Contamination or Wireless Nanosensors network in the COVID shots?

Dr. Pablo Campra has published his findings on what he found on mRNA vaccines. The findings discussed here are contained in his Nov 29, 2021 paper. Dr. Campra was the first to identify graphene structures in the COVID shots in June 2021.

Dr. Pablo Campra has Ph.D. in the chemical sciences and is a teacher and researcher at Universidad de Almería in Spain. He has 45 studies and 911 citations listed on his ResearchGate page. His published research extends as far back as 1999.  In short, he is a legitimate scientist from an educational institution with a reputation to consider when putting out research.

The introduction to his latest paper published on November 29, 2021 states,

Here we show some objects of frequent geometries that could be observed in sealed vials from different random samples of COVID19 mRNA vaccines, using optic microscopy with bright or dark field, using low magnifications between 100x y 600X.

AS A WORKING HYPOTHESIS, some of these objects have been proposed as possible elements of a WIRELESS NANOSENSORS NETWORK (WNSN), whether as nano-sensors, as nano-routers, or as nano-antennae

The samples were observed after mRNA (Pfizer) samples were dried at room temperature and stayed embedded in the remaining hydrogel.

The following are photos of Dr. Campras’s paper, MICROSTRUCTURES IN COVID VACCINES: ¿inorganic crystals or Wireless Nanosensors Network?

There are also images of nanostructures and nanofibers taken from other websites. Those are not images of COVID vaccines, and they are placed here for comparison purposes only, and there is no intent to say that they are the same or present in the vaccines.

Straight lines and 90-degree angles are rarely found in nature.

The image below from Physorg shows semiconductor “nano-shish kebabs made from germanium sulfide (GeS) crystals.

Source: Physorg

The sharp corners can easily lacerate the soft cells inside blood vessels to promote blood clot formation. German pathologists also have the same findings. Unidentified Foreign Bodies in the Vaccines Form Clots

Below are silicon/carbon fibers—image from Frontiers in chemistry.

Source: Wang et al, 2020

The sharp corners can easily lacerate the soft cells inside blood vessels to promote blood clot formation.

Below is a Superhydrophobic Silicone Rubber with a Periodic Micro/Nano-Suction Cup Structure. Photo from MDPI. [3]

Source: MDPI Okoshi 2019

Dr. Campras also examined the Janssen Johnson and Johnson vaccines.

In the study, Dr. Campras included the following web pages that discuss the possibility that the findings are elements of a WIRELESS NANOSENSORS NETWORK (nano-sensors, as nano-routers, or as nano-antennae) is at:

Summary

These undeclared objects found in the Pfizer and Janssen COVID shots are concerning. As Dr. Campras said, they are not mentioned in the product literature. Does the FDA know that these things exist in the vaccines?

Other scientists should do the same and verify or refute the findings. The makers of the shots should declare what they are, and if they don’t, then there is contamination and a manufacturing problem, and the FDA should be immediately put the jabs on hold and recall the products.

 

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Related:

  1. Could self-assembling DNA explain the crystal-like structures in blood clots after COVID shots?
  2. The Whole English translation of the Spanish study showing 99% Graphene Oxide in the Pfizer COVID-19 Vaccine
  3. A Form of Graphene can Destroy SARS-CoV-2
  4. Degradation of Graphene in the Human Body
  5. This study shows Ten Fold risk of Developing Blood Clots after the COVID Vaccines.
  6. Platelet Changes Causes Blood Clots in COVID-19
  7. The High Risk of Deadly Brain Clots in the J & J COVID Vaccine

References:

  1. Campra, P. MICROSTRUCTURES IN COVID VACCINES: ¿inorganic crystals or Wireless Nanosensors Network?.RESEARCHGATE presentation, November 2021.
  2. Wang et al. Optimal Quantity of Nano-Silicon for Electrospun Silicon/Carbon Fibers as High Capacity Anodes. Front. Chem., 17 January 2020.  https://doi.org/10.3389/fchem.2019.00867
  3. Okoshi, M. Fabrication of Superhydrophobic Silicone Rubber with Periodic  Micro/Nano-Suction Cup Structure by ArF Excimer Laser-Induced Photodissociation. Nanomaterials 20199, 870. https://doi.org/10.3390/nano9060870

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