The Best Temperature for Sleep: Advice & Tips | Sleep Foundation (2024)

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Danielle Pacheco Staff Writer

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Danielle Pacheco

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Danielle is originally from Vancouver, BC, where she has spent many hours staring at her ceiling trying to fall asleep. Danielle studied the science of sleep with a degree in psychology at the University of British Columbia

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Heather Wright Pathologist

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Dr. Wright, M.D., is an Anatomic and Clinical Pathologist with a focus on hematopathology. She has a decade of experience in the study of disease.

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Table of Contents

Key Takeaways

  • The ideal temperature for sleep is between 60-68°F.
  • Thermoregulation during sleep is a crucial factor to sleep quality.
  • Your body’s temperature naturally drops as you sleep so a cooler room makes it easier to fall and stay asleep.
  • Optimize your bedroom by reducing heat build-up during the day, turning down the thermostat at night, and investing in cooling bedding materials.

The temperature of your bedroom can make a significant difference to your sleep quality. The best room temperature for sleep is approximately 65 degrees Fahrenheit (18.3 degrees Celsius). This may vary by a few degrees from person to person, but most doctors recommend keeping the thermostat set between 60 to 68 degrees Fahrenheit (15.6 to 20 degrees Celsius) for the most comfortable sleep.

The Best Sleep Temperature for Infants

Infants may benefit from a bedroom that is one or two degrees warmer, up to 69 degrees Fahrenheit (20.5 degrees Celsius). As their bodies are smaller and still developing, they are more sensitive to changes in ambient temperature.

A bedroom that is too warm may increase the risk of sudden infant death syndrome (SIDS). It is recommended to use approved sleepwear, ensure a favorable temperature by setting the thermostat, and avoid blankets. Parents can monitor their baby’s temperature during the night by touching their stomach or the back of their neck.

Some research suggests that babies achieve temperature maturation by eleven weeks of age Trusted Source National Library of Medicine, Biotech InformationThe National Center for Biotechnology Information advances science and health by providing access to biomedical and genomic information.View Source , on average. At this point, they start to reach a minimum core body temperature of 97.5 degrees Fahrenheit (36.4 degrees Celsius) within four hours of bedtime, similar to adults.

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How Does Temperature Affect Sleep?

The sleep cycle is regulated by the circadian rhythm. The circadian rhythm is based on the light-and-dark cycle of the sun and controlled by a part of the brain called the suprachiasmatic nucleus, located in the hypothalamus. This master “body clock” gets its cues from a number of environmental and personal factors, ranging from the amount of light exposure (most significant), to exercise, and temperature.

Your core body temperature Trusted Source National Library of Medicine, Biotech InformationThe National Center for Biotechnology Information advances science and health by providing access to biomedical and genomic information.View Source generally hovers around 98.6 degrees Fahrenheit (37 degrees Celsius), but fluctuates by about 2 degrees Fahrenheit Trusted Source National Library of Medicine, Biotech InformationThe National Center for Biotechnology Information advances science and health by providing access to biomedical and genomic information.View Source throughout the night. The drop in temperature starts about two hours before you go to sleep, coinciding with the release of the sleep hormone melatonin Trusted Source National Library of Medicine, Biotech InformationThe National Center for Biotechnology Information advances science and health by providing access to biomedical and genomic information.View Source . During sleep, body temperature continues to fall, reaching a low point in the early morning and then gradually warming up as the morning progresses. Lowering the thermostat at night can work in tandem with these natural temperature fluctuations, signaling to the body that bedtime is approaching.

The principal way in which the body cools itself down for sleep is by sending heat away from the core. In a process called vasodilation, the circadian clock sends a signal to increase blood flow to the extremities. This is why some people may experience warm hands and feet – which can be mistaken for overall body temperature – at night. Additionally, people who have chronically cold feet Trusted Source National Library of Medicine, Biotech InformationThe National Center for Biotechnology Information advances science and health by providing access to biomedical and genomic information.View Source may be at higher risk for sleep-onset insomnia, possibly due to a disruption of this process.

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What Happens When Your Bedroom Is Too Hot?

Warmer temperatures can cause discomfort and restlessness, and anyone who has slept in a stuffy bedroom can attest that it is hard to nod off when they are sweaty and dehydrated. A bedroom that is too warm can interfere with the body’s thermoregulation abilities and cause fatigue Trusted Source National Library of Medicine, Biotech InformationThe National Center for Biotechnology Information advances science and health by providing access to biomedical and genomic information.View Source . Often, a person who is fatigued will feel physically and mentally tired, but unable to fall asleep.

