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https://www.ncbi.nlm.nih.gov/pubmed/23807425
A Molecular Communication System Model for Particulate Drug Delivery Systems. Chahibi Y, Pierobon M, Song SO, Akyildiz IF. The goal of a drug delivery system (DDS) is to convey a drug where the medication is needed, while, at the same time, preventing the drug …Author: Youssef Chahibi, Massimiliano Pierobon, Sang Ok Song, Ian F. Akyildiz
https://ieeexplore.ieee.org/document/6548006/
Jun 27, 2013 · A Molecular Communication System Model for Particulate Drug Delivery Systems Abstract: The goal of a drug delivery system (DDS) is to convey a drug where the medication is needed, while, at the same time, preventing the drug from affecting other healthy parts of the body.Author: Youssef Chahibi, Massimiliano Pierobon, Sang Ok Song, Ian F. Akyildiz
https://www.semanticscholar.org/paper/A-Molecular-Communication-System-Model-for-Drug-Chahibi-Pierobon/d5149b01b113e3c99cf9cab648bec335881e1194
A Molecular Communication System Model for Particulate Drug Delivery Systems. The goal of a drug delivery system (DDS) is to convey a drug where the medication is needed, while, at the same time, preventing the drug from affecting other healthy parts of the body.
https://www.researchgate.net/publication/242653214_A_Molecular_Communication_System_Model_for_Particulate_Drug_Delivery_Systems
Here, the transmitter is the drug injection, the receiver is the drug delivery and the channel is realized by the transport of drug particles, thus enabling the analysis and design of a particulate DDS using communication tools.
https://tbme.embs.org/2013/12/06/a-molecular-communication-system-model-for-particulate-drug-delivery-systems/
The goal of a drug delivery system (DDS) is to convey a drug where the medication is needed, while, at the same time, preventing the drug from affecting other healthy parts of the body. Drugs composed of micro- or nano-sized particles (particulate DDS) that are able to cross barriers which prevent large particles from escaping the bloodstream are used in the most advanced solutions.
http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.709.3629
MC is a new paradigm in communication research where the exchange of information is achieved through the propagation of molecules. Here, the transmitter is the drug injection, the receiver is the drug delivery, and the channel is realized by the transport of drug par-ticles, thus enabling the analysis and design of a particulate DDS using communication tools.
https://www.academia.edu/20871321/A_Molecular_Communication_System_Model_for_Particulate_Drug_Delivery_Systems
MC is a bioinspired paradigm that, amongst others, project title: “Molecular Communication Fundamentals in Action Potential- has been developed by nature for communication among liv- triggered Particulate Drug Delivery Systems…
https://www.sciencedirect.com/science/article/pii/S1878778917300054
Molecular communication packet structure of a drug delivery system. The different layers of the cells (endosome, cytoplasm, nucleus) are viewed as nodes, with the endosome providing networking function, the cytoplasm a transport function and the nucleus an application function.Author: Youssef Chahibi
https://repository.up.ac.za/bitstream/handle/2263/56153/ChudeOkonkwo_Molecular_2016.pdf?sequence=1&isAllowed=y
body and delivery to a specific tissue or organ can be viewed. in the context of MC. In this sense, the drug particle injection. device is the transmitter, the drug particles are information. carriers, the blood vessel network is the communication. channel, and the targeted tissue, the receiver [10].
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