Low-level, steady electric fields of 6–10 volts/cm stimulated directional orientation and translocation of cultured human retinal pigment epithelial cells. The orientative movements (galvanotropism) consisted of somatic elongation of the cells into spindle shapes, followed by pivotal alignment orthogonal to the field. The anodal edges of the cells underwent retraction of their plasmalemmal extensions, while the cathode edges and the longitudinal ends developed lamellipodia and ruffled membranes. These tropic movements were followed by a translocational movement (galvanotaxis) of the cells towards the cathode. Staining of these migrating cells for actin showed the accumulation of stress fibers at the leading (cathodal) edge, as well as at th...
Electric fields have been studied extensively in biomedical engineering (BME) for numerous regenerat...
Endogenous electric currents generated instantly at skin wounds direct migration of epithelial cells...
Currents that leak out of wounds generate electric fields lateral to the wound. These fields induce ...
We investigated and characterized the effect of externally applied electric fields (EF) on retinal p...
Studies show that electric fields are used as therapy during nerve and tissue injuries along with tr...
AbstractIn alternating electric (AC) fields, particles experience polarizing effects that induce dip...
Epithelia of the cornea, lens and retina contain a vast array of ion channels and pumps. Together th...
Electric fields have been studied extensively in biomedical engineering (BME) for numerous regenerat...
In this project we designed four different level of electrotaxis experiment from in vitro and in viv...
Endogenous electric fields (EFs) are present during development and regeneration. Enhancing the end...
SummarySensing of an electric field (EF) by cells—galvanotaxis—is important in wound healing [1], de...
Galvanotaxis, that is, migration induced by DC electric fields, is thought to play a significant rol...
Wounding skin generates an endogenous electric field of 100-200 mV/mm in the immediate vicinity of t...
Endogenous electrical fields (EFs) at corneal and skin wounds send a powerful signal that directs ce...
Directed cell migration is essential in both physiological and pathological situations. Many guidanc...
Electric fields have been studied extensively in biomedical engineering (BME) for numerous regenerat...
Endogenous electric currents generated instantly at skin wounds direct migration of epithelial cells...
Currents that leak out of wounds generate electric fields lateral to the wound. These fields induce ...
We investigated and characterized the effect of externally applied electric fields (EF) on retinal p...
Studies show that electric fields are used as therapy during nerve and tissue injuries along with tr...
AbstractIn alternating electric (AC) fields, particles experience polarizing effects that induce dip...
Epithelia of the cornea, lens and retina contain a vast array of ion channels and pumps. Together th...
Electric fields have been studied extensively in biomedical engineering (BME) for numerous regenerat...
In this project we designed four different level of electrotaxis experiment from in vitro and in viv...
Endogenous electric fields (EFs) are present during development and regeneration. Enhancing the end...
SummarySensing of an electric field (EF) by cells—galvanotaxis—is important in wound healing [1], de...
Galvanotaxis, that is, migration induced by DC electric fields, is thought to play a significant rol...
Wounding skin generates an endogenous electric field of 100-200 mV/mm in the immediate vicinity of t...
Endogenous electrical fields (EFs) at corneal and skin wounds send a powerful signal that directs ce...
Directed cell migration is essential in both physiological and pathological situations. Many guidanc...
Electric fields have been studied extensively in biomedical engineering (BME) for numerous regenerat...
Endogenous electric currents generated instantly at skin wounds direct migration of epithelial cells...
Currents that leak out of wounds generate electric fields lateral to the wound. These fields induce ...