in which Eleanor reaches out and attempts to make peace with Neko.
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★
cherry valley forever
Today's Document

roma★

oozey mess
TMBGareOK. The Official They Might Be Giants tumblr
Sweet Seals For You, Always
Cosimo Galluzzi
untitled
The Bright Sessions

Discoholic 🪩
official daine visual archive
EXPECTATIONS
KIROKAZE

@theartofmadeline
occasionally subtle

ellievsbear
Color Me Curious
Sade Olutola

seen from Türkiye
seen from United States
seen from United States

seen from Uruguay

seen from Tanzania
seen from Türkiye

seen from United States
seen from Peru
seen from Malaysia

seen from United States

seen from Syria
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seen from Greece
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seen from United States
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seen from Japan
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@myvanillabourbontea
in which Eleanor reaches out and attempts to make peace with Neko.
Read more of CAT-PERSON
Nightclub hostess in ‘Golden Alaska’, Japan, 1964
Ph. Michael Rougier
A TRUCK
I too, have definitely read Moby Dick, and I 100% did not give up on page 200 and something, after the 70th description of a boat…
TEETH
First time trying an autumn edit like this. Considering it’s been awhile since I took out my camera and it’s the first try of something like this, I’m pretty pleased!
7 Key Insights on Self Love
1. I need to affirm and to validate myself as it’s hard to accept validation from others if, deep down inside, I don’t believe it’s true.
2. My time is valuable as anybody else’s so I need to prioritise what I need to do.
3. I can’t give to others, and help to build them up, if I’m not taking care of my own self first.
4. I need to remember that I’m worthy of love, of success, opportunities, and knowing happiness.
5. My opinions are as valuable as anybody else’s. It’s up to me to decide and to choose my own beliefs.
6. I don’t have to explain why I do what I do (unless you’re the police or have some authority!)
7. My past does not define me - I’m free to change and grow, to try on different “me”s, and to set inspiring goals.
flirting in the 21st century
Update:
I’m reblogging this everyday.
Cell types underlying schizophrenia identified
Scientists at Karolinska Institutet in Sweden and University of North Carolina, USA, have identified the cell types underlying schizophrenia in a new study published in Nature Genetics. The findings offer a roadmap for the development of new therapies to target the condition.
Schizophrenia is an often devastating disorder causing huge human suffering. Genetic studies have linked hundreds of genes to schizophrenia, each contributing a small part to the risk of developing the disease. The great abundance of identified genes have made it difficult to design experiments. Scientists have been struggling to understand what is linking the genes together and whether these genes affect the entire brain diffusely or certain components more.
By combining new maps of all the genes used in different cell types in the brain with detailed lists of the genes associated with schizophrenia, scientists in the current study could identify the types of cells that underlie the disorder. The genetics point towards certain cell types being much more implicated than others. One finding was that there appears to be a few major cell types contributing to the disorder, each of which originates in distinct areas of the brain.
“This marks a transition in how we can use large genetic studies to understand the biology of disease. With the results from this study, we are giving the scientific community a chance to focus their efforts where it will give maximum effect”, says Jens Hjerling-Leffler, research group leader at the Department of Medical Biochemistry and Biophysics at Karolinska Institutet, one of the main authors.
Possible treatment development
The findings offer a roadmap for the development of new therapies.
“One question now is whether these brain cell types are related to the clinical features of schizophrenia. For example, greater dysfunction in one cell type could make treatment response less likely. Dysfunction in a different cell type could increase the chances of long-term cognitive effects. This would have important implications for development of new treatments, as separate drugs may be required for each cell type involved,” says co-main author Patrick Sullivan, Professor at the Department of Medical Epidemiology and Biostatistics at Karolinska Institutet and Yeargan Distinguished Professor in the Department of Genetics and Psychiatry at the University of North Carolina.
As a result of rapid progress in two separate fields of science; human genetics and single cell transcriptomics, it only recently has become possible to study diseases in this way. In coming years the researchers suggest that the approach should lead to breakthroughs in the biological understanding of other complex disorders such as autism, major depression, and eating disorders.
“Understanding which cell types are affected in a disease is of critical importance for developing new medicines to improve their treatment. If we do not know what causes a disorder we cannot study how to treat it,” says Nathan Skene, Postdoc at the Department of Medical Biochemistry and Biophysics at Karolinska Institutet and UCL Institute of Neurology, UK, one of the lead authors.