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@thediaryofepilepsy-blog
How Music Can Help People with Epilepsy
The brains of people with epilepsy appear to react to music differently from the brains of those who do not have the disorder, a finding that could lead to new therapies to prevent seizures.
The research âMusic and the Brain: Can Music Help People with Epilepsy?â will be presented at the American Psychological Associationâs 123rd Annual Convention in the Metro Toronto Convention Centre, Toronto, Canada on Moday August 9 2015 at 9 am.
Image: The researchers found significantly higher levels of brainwave activity in participants when they were listening to music. More important, brainwave activity in people with epilepsy tended to synchronize more with the music, especially in the temporal lobe, than in people without epilepsy. Image is for illustrative purposes only.
So relatable đ
I have a friend. This friend is invisible. She seems to follow me everywhere and refuses to leave even when I am home. This friend of mine is epilepsy. I donât really care for her but we have known each other for the last 6 or 7 years. She isnât always kind to me or those around me. She can attack with violence or sometimes silence, basically however her mood strikes her and it is almost always without a warning. She injures my mood and rips through my mind, steals my memories, and leaves me broken and bruised. She has learned her way of separating me from the world. No one can see her but she is always with me.
oh yeah and i canât believe itâs taken me this long to bring this up but iâm absolutely not here for people shading the âamerican girl todayâ/âmy american girlâ line becauseÂ
the line literally enables girls to create a doll that looks like them
including a wide array of non-white skin tones and non-european features
like black dolls with curly and textured hair
or asian dolls that appear to have epicanthic folds
and theyâve also released accessories like doll-sized wheelchairs, hearing aids, and crutches so that girls who arenât able-bodied or are hard of hearing can have a little friend who shares their experiences
and theyâve even begun to offer dolls without hair for little girls who have alopecia or have lost hair while battling cancer
and basically if you donât think thatâs the tightest shit then get out of my face
Also: SERVICE DOGS.Â
ITâS SO CUTE IT EVEN HAS TRAINING TREATS. You go American Girl.Â
They also consulted the Nez Pierce when making their Kaya doll and thatâs why her smile doesnât show teeth, among other things, and theyâve released some beautiful, and accurate, modern Powwow regalia for her.
Also theyâve been offering all this stuff since I was still getting the catalog. I just turned 29, so if Iâm going to guess, that means theyâve been offering these options since at least 1996ish.
Representation is so important.
I want it to be over.
My family and friends are joining together in this walk because Easter Sunday 2009 our lives changed. I started having seizures at the age of 14 and slowly medications were not helping. The Â
âYou just do it. You force yourself to get up. You force yourself to put one foot before the other, and God damn it, you refuse to let it get to you. You fight. You cry. You curse. Then you go about the business of living. Thatâs how Iâve done it. Thereâs no other way.â
Simon blogs about having depression and epilepsy.Â
Fatal uncoupling in the epileptic brain
Epilepsy is a very prevalent neurological disorder. Approximately one-third of patients are resistant to currently available therapies. A team of researchers under the guidance of the Institute of Cellular Neurosciences at the University of Bonn has discovered a new cause to explain the development of temporal lobe epilepsy: At an early stage, astrocytes are uncoupled from each other. This results in the extracellular accumulation of potassium ions and neurotransmitters, which cause hyperexcitability of the neurons. The results are being published in advance online in the journal âBrainâ. The print version will be published in May.
Approximately two percent of the population suffers from epilepsy. âDespite intense research efforts, the causes of this disease are still largely unclear,â says Prof. Dr. Christian SteinhĂ€user, Director of the Institute of Cellular Neurosciences of the University of Bonn. Approximately one-third of patients are therapy-resistant. âIn some frequent forms such as temporal lobe epilepsy, this percentage is even significantly higher,â says the researcher. For this reason, scientists are searching for new strategies in epilepsy research to develop new, more efficient therapeutic approaches.
Astrocytes: from âbrain glueâ to an important partner to neurons
One such new approach in the research into causes of epilepsy has now been found by a team working with Prof. SteinhĂ€user. Together with neurosurgeons from the University of Bonn Hospital as well as epilepsy specialists from the Freiburg University Hospital, the Institute of Cellular Neurosciences of the University of Bonn investigated the functional properties of astrocytes. These are nervous system cells which belong to the glial cells. They were originally considered only to be âglueâ holding the brain together, but in recent years, astrocytes have increasingly turned out to be an important partner to neurons.
Accumulation of potassium ions leads to hyperexcitability
"Epilepsy research is dominated by the assumption that altered properties of neurons cause epilepsy," says Prof. SteinhÀuser. His working group has now demonstrated that malfunctions of glial cells play a crucial role in the development of epilepsy. Brain tissue removed from patients with temporal lobe epilepsy was observed by the researchers to be completely lacking in astrocytes. "In this condition, no functional networks of coupled astrocytes can be formed," says first author Dr. Peter Bedner. Because astrocytic networks are missing, potassium ions and neurotransmitters, such as glutamate, which are important for signal transmission, can accumulate in this tissue. This leads to hyperexcitability of the affected neurons and ultimately to epileptic seizures.
Is the loss of astrocytic coupling the cause of epilepsy or is this merely a consequence of hyperexcitability? To be able to address this question, the scientists specifically developed a mouse model which recapitulates key characteristics of temporal lobe epilepsy in humans. âIn this model, we were able to demonstrate that during the development of epilepsy, the coupling between the astrocytes is lost very early, and changes in the neurons are observed only later on,â reports Prof. SteinhĂ€user.
Uncoupling is reversible at an early stage
The scientists suspect that uncoupling of astrocytes is mediated by inflammation. The causes are likely so-called cytokines which are released in the brain by activated microglial cells or astrocytes. âWe were able to demonstrate that uncoupling of astrocytes - at least in the early stage of epilepsy - can be reversed,â says Prof. SteinhĂ€user. The scientists now hope that their results from basic research will enable the development of new therapies to treat temporal lobe epilepsy.Â
People cry not because they are weak. But because they have been strong for too long.
(via justawhisperintherain)