Cleft formation during submandibular salivary gland branching morphogenesis is the critical step initiating the growth and development of the complex adult organ. Previous experimental studies indicated requirements for several epithelial cellular processes, such as proliferation, migration, cell-cell adhesion, cell-extracellular matrix (matrix) adhesion, and cellular contraction in cleft formation; however, the relative contribution of each of these processes is not fully understood since it is not possible to experimentally manipulate each factor independently. We present here a comprehensive analysis of several cellular parameters regulating cleft progression during branching morphogenesis in the epithelial tissue of an early embryonic s...
Epithelial branching morphogenesis drives the development of organs such as the lung, salivary gland...
Branching morphogenesis (BrM) is a basic developmental process for the formation of the lung, kidney...
Mammary branching morphogenesis is regulated by receptor tyrosine kinases (RTKs). We sought to deter...
Cleft formation during submandibular salivary gland branching morphogenesis is the critical step ini...
Abstract—In this paper, we introduce a biologically motivated dynamic graph-based growth model to de...
<p>Brightfield images of (a) an embryonic day 12 (E12) submandibular salivary gland (SMG) organ expl...
Pattern formation in developing tissues involves dynamic spatio-temporal changes in cellular organiz...
<div><p>Pattern formation in developing tissues involves dynamic spatio-temporal changes in cellular...
AbstractCleft formation is the initial step in submandibular salivary gland (SMG) branching morphoge...
Many organs such as the salivary glands, kidney and lung form multiple epithelial clefts during the ...
During embryonic development when tissues are particularly plastic, cells within a tissue can often ...
Coordinated actin microfilament and microtubule dynamics is required for salivary gland development,...
Branching morphogenesis is a fundamental developmental program that generates large epithelial surfa...
Spatial tissue patterning during early morphogenesis depends on the coordinated movement and shape c...
During tissue morphogenesis forces at the cellular level cause deformation of tissues. Through comp...
Epithelial branching morphogenesis drives the development of organs such as the lung, salivary gland...
Branching morphogenesis (BrM) is a basic developmental process for the formation of the lung, kidney...
Mammary branching morphogenesis is regulated by receptor tyrosine kinases (RTKs). We sought to deter...
Cleft formation during submandibular salivary gland branching morphogenesis is the critical step ini...
Abstract—In this paper, we introduce a biologically motivated dynamic graph-based growth model to de...
<p>Brightfield images of (a) an embryonic day 12 (E12) submandibular salivary gland (SMG) organ expl...
Pattern formation in developing tissues involves dynamic spatio-temporal changes in cellular organiz...
<div><p>Pattern formation in developing tissues involves dynamic spatio-temporal changes in cellular...
AbstractCleft formation is the initial step in submandibular salivary gland (SMG) branching morphoge...
Many organs such as the salivary glands, kidney and lung form multiple epithelial clefts during the ...
During embryonic development when tissues are particularly plastic, cells within a tissue can often ...
Coordinated actin microfilament and microtubule dynamics is required for salivary gland development,...
Branching morphogenesis is a fundamental developmental program that generates large epithelial surfa...
Spatial tissue patterning during early morphogenesis depends on the coordinated movement and shape c...
During tissue morphogenesis forces at the cellular level cause deformation of tissues. Through comp...
Epithelial branching morphogenesis drives the development of organs such as the lung, salivary gland...
Branching morphogenesis (BrM) is a basic developmental process for the formation of the lung, kidney...
Mammary branching morphogenesis is regulated by receptor tyrosine kinases (RTKs). We sought to deter...