Body temperature also affects sleep quality and the time spent in different sleep stages. A higher core body temperature has been associated with a decrease in restorative slow-wave sleep Trusted Source National Library of Medicine, Biotech InformationThe National Center for Biotechnology Information advances science and health by providing access to biomedical and genomic information.View Source and subjective sleep quality. Similarly, a bigger difference in temperature between the core and the extremities – which indicates that the body is not efficiently sending heat away from the core – has been associated with decreased sleep efficiency Trusted Source National Library of Medicine, Biotech InformationThe National Center for Biotechnology Information advances science and health by providing access to biomedical and genomic information.View Source and a higher likelihood of waking up after falling asleep.

During REM sleep, the body ceases most temperature-regulation Trusted Source ElsevierElsevier is a publishing company that aims to help researchers and health care professionals advance science and improve health outcomes for the benefit of society.View Source behaviors such as sweating or shivering, leaving you more sensitive to ambient temperature changes. Accordingly, excessively hot ambient temperatures also appear to lessen the time spent in REM sleep Trusted Source National Center for Biotechnology InformationThe National Center for Biotechnology Information advances science and health by providing access to biomedical and genomic information.View Source .

While a cold bedroom temperature is not considered to be as detrimental as an overly warm bedroom temperature, this can also cause discomfort and may have ramifications for REM sleep and blood pressure. In addition to causing grogginess the next day, a decrease in REM and slow-wave sleep can negatively impact bodily recovery and the immune system, as well as learning, memory, and other processes.

Tips for Keeping the Bedroom Cool

There are a number of ways to optimize your bedroom temperature for sleeping, including:

  • Closing the blinds to reduce heat build-up during the day
  • Moving downstairs during the summer
  • Turning down the thermostat at night
  • Using a fan or air conditioner in hot climates, or a hot water bottle on cold nights
  • Opening the windows to promote ventilation
  • Controlling bedroom humidity
  • Reducing sweating by using the best mattress, sheets, duvet, comforter, pillow, and pajamas for temperature regulation
  • Taking a warm bath Trusted Source National Library of Medicine, Biotech InformationThe National Center for Biotechnology Information advances science and health by providing access to biomedical and genomic information.View Source an hour or two before bedtime to encourage a natural cool-down effect

In addition to optimizing the temperature of your sleep environment, you can help your body prepare for sleep by supporting your internal thermostat. As the circadian rhythm is sensitive to fluctuations in light, diet, and exercise, the timing of these activities can impact body temperature, and potentially sleepiness.

Sleep hygiene habits like going to bed at the same time every night, avoiding caffeine and alcohol before bed, and keeping a dark, quiet bedroom will help you set your body clock and sleeping temperature on a consistent schedule.

The Best Temperature for Sleep: Advice & Tips | Sleep Foundation (32)

Written By

Danielle Pacheco,Staff Writer

Danielle is originally from Vancouver, BC, where she has spent many hours staring at her ceiling trying to fall asleep. Danielle studied the science of sleep with a degree in psychology at the University of British Columbia

The Best Temperature for Sleep: Advice & Tips | Sleep Foundation (33)

Medically Reviewed by

Heather Wright,PathologistMD

Dr. Wright, M.D., is an Anatomic and Clinical Pathologist with a focus on hematopathology. She has a decade of experience in the study of disease.

Learn more about our Editorial Team

References

11 Sources

  1. Joseph, D., Chong, N. W., Shanks, M. E., Rosato, E., Taub, N. A., Petersen, S. A., Symonds, M. E., Whitehouse, W. P., & Wailoo, M. (2015). Getting rhythm: How do babies do it? Archives of Disease in Childhood. Fetal and Neonatal Edition, 100(1), F50–F54.

    https://pubmed.ncbi.nlm.nih.gov/25245173/
  2. Del Bene, V.E. (1990). Temperature. In H. K. Walker, W. D. Wall, J. W. Hurst. (Eds.). Clinical Methods: The History, Physical, and Laboratory Examinations (Chapter 18). 3rd edition. Boston: Butterworths.

    https://www.ncbi.nlm.nih.gov/books/NBK331/
  3. Harding, E. C., Franks, N. P., & Wisden, W. (2020). Sleep and thermoregulation. Current Opinion in Physiology, 15, 7–13.

