Use my Search Websuite to scan PubMed, PMCentral, Journal Hosts and Journal Archives, FullText.
Kick-your-searchterm to multiple Engines kick-your-query now !>
A dictionary by aggregated review articles of nephrology, medicine and the life sciences
Your one-stop-run pathway from word to the immediate pdf of peer-reviewed on-topic knowledge.

suck abstract from ncbi


10.1098/rstb.2015.0519

http://scihub22266oqcxt.onion/10.1098/rstb.2015.0519
suck pdf from google scholar
C5379025!5379025!28348253
unlimited free pdf from europmc28348253    free
PDF from PMC    free
html from PMC    free

suck abstract from ncbi

pmid28348253      Philos+Trans+R+Soc+Lond+B+Biol+Sci 2017 ; 372 (1720): ä
Nephropedia Template TP

gab.com Text

Twit Text FOAVip

Twit Text #

English Wikipedia


  • Mechanocellular models of epithelial morphogenesis #MMPMID28348253
  • Fletcher AG; Cooper F; Baker RE
  • Philos Trans R Soc Lond B Biol Sci 2017[May]; 372 (1720): ä PMID28348253show ga
  • Embryonic epithelia achieve complex morphogenetic movements, including in-plane reshaping, bending and folding, through the coordinated action and rearrangement of individual cells. Technical advances in molecular and live-imaging studies of epithelial dynamics provide a very real opportunity to understand how cell-level processes facilitate these large-scale tissue rearrangements. However, the large datasets that we are now able to generate require careful interpretation. In combination with experimental approaches, computational modelling allows us to challenge and refine our current understanding of epithelial morphogenesis and to explore experimentally intractable questions. To this end, a variety of cell-based modelling approaches have been developed to describe cell?cell mechanical interactions, ranging from vertex and ?finite-element? models that approximate each cell geometrically by a polygon representing the cell's membrane, to immersed boundary and subcellular element models that allow for more arbitrary cell shapes. Here, we review how these models have been used to provide insights into epithelial morphogenesis and describe how such models could help future efforts to decipher the forces and mechanical and biochemical feedbacks that guide cell and tissue-level behaviour. In addition, we discuss current challenges associated with using computational models of morphogenetic processes in a quantitative and predictive way.This article is part of the themed issue ?Systems morphodynamics: understanding the development of tissue hardware?.
  • ä


  • DeepDyve
  • Pubget Overpricing
  • suck abstract from ncbi

    Linkout box