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I live so much in my head that sometimes when I touch my body I’m surprised to remember I’m solid.
Animal Art April day 1: a frog friend
Astronomers Capture First Image of a Black Hole
The Event Horizon Telescope (EHT) — a planet-scale array of eight ground-based radio telescopes forged through international collaboration — was designed to capture images of a black hole. Today, in coordinated press conferences across the globe, EHT researchers revealed that they have succeeded, unveiling the first direct visual evidence of a supermassive black hole and its shadow. The image reveals the black hole at the centre of Messier 87, a massive galaxy in the nearby Virgo galaxy cluster. This black hole resides 55 million light-years from Earth and has a mass 6.5 billion times that of the Sun. Supermassive black holes are relatively tiny astronomical objects — which has made them impossible to directly observe until now. As the size of a black hole’s event horizon is proportional to its mass, the more massive a black hole, the larger the shadow. Thanks to its enormous mass and relative proximity, M87’s black hole was predicted to be one of the largest viewable from Earth — making it a perfect target for the EHT. The shadow of a black hole is the closest we can come to an image of the black hole itself, a completely dark object from which light cannot escape. The black hole’s boundary — the event horizon from which the EHT takes its name — is around 2.5 times smaller than the shadow it casts and measures just under 40 billion km across.
Credit: ESO
You can read the whole press release here!
(Image caption: Acetylcholine receptors Chrm1 and Chrm3 (illustrated as Sandman gnomes 1 and 3) are essential for REM (dream) sleep. In this visual description of the study, the receptors help a mouse dream about a sleeping cat and Michel Jouvet (1925-2017), a pioneer of REM sleep studies. Credit: © Hiroko Uchida)
Two genes that regulate how much we dream
Sleep is a universal and vital behavior in animals. In higher vertebrates such as mammals and birds, sleep is classified into two phases, rapid eye movement (REM) sleep and non-REM sleep. During REM sleep, our brain is as active as it is during wakefulness, and this stage is believed to function in memory consolidation. Although our knowledge of the neural mechanisms underlying sleep has gradually advanced, the essential molecular factors that regulate REM sleep are still unknown. Now, however, a research team led by Hiroki Ueda at RIKEN BDR and The University of Tokyo has identified two essential genes involved in the regulation of REM sleep. The amount of REM sleep was drastically decreased down to almost undetectable levels when both genes were knocked out in a mouse model. This study was published by Cell Reports on August 28.
Several past studies have suggested that acetylcholine—the first identified neurotransmitter—and its receptor are important for the regulation of REM sleep. Acetylcholine is abundantly released in some parts of mammalian brain during REM sleep and wakefulness. However, it was unclear which receptor or receptors were directly involved in the regulation of REM sleep due to the complexity of the underlying neural network.
For this study, the researchers used cutting-edge genetic tools to modify mouse genes and conduct genetic screening for factors whose inhibition would cause sleep abnormalities. After knocking out a number of genes encoding various acetylcholine receptors, they found that the loss of two receptors—called Chrm1 and Chrm3—induced a characteristic short-sleep profile. These two receptors are widely distributed in distinct brain regions. The knockout of Chrm1 reduced and fragmented REM sleep, whereas knocking out Chrm3 reduced the length of non-REM sleep. When both genes were knocked out, mice failed almost entirely to experience REM sleep, but survived nonetheless.
“The surprising finding that mice are viable despite the almost complete loss of REM sleep will allow us to rigorously verify whether REM sleep plays a crucial role in fundamental biological functions such as learning and memory” says Yasutaka Niwa, the co-first author of this article.
These findings strongly suggest that these two receptors are essential for sleep regulation, especially REM sleep, and function in different ways. “The discovery that Chrm1 and Chrm3 play a key role in REM sleep opens the way to studying its underlying cellular and molecular mechanisms and will eventually allow us to define the state of REM sleep, which has been paradoxical and mysterious since its original report,” Ueda says.
Additional data is available for readers who have an extensive interest in the phenotype of the mice who lost all their REM sleep.
Hello friends, meet my new love Stella, we’re still getting to know each other (refer to 2008 YouTube style MacBook video) but I figure if I’m going to be asking people to share their stories and music with me I need to make an effort to do the same. Stella doesn’t know it yet but Cher is going to be a big part of our relationship. So is this couch in my new home for the next 9 months. (at Østerbro) https://www.instagram.com/p/Bq1j0yinQKI/?utm_source=ig_tumblr_share&igshid=11r3tmzlc4r08
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