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Thermoregulation control in the brain

Different Sensory Pathways Engaged in Feeling and Responding to External Temperature

Summary: Researchers shed light on thermoregulation by disabling parts of rat brains and observing their choice of a comfortable environmental temperature. The findings could provide new understanding of conditions such as heatstroke.
Source: Nagoya University.

To maintain the body at an appropriate temperature despite changes in the environment, there are a number of physiological and behavioral responses that can be adopted, such as shivering or moving into or out of direct sunlight. Although these responses are well understood, there is still a lack of understanding of the nerve and brain pathways that control them.

Researchers at the Department of Integrative Physiology at Nagoya University Graduate School of Medicine have boosted our knowledge of sensing external temperature and responding to it to maintain body temperature, known as “thermoregulation,” by disabling parts of the brain in rats and then observing the animals’ choices of a comfortable environmental temperature. The new findings, recently published in Scientific Reports, could also help us understand conditions in which these regulatory systems go awry, such as heatstroke.

The team built on earlier studies that suggested the involvement of two brain/neural sensory pathways in thermoregulation, namely, the spinothalamocortical (STC) pathway and the lateral parabrachial nucleus-hypothalamus preoptic area (LPB-POA) pathway. They injected toxic substances into parts of the brain involved in each of these pathways to disable them, and then investigated how this influenced the “feeling” of temperature changes and responses to such changes.

“We tested the thermal responses of rats using an arrangement with two floor plates of different temperatures,” Takaki Yahiro says. “In control conditions, the rats preferred to stay on the 28°C plate, rather than the 15°C or 38°C one.” He adds, “When we injected a toxin into part of the brain involved in the STC pathway, surprisingly, we found that the rats still showed this temperature preference, even though they had lost their ability to ‘feel’ temperature in the primary somatosensory cortex.”

However, when part of the LPB pathway was instead disabled by injecting another toxin, the rats no longer tried to avoid the hot and cold plates. Measuring their body temperature also revealed that their brains had warmed up to a hyperthermic state when they had been on a warm plate, showing that the body’s ability to regulate its core temperature had been damaged.

Image shows a diagram explaining the thermoceptors.

“These findings show the different functions of these two sensory pathways in ‘feeling’ external temperature changes and in actually responding to these changes behaviorally,” Kazuhiro Nakamura says. “We can now pursue a much better understanding of the circuits that control thermal comfort and how these help the temperature of the body to be maintained.”

The team hopes to build on this work by obtaining detailed findings on the specific groups of neurons involved in the pathways and on the involvement of emotion-related parts of the brain in thermoregulation and the behavior of seeking thermal comfort.

ABOUT THIS NEUROSCIENCE RESEARCH ARTICLE

Funding: Funding provided by Ministry of Education, Culture, Sports, Science and Technology of Japan, Japan Science and Technology Agency, Hori Science and Art Foundation, Takeda Science Foundation, and others.

Source: Koomi Sung – Nagoya University
Image Source: NeuroscienceNews.com image is credited to Kazuhiro Nakamura.
Original Research: Full open access research for “The lateral parabrachial nucleus, but not the thalamus, mediates thermosensory pathways for behavioural thermoregulation” by Takaki Yahiro, Naoya Kataoka, Yoshiko Nakamura & Kazuhiro Nakamura in Scientific Reports. Published online July 10 2017 doi:10.1038/s41598-017-05327-8

CITE THIS NEUROSCIENCENEWS.COM ARTICLE
Nagoya University “Different Sensory Pathways Engaged in Feeling and Responding to External Temperature.” NeuroscienceNews. NeuroscienceNews, 3 August 2017.
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Abstract

The lateral parabrachial nucleus, but not the thalamus, mediates thermosensory pathways for behavioural thermoregulation

Thermoregulatory behaviour, such as migration to a comfortable thermal environment, is a representative innate animal behaviour and facilitates effective autonomic regulation of body temperature with a reduced cost of resources. Here we determine the central thermosensory ascending pathway that transmits information on environmental temperature from cutaneous thermoreceptors to elicit thermoregulatory behaviour. To examine the contribution of the spinothalamocortical pathway, which is known to mediate thermosensory transmission for perception of skin temperature, we lesioned thalamic regions mediating this pathway in rats. Thalamic-lesioned rats showed compromised electroencephalographic responses in the primary somatosensory cortex to changes in skin temperature, indicating functional ablation of the spinothalamocortical pathway. However, these lesioned rats subjected to a two-floor innocuous thermal plate preference test displayed intact heat- and cold-avoidance thermoregulatory behaviours. We then examined the involvement of the lateral parabrachial nucleus (LPB), which mediates cutaneous thermosensory signaling to the thermoregulatory center for autonomic thermoregulation. Inactivation of neurons in the LPB eliminated both heat- and cold-avoidance thermoregulatory behaviours and ablated heat defense. These results demonstrate that the LPB, but not the thalamus, mediates the cutaneous thermosensory neural signaling required for behavioural thermoregulation, contributing to understanding of the central circuit that generates thermal comfort and discomfort underlying thermoregulatory behaviours.

“The lateral parabrachial nucleus, but not the thalamus, mediates thermosensory pathways for behavioural thermoregulation” by Takaki Yahiro, Naoya Kataoka, Yoshiko Nakamura & Kazuhiro Nakamura in Scientific Reports. Published online July 10 2017 doi:10.1038/s41598-017-05327-8

Published by connie dello buono

Connie Dello Buono is based in Sunnyvale California. Her first ebook is about women's health, Birthing Ways Healing Ways and her recent one is about cancer prevention, Curated Healing Ways. She had helped women have holistic childbirth as childbirth educator, founded Motherhealth, to serve seniors in the bay area with holistic caregivers and blogs at www.clubalthea.com with more than 10,000 health and finance related posts. Connie trains her own caregivers, which are the favorites of most bay area seniors who are home bound and alone. She is active in the rehab and nursing facilities, volunteering on music and movement for seniors. She is a member of Lion's club and offered scholarships to students in the Philippines. She is active at churchinsunnyvale.us and has Fridays Bible home study in Sunnyvale using the recovery version of the Bible , free at biblesforamerica.us She loves dancing and teaching and her courses can be found at https://teachclub.com/@thriveafter60 She is California Life Insurance licensed providing life insurance for older adults with health issues and helping women retire safely with income for life. at menloassetca.com , she helps with 401k rollover. 3 Benefit plans - Mortgage protection using term life insurance to pay for mortgage balance in event of death - Final Expense plan using Single Issue Whole Life Insurance, with cash back, disability benefit and guaranteed in the presence of health issues - Fixed Index Annuity retirement plan for safe, accessibility, less fees, less taxes, avoids probate as it goes directly to beneficiaries, rate of return with no downside market participation. She brings compassion and understanding to the needs of her clients, bringing holistic approach in health and life insurance. Her goal is to free families from worries especially during covid with caregivers and life insurance in the presence of health issues, especially for women. She can be reached at 408-854-1883 , motherhealth@gmail.com

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