This study presents a multilayer in vitro human skin platform to quantitatively relate predicted spatial time–temperature history with measured tissue injury response. This information is needed to elucidate high-temperature, short-duration burn injury kinetics and enables determination of relevant input parameters for computational models to facilitate treatment planning. Multilayer in vitro skin platforms were constructed using human dermal keratinocytes and fibroblasts embedded in collagen I hydrogels. After three seconds of contact with a 50–100 °C burn tip, ablation, cell death, apoptosis, and HSP70 expression were spatially measured using immunofluorescence confocal microscopy. Finite element modeling was performed using the measured ...
Background: Burn injuries are a major cause of morbidity and mortality worldwide. Despite advances i...
Introduction: Burns are responsible for pathophysiological, cellular and molecular changes and repre...
Understanding the effect of heat on skin cells is important for the prevention of burn injury. Knowl...
This study presents a multilayer in vitro human skin platform to quantitatively relate predicted spa...
This paper demonstrates a non-Fourier prediction methodology of triple-layer human skin tissue for d...
YesThis paper demonstrates a non-Fourier prediction methodology of triple-layer human skin tissue fo...
This paper demonstrates a non-Fourier prediction methodology of triple-layer human skin tissue for d...
Background: In experimental models in vivo, it is difficult to characterize the effect of thermal bu...
This paper presents the non-Fourier bioheat transfer prediction methodology of human skin to determi...
Burns affect millions every year and a model to mimic the pathophysiology of such injuries in detail...
This paper presents the non-Fourier bioheat transfer prediction methodology of human skin to determi...
First aid treatment of burns reduces scarring and improves healing. We quantify the efficacy of firs...
Background Burn injuries are a major cause of morbidity and mortality worldwide. Cooling is widely p...
Background: Burn injuries are a major cause of morbidity and mortality worldwide. Despite advances i...
Background: Burn injuries are a major cause of morbidity and mortality worldwide. Despite advances i...
Background: Burn injuries are a major cause of morbidity and mortality worldwide. Despite advances i...
Introduction: Burns are responsible for pathophysiological, cellular and molecular changes and repre...
Understanding the effect of heat on skin cells is important for the prevention of burn injury. Knowl...
This study presents a multilayer in vitro human skin platform to quantitatively relate predicted spa...
This paper demonstrates a non-Fourier prediction methodology of triple-layer human skin tissue for d...
YesThis paper demonstrates a non-Fourier prediction methodology of triple-layer human skin tissue fo...
This paper demonstrates a non-Fourier prediction methodology of triple-layer human skin tissue for d...
Background: In experimental models in vivo, it is difficult to characterize the effect of thermal bu...
This paper presents the non-Fourier bioheat transfer prediction methodology of human skin to determi...
Burns affect millions every year and a model to mimic the pathophysiology of such injuries in detail...
This paper presents the non-Fourier bioheat transfer prediction methodology of human skin to determi...
First aid treatment of burns reduces scarring and improves healing. We quantify the efficacy of firs...
Background Burn injuries are a major cause of morbidity and mortality worldwide. Cooling is widely p...
Background: Burn injuries are a major cause of morbidity and mortality worldwide. Despite advances i...
Background: Burn injuries are a major cause of morbidity and mortality worldwide. Despite advances i...
Background: Burn injuries are a major cause of morbidity and mortality worldwide. Despite advances i...
Introduction: Burns are responsible for pathophysiological, cellular and molecular changes and repre...
Understanding the effect of heat on skin cells is important for the prevention of burn injury. Knowl...