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Response to the comments on "Cellular aggregation dictates universal spreading behaviour of a whole-blood drop on a paper strip".

Sampad LahaShantimoy KarSuman Chakraborty
Published in: Journal of colloid and interface science (2024)
In 2023, we published a research article in the Journal of Colloidal and Interface Science, based on our experimental findings and substantiating scaling arguments leading to a simple theoretical insight on the effect of red blood cell (RBC) aggregation on the wicking behaviour of a finite volume of blood as it navigates through the porous passages of a paper matrix (Laha et al., 2023). Of late, we received comments from Li (2024), which offered certain suggestions regarding the possible improvement of the capillary bundle model as considered in our article for analyzing the transport of blood through the paper pores. Herein, we provide a detailed discussion on each of the points raised by Li (2024) and rationalize our views in further details in addition to the contents already provided in our concerned article.
Keyphrases
  • red blood cell
  • ion batteries
  • public health
  • solid state
  • systematic review
  • metal organic framework
  • meta analyses