Emilia Javorsky

speaker
1,653 appearances 2 recordings 1 series first heard Mar 2026 last heard 20 Mar

Emilia Javorsky’s voice in public audio — every appearance, attributed to the second.

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Recordings per month over the last 12 months — 2 in all, peaking in Mar 2026 with 2.

Appearances

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You actually can't get there from first principles.
And how could we actually start tackling that in biology to start figuring out some of these rules?
So that is something I really recommend folks read if that deep diving into that is of interest.
I think the other piece of where the cell problem goes wrong is just the fundamental...
emergent properties across scales, right?
So what's happening at the cell layer is different than what's happening at the tissue layer than at the organ layer than at the systems layer than at the whole body layer.
And each of those layers of biology have emergent properties that are not necessarily accessible to the layers above or below them readily.
And so
what happens there is until we can start to understand the emergent properties across scale.
So the virtual cell is one, but then like, how do we stimulate, simulate the interactions between multiple cells that form tissues that form organs that form humans, that will be the work that we need to do in order to really better bridge that gap between cell human and the predictive value between the two.
Yes.
So I think the conversation around data in biology and in the clinic starts with the conversation around measurement.
I think those two go hand in hand.
So there's the data, which is the product of the measurement interacting with this thing you would like to measure.
Right.
And I think there has been.
a ton of progress that has been made in our ability to measure biology and innovating in our ability to measure biology from looking at sort of what's happening within a single cell to even at the
clinical level, right?
Being able to now take a blood sample and know what's happening in thousands of proteins at once, to be able to do whole body imaging and have high resolution of the structural components of the human body.
to be able to measure the microbe diversity that's in our bodies and interacts with disease, to be able to measure the heterogeneity of the immune system and the thousands of components there that regulate and sort of translate in between the systems that we have.
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