The development of a mechanistic understanding of the processes by which cells sense and actively respond to the mechanical environment would represent a significant advance in the fields of biomechanics and tissue engineering. Investigation at a single cell level is required to obtain new and fundamental insights into this problem. In this thesis a series of experimental tests and cell mechanics models are developed with the aim of advancing the current understanding of cell biomechanics. Micropipette aspiration (MA) has been used extensively in biomechanical investigations of un-adhered cells suspended in media. However, the MA technique has largely been limited to the investigation of un-adhered cells suspended in media. In the current ...
Cells are the fundamental units of living organisms controlling the behaviour of tissues, organs and...
Thesis (Ph.D.)--Boston UniversityIn vivo, cells routinely experience mechanical stresses and strains...
All living creatures, despite their profound diversity, share a common architectural building block:...
Micropipette aspiration (MA) has been used extensively in biomechanical investigations of un-adhered...
Numerous in-vitro studies have established that cells possess the ability to sense and react to thei...
The overall objective of this thesis is to provide a new understanding of the mechanisms that drive ...
The overall objective of this thesis is to provide a new understanding of the mechanisms that drive ...
AbstractMany organs adapt to their mechanical environment as a result of physiological change or dis...
AbstractMany organs adapt to their mechanical environment as a result of physiological change or dis...
Numerous in-vitro studies have established that cells react to their physical environment and to app...
Journal articleNumerous in-vitro studies have established that cells react to their physical environ...
Cells and tissues continuously experience mechanical loading during daily activity. However, the mec...
Numerous experimental studies have established that cells can sense the stiffness of underlying subs...
Mechanical cues have been recognized to be critically important in the regulation of cells. A myriad...
Numerous experimental studies have established that cells can sense the stiffness of underlying subs...
Cells are the fundamental units of living organisms controlling the behaviour of tissues, organs and...
Thesis (Ph.D.)--Boston UniversityIn vivo, cells routinely experience mechanical stresses and strains...
All living creatures, despite their profound diversity, share a common architectural building block:...
Micropipette aspiration (MA) has been used extensively in biomechanical investigations of un-adhered...
Numerous in-vitro studies have established that cells possess the ability to sense and react to thei...
The overall objective of this thesis is to provide a new understanding of the mechanisms that drive ...
The overall objective of this thesis is to provide a new understanding of the mechanisms that drive ...
AbstractMany organs adapt to their mechanical environment as a result of physiological change or dis...
AbstractMany organs adapt to their mechanical environment as a result of physiological change or dis...
Numerous in-vitro studies have established that cells react to their physical environment and to app...
Journal articleNumerous in-vitro studies have established that cells react to their physical environ...
Cells and tissues continuously experience mechanical loading during daily activity. However, the mec...
Numerous experimental studies have established that cells can sense the stiffness of underlying subs...
Mechanical cues have been recognized to be critically important in the regulation of cells. A myriad...
Numerous experimental studies have established that cells can sense the stiffness of underlying subs...
Cells are the fundamental units of living organisms controlling the behaviour of tissues, organs and...
Thesis (Ph.D.)--Boston UniversityIn vivo, cells routinely experience mechanical stresses and strains...
All living creatures, despite their profound diversity, share a common architectural building block:...