DiCarloALHatchettRJKaminskiJM. Medical countermeasures for radiation combined injury: radiation with burn, blast, trauma and/or sepsis. Report of an NIAID Workshop, March 26-27, 2007. Radiat Res. 2008;169:712-721.
2.
PellmarTCRockwellS. Priority list of research areas for radiological nuclear threat countermeasures. Radiat Res. 2005;163: 115-123.
3.
BeyEPratMDuhamelP. Emerging therapy for improving wound repair of severe radiation burns using local bone marrow-derived stem cell administrations. Wound Repair Regen. 2010;18:50-58.
4.
LatailladeJJDoucetCBeyE. New approach to radiation burn treatment by dosimetry-guided surgery combined with autologous mesenchymal stem cell therapy. Regen Med. 2007;2:785-794.
DicarloALRamakrishnanNHatchettRJ. Radiation combined injury: overview of NIAID research. Health Phys. 2010;98: 863-867.
7.
JagetiaGCRajanikantGKBaligaMSRaoKVKumarP. Augmentation of wound healing by ascorbic acid treatment in mice exposed to gamma-radiation. Int J Radiat Biol. 2004;80: 347-354.
8.
AtiyehBSCostagliolaM. Cultured epithelial autograft (CEA) in burn treatment: three decades later. Burns. 2007;33: 405-413.
9.
RanXZShiCMZhengHESuYPChengTM. Experimental research on the management of combined radiation-burn injury in China. Radiat Res. 2011;175:382-389.
10.
ShiCZhuYSuYChengT. Stem cells and their applications in skin-cell therapy. Trends Biotechnol. 2006;24:48-52.
11.
ShiCChengTSuY. Transplantation of dermal multipotent cells promotes survival and wound healing in rats with combined radiation and wound injury. Radiat Res. 2004;62: 56-63.