    https://pubmed.ncbi.nlm.nih.gov/32617439/
  4. Lok, R., van Koningsveld, M. J., Gordijn, M., Beersma, D., & Hut, R. A. (2019). Daytime melatonin and light independently affect human alertness and body temperature. Journal of pineal research, 67(1), e12583.

    https://pubmed.ncbi.nlm.nih.gov/31033013/
  5. Kräuchi K. (2007). The thermophysiological cascade leading to sleep initiation in relation to phase of entrainment. Sleep medicine reviews, 11(6), 439–451.

    https://pubmed.ncbi.nlm.nih.gov/17764994/
  6. Fujii, H., f*ckuda, S., Narumi, D., Ihara, T., & Watanabe, Y. (2015). Fatigue and sleep under large summer temperature differences. Environmental Research, 138, 17–21.

    https://pubmed.ncbi.nlm.nih.gov/25682254/
  7. Kräuchi, K., Fattori, E., Giordano, A., Falbo, M., Iadarola, A., Aglì, F., Tribolo, A., Mutani, R., & Cicolin, A. (2018). Sleep on a high heat capacity mattress increases conductive body heat loss and slow wave sleep. Physiology & behavior, 185, 23–30.

    https://linkinghub.elsevier.com/retrieve/pii/S0031938417304365
  8. McHill, A. W., Smith, B. J., & Wright, K. P., Jr (2014). Effects of caffeine on skin and core temperatures, alertness, and recovery sleep during circadian misalignment. Journal of biological rhythms, 29(2), 131–143.

    http://journals.sagepub.com/doi/10.1177/0748730414523078
  9. Komagata, N., Latifi, B., Rusterholz, T., Bassetti, C., Adamantidis, A., & Schmidt, M. H. (2019). Dynamic REM sleep modulation by ambient temperature and the critical role of the melanin-concentrating hormone system. Current Biology, 29(12), 1976–1987.e4.

    https://linkinghub.elsevier.com/retrieve/pii/S0960982219305421
  10. Okamoto-Mizuno, K., & Mizuno, K. (2012). Effects of thermal environment on sleep and circadian rhythm. Journal of Physiological Anthropology, 31(1), 14.

    https://pubmed.ncbi.nlm.nih.gov/22738673/
  11. Haghayegh, S., Khoshnevis, S., Smolensky, M. H., Diller, K. R., & Castriotta, R. J. (2019). Before-bedtime passive body heating by warm shower or bath to improve sleep: A systematic review and meta-analysis. Sleep Medicine Reviews, 46, 124–135.

    https://pubmed.ncbi.nlm.nih.gov/31102877/

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As an expert in sleep science and health, I have delved into various aspects of sleep, including the impact of environmental factors on sleep quality. My expertise is based on a comprehensive understanding of sleep physiology, circadian rhythms, and the intricate interplay between the body and sleep-inducing factors.

In the presented article on sleep products, the focus is on the crucial role of bedroom temperature in optimizing sleep quality. The article emphasizes that the ideal room temperature for sleep falls within the range of 60-68°F (15.6-20°C). This recommendation aligns with established knowledge in sleep science, which underscores the significance of thermoregulation during sleep.

The article discusses the impact of temperature on the sleep cycle, citing the circadian rhythm as the master regulator influenced by various environmental factors, including temperature. It accurately points out that the body's core temperature naturally drops during sleep, facilitating the onset and maintenance of sleep. Moreover, it highlights the importance of a cooler sleep environment in sync with the body's natural cooling process.

A notable aspect of the article is its consideration of different sleeper types, specifically addressing the best sleep temperature for infants. It rightly acknowledges that infants may benefit from a slightly warmer room temperature, up to 69°F (20.5°C), due to their smaller bodies and sensitivity to temperature changes.

Furthermore, the article explores the science behind how temperature affects sleep quality. It explains that higher core body temperature has been associated with a decrease in restorative slow-wave sleep, emphasizing the importance of maintaining an optimal sleep temperature for overall sleep architecture.

To assist readers in achieving the recommended sleep temperature, the article provides practical tips, such as closing blinds, using fans or air conditioners, and choosing appropriate bedding materials. These suggestions align with sleep hygiene practices, emphasizing the creation of a comfortable and conducive sleep environment.

In conclusion, the presented article effectively combines scientific principles with practical recommendations, offering valuable insights into the relationship between temperature and sleep quality. The information provided is consistent with established knowledge in sleep science, demonstrating a well-researched and expertly curated resource for individuals seeking to enhance their sleep experience.

The Best Temperature for Sleep: Advice & Tips | Sleep Foundation (2024)
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