Understanding the dynamics of cell population allows insight into the control mechanism of the growth and development of mammalian tissues. It is well known that the proliferation and differentiation among stem cells (SCs), intermediate progenitor cells (IPCs), and fully differentiated cells (FDCs) are under different activation and inhibition controls. Secreted factors in negative feedback loops have already been identified as major elements in regulating the numbers of different cell types and in maintaining the equilibrium of cell populations. We have developed a novel spatial dynamic model of cells. We can characterize not only overall cell population dynamics, but also details of temporal-spatial relationship of individual cells within...
AbstractWe present a three-dimensional individual cell-based, biophysical model to study the effect ...
Identifying the mechanism of intercellular feedback regulation is critical for the basic understandi...
ABSTRACT We present a three-dimensional individual cell-based, biophysical model to study the effect...
Feedback mechanisms within cell lineages are thought to be important for maintaining tissue homeosta...
Feedback mechanisms within cell lineages are thought to be important for maintaining tissue homeosta...
Feedback mechanisms within cell lineages are thought to be important for maintaining tissue homeosta...
In developing and self-renewing tissues, terminally differentiated (TD) cell types are typically spe...
In developing and self-renewing tissues, terminally differentiated (TD) cell types are typically spe...
In developing and self-renewing tissues, terminally differentiated (TD) cell types are typically spe...
Normal human tissue is organized into cell lineages, in which the highly differentiated mature cells...
Normal human tissue is organized into cell lineages, in which the highly differentiated mature cells...
Many biological tissues are not static but continuously renewed through cycles of cell production an...
Multicellular tissues are generally maintained and regenerated by populations of stem cells that und...
Normal human tissue is organized into cell lineages, in which thehighly differentiated mature cells ...
Tissue morphogenesis in multicellular organisms is accompanied by proliferative cell behaviors: cell...
AbstractWe present a three-dimensional individual cell-based, biophysical model to study the effect ...
Identifying the mechanism of intercellular feedback regulation is critical for the basic understandi...
ABSTRACT We present a three-dimensional individual cell-based, biophysical model to study the effect...
Feedback mechanisms within cell lineages are thought to be important for maintaining tissue homeosta...
Feedback mechanisms within cell lineages are thought to be important for maintaining tissue homeosta...
Feedback mechanisms within cell lineages are thought to be important for maintaining tissue homeosta...
In developing and self-renewing tissues, terminally differentiated (TD) cell types are typically spe...
In developing and self-renewing tissues, terminally differentiated (TD) cell types are typically spe...
In developing and self-renewing tissues, terminally differentiated (TD) cell types are typically spe...
Normal human tissue is organized into cell lineages, in which the highly differentiated mature cells...
Normal human tissue is organized into cell lineages, in which the highly differentiated mature cells...
Many biological tissues are not static but continuously renewed through cycles of cell production an...
Multicellular tissues are generally maintained and regenerated by populations of stem cells that und...
Normal human tissue is organized into cell lineages, in which thehighly differentiated mature cells ...
Tissue morphogenesis in multicellular organisms is accompanied by proliferative cell behaviors: cell...
AbstractWe present a three-dimensional individual cell-based, biophysical model to study the effect ...
Identifying the mechanism of intercellular feedback regulation is critical for the basic understandi...
ABSTRACT We present a three-dimensional individual cell-based, biophysical model to study the effect...