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February 21, 20260 citationsOpen Access

Blood makes a difference

LDLisa Yvonne DebusMWMario Jonas WilhelmHWHenri Wolff

Key Points

  • The aim is to assess molecular communication characteristics in real blood compared to substitutes for future applications.
  • Experimental appraisal of molecular communication testbeds using real and substitute fluids.
  • Analysis of channel impulse response behavior for water, blood substitute, and porcine blood.
  • Extension of a mathematical framework for superparamagnetic iron oxide nanoparticles to include blood flow properties.
  • Identified unique flow characteristics of real blood compared to water and blood substitutes.
  • Demonstrated that communication transmission in blood introduces additional complexities.
  • Suggested improved communication methods through the human circulatory system based on findings.

Abstract

The experimental appraisal of existing molecular communication (MC) testbeds and modeling frameworks in real blood is an important step for future Internet of Bio-Nano Things applications. In this article, we experimentally compare the MC flow characteristics of water, blood substitute, and real porcine blood for a previously presented superparamagnetic iron oxide nanoparticles (SPION) MC testbed. We perform an extensive analysis of the channel impulse response (CIR) behavior of the testbed for the different fluids. Based on the identified MC flow characteristics, we extend an existing mathematical framework for our SPION testbed to capture the flow properties of blood. We evaluate its applicability to the collected data in comparison to two existing theoretical CIR models for MC in blood. In our work, we see that the added complexity of the transmission in blood opens up promising new possibilities to improve communication through the human circulatory system.

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Cite This Study

Debus et al. (2025) studied this question.

synapsesocial.com/papers/69994cb3873532290d02158dhttps://doi.org/10.14279/depositonce-25071
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