeks per month. Eight measurement points will be taken: one at baseline and seven over 12 months, covering three consecutive hottest months and four alternate months.Heart rate in beats per minute measured at 15-second intervals using Garmin Vivosmart 5 devices.

Secondary

MeasureTime frameDescription
All-day stepsSmartwatches will be worn for two consecutive weeks per month. Eight measurement points will be taken: one at baseline and seven over 12 months, covering three consecutive hottest months and four alternate months.The number of steps measured daily using Garmin Vivosmart 5 devices.
Active minutesSmartwatches will be worn for two consecutive weeks per month. Eight measurement points will be taken: one at baseline and seven over 12 months, covering three consecutive hottest months and four alternate months.The total number of minutes of active exercise daily using Garmin Vivosmart 5 devices.
Distance walkedSmartwatches will be worn for two consecutive weeks per month. Eight measurement points will be taken: one at baseline and seven over 12 months, covering three consecutive hottest months and four alternate months.The total distance walked daily using Garmin Vivosmart 5 devices.
Moderate-intensity activity minutesMeasuSmartwatches will be worn for two consecutive weeks per month. Eight measurement points will be taken: one at barements will be taken continuously for 12 months. Participants will be asked to wear their smartwatch for at least two weeks every month.The total number of minutes of moderate-intensity activity daily using Garmin Vivosmart 5 devices.
Vigorous-intensity activity durationSmartwatches will be worn for two consecutive weeks per month. Eight measurement points will be taken: one at baseline and seven over 12 months, covering three consecutive hottest months and four alternate months.The total number of minutes of vigorous-intensity activity daily using Garmin Vivosmart 5 devices.
Sleep quantitySmartwatches will be worn for two consecutive weeks per month. Eight measurement points will be taken: one at baseline and seven over 12 months, covering three consecutive hottest months and four alternate months.The number of hours spent asleep each night using Garmin Vivosmart 5 devices.
Time in sleep stagesSmartwatches will be worn for two consecutive weeks per month. Eight measurement points will be taken: one at baseline and seven over 12 months, covering three consecutive hottest months and four alternate months.The number of hours spent in sleep stages each night using Garmin Vivosmart 5 devices.
Awake durationSmartwatches will be worn for two consecutive weeks per month. Eight measurement points will be taken: one at baseline and seven over 12 months, covering three consecutive hottest months and four alternate months.The number of hours spent awake during sleep time each night using Garmin Vivosmart 5 devices.
Sleep scoreSmartwatches will be worn for two consecutive weeks per month. Eight measurement points will be taken: one at baseline and seven over 12 months, covering three consecutive hottest months and four alternate months.The Garmin sleep score (0-100) each night using Garmin Vivosmart 5 devices. A higher score means a better outcome.

Countries

Burkina Faso, India, Mexico, Niue

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 28, 2026