Has this region been damaged in your stroke or do you just have garden variety stroke fatigue? What stroke protocol does your doctor have for either condition? ANY AT ALL?
http://www.spring.org.uk/2014/10/brain-region-discovered-that-stops-you-being-a-couch-potato.php?
The area of the brain which may control the motivation to exercise —
along with other rewarding activities — has been identified by a new
study.
The tiny area of the brain, called the dorsal medial habenula, was found to control mice’s motivation to exercise (Turner et al., 2014).
More at link.
Use the labels in the right column to find what you want. Or you can go thru them one by one, there are only 33,762 posts. Searching is done in the search box in upper left corner. I blog on anything to do with stroke. DO NOT DO ANYTHING SUGGESTED HERE AS I AM NOT MEDICALLY TRAINED, YOUR DOCTOR IS, LISTEN TO THEM. BUT I BET THEY DON'T KNOW HOW TO GET YOU 100% RECOVERED. I DON'T EITHER BUT HAVE PLENTY OF QUESTIONS FOR YOUR DOCTOR TO ANSWER.
Changing stroke rehab and research worldwide now.Time is Brain! trillions and trillions of neurons that DIE each day because there are NO effective hyperacute therapies besides tPA(only 12% effective). I have 523 posts on hyperacute therapy, enough for researchers to spend decades proving them out. These are my personal ideas and blog on stroke rehabilitation and stroke research. Do not attempt any of these without checking with your medical provider. Unless you join me in agitating, when you need these therapies they won't be there.
What this blog is for:
My blog is not to help survivors recover, it is to have the 10 million yearly stroke survivors light fires underneath their doctors, stroke hospitals and stroke researchers to get stroke solved. 100% recovery. The stroke medical world is completely failing at that goal, they don't even have it as a goal. Shortly after getting out of the hospital and getting NO information on the process or protocols of stroke rehabilitation and recovery I started searching on the internet and found that no other survivor received useful information. This is an attempt to cover all stroke rehabilitation information that should be readily available to survivors so they can talk with informed knowledge to their medical staff. It lays out what needs to be done to get stroke survivors closer to 100% recovery. It's quite disgusting that this information is not available from every stroke association and doctors group.
Showing posts with label dorsal medial habenula. Show all posts
Showing posts with label dorsal medial habenula. Show all posts
Sunday, January 25, 2015
Thursday, August 21, 2014
Scientists Discover Brain Area Responsible for Exercise Motivation
So your doctor will need to check this area for damage to see if you even have the motivation to exercise. And then have a stroke protocol to correct such damage and restore your motivation.
http://www.biosciencetechnology.com/news/2014/08/scientists-discover-brain-area-responsible-exercise-motivation?et_cid=4111840&
Scientists at Seattle Children’s Research Institute have discovered an area of the brain that could control a person’s motivation to exercise and participate in other rewarding activities – potentially leading to improved treatments for depression.
http://www.biosciencetechnology.com/news/2014/08/scientists-discover-brain-area-responsible-exercise-motivation?et_cid=4111840&
Scientists at Seattle Children’s Research Institute have discovered an area of the brain that could control a person’s motivation to exercise and participate in other rewarding activities – potentially leading to improved treatments for depression.
Dr. Eric Turner, a principal investigator in Seattle Children’s
Research Institute’s Center for Integrative Brain Research, together
with lead author Dr. Yun-Wei (Toni) Hsu, have discovered that a tiny
region of the brain – the dorsal medial habenula– controls the desire to
exercise in mice. The structure of the habenula is similar in humans
and rodents and these basic functions in mood regulation and motivation
are likely to be the same across species.
Exercise is one of the most effective non-pharmacological therapies
for depression. Determining that such a specific area of the brain may
be responsible for motivation to exercise could help researchers develop
more targeted, effective treatments for depression.
“Changes in physical activity and the inability to enjoy rewarding
or pleasurable experiences are two hallmarks of major depression,”
Turner said. “But the brain pathways responsible for exercise motivation
have not been well understood. Now, we can seek ways to manipulate
activity within this specific area of the brain without impacting the
rest of the brain’s activity.”
Turner’s study, titled “Role of the Dorsal Medial Habenula in the
Regulation of Voluntary Activity, Motor Function, Hedonic State, and
Primary Reinforcement,” was published by the Journal of Neuroscience
and funded by the National Institute of Mental Health and National
Institute on Drug Abuse. The study used mouse models that were
genetically engineered to block signals from the dorsal medial habenula.
In the first part of the study, Turner’s team collaborated with Dr.
Horacio de la Iglesia, a professor in University of Washington’s
Department of Biology, to show that compared to typical mice, who love
to run in their exercise wheels, the genetically engineered mice were
lethargic and ran far less. Turner’s genetically engineered mice also
lost their preference for sweetened drinking water.
“Without a functioning dorsal medial habenula, the mice became
couch potatoes,” Turner said. “They were physically capable of running
but appeared unmotivated to do it.”
In a second group of mice, Turner’s team activated the dorsal
medial habenula using optogenetics– a precise laser technology developed
in collaboration with the Allen Institute for Brain Science. The mice
could “choose” to activate this area of the brain by turning one of two
response wheels with their paws. The mice strongly preferred turning the
wheel that stimulated the dorsal medial habenula, demonstrating that
this area of the brain is tied to rewarding behavior.
Past studies have attributed many different functions to the
habenula, but technology was not advanced enough to determine roles of
the various subsections of this area of the brain, including the dorsal
medial habenula.
“Traditional methods of stimulation could not isolate this part of
the brain,” Turner said. “But cutting-edge technology at Seattle
Children’s Research Institute makes discoveries like this possible.”
As a professor in the University of Washington Department of
Psychiatry and Behavioral Sciences, Turner treats depression and hopes
this research will make a difference in the lives of future patients.
“Working in mental health can be frustrating,” Turner said. “We
have not made a lot of progress in developing new treatments. I hope the
more we can learn about how the brain functions the more we can help
people with all kinds of mental illness.”
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