This is so freaking cute, it triggers my cuteness aggression! (👁 ͜ʖ👁)
This is so freaking cute, it triggers my cuteness aggression! (👁 ͜ʖ👁)
I love this play of big things in small places. Awesome work.
And for the creation of this thought water was also involved; assuming this was indeed a showerthougt
Big beards can alter facial recognition and obscure expressions, making someone look more unpredictable or wild to observers.
This comment was so wholesome it made my day 🥰
I guess it could cause a severe seizure or even catastrophic neural failure. The synchronous firing would disrupt the balance of excitatory and inhibitory signals in the brain, potentially damaging neurons and leading to a loss of normal brain function.
The result might include a loss of consciousness, significant cognitive impairments, or even death, depending on the extent and duration of the event.
But then again, I have no idea, since I ain’t an expert in that field and in fact am actually just a dog who figured out how to use a computer 🙃
There is also a community for it :)
I guess it’s hard to measure the power of AI anyway but I would say a strong no: it doesn’t equate to the power of AI doubling every 3.5 months 😅
Some in the AI industry have proposed concepts similar to Moore’s Law to describe the rapid growth of AI capabilities.
Although there is no universally accepted law or principle akin to Moore’s Law for AI, people often refer to trends that describe the doubling of model sizes or capabilities over a specific time frame.
For instance, OpenAI has previously described a trend where the amount of computing power used to train the largest AI models has been doubling roughly every 3.5 months since 2012.
I wonder if this technique can be expanded to other eye conditions 🤔
Here is a Tl;Dr for the ones which don’t want to click the link:
Researchers at Anglia Ruskin University in the UK have used 3D nanotechnology to successfully grow human retinal cells, offering a new way to treat age-related macular degeneration (AMD), a leading cause of blindness.
AMD is categorized into two types: ‘dry’ and ‘wet,’ both of which cause vision loss due to the destruction or deterioration of the retina’s RPE cells.
The team used electrospinning, a novel technique in this context, to create a 3D nanofibrous scaffold, composed of two polymers, which served as a base for growing the RPE cells. An anti-inflammatory coating was applied to the scaffold, enhancing the growth and functionality of the cells, which remained healthy and viable for up to 150 days.
This innovative approach could lead to effective treatments for sight conditions like AMD, and the researchers are now focusing on transplanting these freshly grown cells into the human eye.
Haha, just saw this video as well and searched the YouTube comments for someone mentioning it 🤣
I know perplexity.ai, but don’t think it’s “open source privacy respecting”