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Shigeru Ichioka

Department of Plastic and Reconstructive Surgery

Saitama Medical University

Saitama

Japan

[email]@umin.ac.jp

Name/email consistency: high

 
 
 
 
 
 
 

Affiliation

  • Department of Plastic and Reconstructive Surgery, Saitama Medical University, Saitama, Japan. 2000 - 2009

References

  1. Determinants of wound healing in bone marrow-impregnated collagen matrix treatment: impact of microcirculatory response to surgical debridement. Ichioka, S., Yokogawa, H., Sekiya, N., Kouraba, S., Minamimura, A., Ohura, N., Hasegawa, H., Nakatsuka, T. Wound. Repair. Regen (2009) [Pubmed]
  2. Oxygen consumption of keloids and hypertrophic scars. Ichioka, S., Ando, T., Shibata, M., Sekiya, N., Nakatsuka, T. Ann. Plast. Surg (2008) [Pubmed]
  3. A technique to visualize wound bed microcirculation and the acute effect of negative pressure. Ichioka, S., Watanabe, H., Sekiya, N., Shibata, M., Nakatsuka, T. Wound. Repair. Regen (2008) [Pubmed]
  4. AlphaV beta3 (alphavbeta3) integrin inhibition reduces leukocyte-endothelium interaction in a pressure-induced reperfusion model. Ichioka, S., Sekiya, N., Shibata, M., Nakatsuka, T. Wound. Repair. Regen (2007) [Pubmed]
  5. Versatility of the Limberg flap and the V-Y flap (based on a distal perforator) for covering sacral ulcers. Ichioka, S., Okabe, K., Ohura, N., Yokogawa, H., Nakajima, M., Nakatsuka, T. Scand. J. Plast. Reconstr. Surg. Hand. Surg (2007) [Pubmed]
  6. The positive experience of using a growth factor product on deep wounds with exposed bone. Ichioka, S., Ohura, N., Nakatsuka, T. J. Wound. Care (2005) [Pubmed]
  7. Bone marrow-impregnated collagen matrix for wound healing: experimental evaluation in a microcirculatory model of angiogenesis, and clinical experience. Ichioka, S., Kouraba, S., Sekiya, N., Ohura, N., Nakatsuka, T. Br. J. Plast. Surg (2005) [Pubmed]
  8. Benefits of surgical reconstruction in pressure ulcers with a non-advancing edge and scar formation. Ichioka, S., Ohura, N., Nakatsuka, T. J. Wound. Care (2005) [Pubmed]
  9. Bone marrow cell implantation improves flap viability after ischemia-reperfusion injury. Ichioka, S., Kudo, S., Shibata, M., Ando, J., Sekiya, N., Nakatsuka, T. Ann. Plast. Surg (2004) [Pubmed]
  10. Triple coverage of ischial ulcers with adipofascial turnover and fasciocutaneous flaps. Ichioka, S., Okabe, K., Tsuji, S., Ohura, N., Nakatsuka, T. Plast. Reconstr. Surg. (2004) [Pubmed]
  11. Distal perforator-based fasciocutaneous V-Y flap for treatment of sacral pressure ulcers. Ichioka, S., Okabe, K., Tsuji, S., Ohura, N., Nakatsuka, T. Plast. Reconstr. Surg. (2004) [Pubmed]
  12. Skin temperature changes induced by strong static magnetic field exposure. Ichioka, S., Minegishi, M., Iwasaka, M., Shibata, M., Nakatsuka, T., Ando, J., Ueno, S. Bioelectromagnetics (2003) [Pubmed]
  13. Regenerative surgery for sacral pressure ulcers using collagen matrix substitute dermis (artificial dermis). Ichioka, S., Ohura, N., Sekiya, N., Shibata, M., Nakatsuka, T. Ann. Plast. Surg (2003) [Pubmed]
  14. Clinical use of amrinone (a selective phosphodiesterase III inhibitor) in reconstructive surgery. Ichioka, S., Nakatsuka, T., Ohura, N., Sato, Y., Harii, K. Plast. Reconstr. Surg. (2001) [Pubmed]
  15. High-intensity static magnetic fields modulate skin microcirculation and temperature in vivo. Ichioka, S., Minegishi, M., Iwasaka, M., Shibata, M., Nakatsuka, T., Harii, K., Kamiya, A., Ueno, S. Bioelectromagnetics (2000) [Pubmed]
 
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