The Red Algorithm: When Blood Becomes Technology
Blood after 10 days in vitro
Here are some blood smears that still show changes even after 10 days in vitro and do not dry out. On the one hand, there is the phenomenon we are familiar with: the transformation of red blood cells into synthetic blood cells. On the other hand, there is the transformation of white blood cells into cells that produce substances—unfortunately, I cannot say what these are, as I lack the equipment for this analysis. Self-assembling new structures, as well as the apparent explosion of hybrid yeast cultures and presumably also E. coli cultures, which multiply under certain EMF radiation as if they had taken steroids.
These images were all taken in vitro and do not necessarily reflect what happens in the body. However, they show us the direction of what happens when a high dose of radiation constantly affects a person and they eventually lose their defenses against it.
I tried to figure out what these yellow-orange hydrogel inclusions are that are now appearing in large numbers, and I came across the following:
According to the SEM findings, there is currently a significant amount of indium in the blood.
But what does it look like in the blood? Indium(III) oxide - Usually appears as a yellow or whitish-yellow powder. It is formed when indium burns at high temperatures.
Indium(III) sulfide - This compound is known for its yellow-orange to red color and is used in photovoltaics.
Indium semiconductors: Compounds such as indium nitride or indium gallium nitride are crucial for modern lighting. In LEDs, they enable the generation of violet, blue, and green light.
So it cannot be ruled out that these yellow-orange inclusions primarily contain indium.
In transhumanism, indium plays an important role in neurotechnology and biosensor technology.
Indium is used in certain highly sensitive sensors and microelectronic components because of its high conductivity and unique semiconductor properties. This applies to brain implants, medical sensors, wearables, and biofeedback systems.
The following image clearly shows the artificial and synthetic RBCs—all the same size—spherical and with their double membranes. In between, we see a black spot—this is the remnant of a leukocyte that has transformed into a small substance-producing factory and subsequently becomes visible only as these black spots. Black here—because we are in dark-field mode. There are indications that, through changes, the body will eventually be able to produce graphene oxide on its own and will no longer need to receive it from external sources.
If you dig a little deeper, you will find the first attempts in our scientific literature that bacteria can produce graphene.
To be more precise:
Of particular interest are so-called electroactive bacteria such as: Geobacter and Shewanella. These bacteria can transport electrons to the outside and thereby convert graphene oxide (GO) to “reduced graphene oxide” (rGO). This is a chemical reduction of biological origin.
The remainder of the leukocyte is still visible at the top left edge
The following video shows one of the filamentary structures in the blood and its now highly differentiated internal structure—one could almost call them organs in their own right.
The image below shows a section where, on one side, hybrid yeast cells are multiplying rapidly, while on the other side, it looks as though individual structures resembling building blocks are forming. I actually filmed that three years ago.
The building blocks—filmed on December 27, 2023, next to the giant cell—which no one knows what it is…
Here is how these clusters have spread after 10 days. Colonies that are gradually spreading throughout the blood. Aside from the fact that blood should survive for no more than 5 days outside the body, I have never observed anything like this before.
Another close-up of a thread structure:
In the video, the blood is now 9 days old. We can see that a red blood cell is beginning to swell. After observing it for some time, my suspicion was confirmed: this is an RBC that has been converted into an artificial cell. Since the system isn’t receiving any new “fuel,” it eventually begins to break down the artificial blood cells to obtain building materials. This could primarily involve iron from the hemoglobin. The following day, this swollen cell was nothing more than a so-called ghost cell—a small black spot indicating a collapsed membrane potential.
Here is a close-up of the phenomenon—first filmed normally and then inverted.
Here you can see the artificial RBCs with thick membranes, the membranes of the RBCs on the right side of the swollen cell beginning to break down, and, above them, what is known as a “ghost cell.”
Let’s take a look at a video that clearly shows how liquid hydrogel attracts immune cells. All the bright spots are leukocytes that are drawn to the hydrogel via chemotaxis. Unfortunately, they will not survive the battle but will instead be stripped of their chloride.
There is another phenomenon: our white blood cells now contain little to no calcium; instead, lanthanides have taken its place. This fundamentally alters the function of immune cells. Immune deficiency is the logical consequence. It seems that the first hematologists have indeed recognized this phenomenon. It’s a bit late—but better late than never.
The following could not better illustrate just how toxic these hydrogels are to our biological cells. After drawing blood and then shining light through the microscope, this hydrogel slurry expands—along with whatever metals it contains—and we see the blood’s reaction. These are no longer normal cells—it looks more like sludge.
So what happens when this gets out of hand? How do blood vessel walls react to such aggression?
Bleeding? That sounds a lot like a case of hemorrhagic fever? Which category does the hantavirus fall into? - Coincidence - all pure coincidence.
And the hantavirus is transmitted by mice - where do they live again? On grain ships, in silos, etc.
Please think for yourself what this means if a quarantine is declared for this supply chain.
In summary, we can assume that we already have all the necessary components in our blood, and that frequency radiation determines what forms, when it forms, and how it all works together. The raw materials are present in the body—what’s missing is the software program. Or do many people already have it???
To wrap things up, here’s a little comic—I wish more medical professionals would sit at their microscopes like this, so we can finally understand what’s really happening in our blood. And it’s not just in the blood—it’s happening throughout the entire body.
SAM
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Holy sh…!
Thank you for showing how harmful these manufactures are and that they will be the probable cause of Bill Hates’ forecast for a worse pandemic to come!
I’ll add that a body producing its own graphene oxide and reduced graphene oxide, which are like razor blades, will inevitably bleed from the inside out, depending on how much light (aka frequencies) it receives.
Is this why 5 G and 6 G technologies are implemented everywhere? They would trigger the massive lethal production.
There will be no way to “HUNTavirus” out of the cereals food chain…
Awful!!
Would this happen to be why GO is spread for? To be inhaled, then reduced to rGO for other purposes?
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