All Relations between scar and hypertrophic

Publication Sentence Publish Date Extraction Date Species
B Guyuron, C Vaugha. Comparison of polydioxanone and polyglactin 910 in intradermal repair. Plastic and reconstructive surgery. vol 98. issue 5. 1996-11-04. PMID:8823020. these sites were evaluated by a double-blind method for erythema, induration, infection, scar spread, and hypertrophic scarring at approximately 5 months and at least 1 year postoperatively. 1996-11-04 2023-08-12 Not clear
B Guyuron, C Vaugha. Comparison of polydioxanone and polyglactin 910 in intradermal repair. Plastic and reconstructive surgery. vol 98. issue 5. 1996-11-04. PMID:8823020. any raised scar was labeled hypertrophic. 1996-11-04 2023-08-12 Not clear
B Guyuron, C Vaugha. Comparison of polydioxanone and polyglactin 910 in intradermal repair. Plastic and reconstructive surgery. vol 98. issue 5. 1996-11-04. PMID:8823020. scar spread, as defined above, was observed in 6 of 38 incisions repaired with polyglactin 910, and 3 sites developed scar hypertrophy. 1996-11-04 2023-08-12 Not clear
B Guyuron, C Vaugha. Comparison of polydioxanone and polyglactin 910 in intradermal repair. Plastic and reconstructive surgery. vol 98. issue 5. 1996-11-04. PMID:8823020. conversely, 3 of 38 incisions closed with polydioxanone revealed scar spread (p < 0.25), and 3 were hypertrophic (p < 0.35). 1996-11-04 2023-08-12 Not clear
S Younai, G Venters, S Vu, L Nichter, M E Nimni, T L Tua. Role of growth factors in scar contraction: an in vitro analysis. Annals of plastic surgery. vol 36. issue 5. 1996-10-23. PMID:8743660. hypertrophic scar fibroblasts showed a consistently higher basal level of fibrin matrix gel (fmg) contraction than other fibroblasts. 1996-10-23 2023-08-12 Not clear
R L Bang, H Dasht. Keloid and hypertrophic scars: trace element alteration. Nutrition (Burbank, Los Angeles County, Calif.). vol 11. issue 5 Suppl. 1996-10-23. PMID:8748214. the levels of zinc (zn), copper (cu), manganese (mn), and selenium (se) in serum, normal skin and scar of 40 keloid and hypertrophic scar patients were assessed. 1996-10-23 2023-08-12 Not clear
R L Bang, H Dasht. Keloid and hypertrophic scars: trace element alteration. Nutrition (Burbank, Los Angeles County, Calif.). vol 11. issue 5 Suppl. 1996-10-23. PMID:8748214. from this study, no relationships between the hypertrophic and keloid scar to trace elements were found; however, because of the limited numbers of patients, a definite conclusion could not be drawn. 1996-10-23 2023-08-12 Not clear
M Arakawa, A Hatamochi, Y Mori, K Mori, H Ueki, T Moriguch. Reduced collagenase gene expression in fibroblasts from hypertrophic scar tissue. The British journal of dermatology. vol 134. issue 5. 1996-10-10. PMID:8736326. reduced collagenase gene expression in fibroblasts from hypertrophic scar tissue. 1996-10-10 2023-08-12 Not clear
M Arakawa, A Hatamochi, Y Mori, K Mori, H Ueki, T Moriguch. Reduced collagenase gene expression in fibroblasts from hypertrophic scar tissue. The British journal of dermatology. vol 134. issue 5. 1996-10-10. PMID:8736326. the major histopathological feature of hypertrophic scar lesions is fibrosis, characterized by excessive accumulation of collagen. 1996-10-10 2023-08-12 Not clear
M Arakawa, A Hatamochi, Y Mori, K Mori, H Ueki, T Moriguch. Reduced collagenase gene expression in fibroblasts from hypertrophic scar tissue. The British journal of dermatology. vol 134. issue 5. 1996-10-10. PMID:8736326. the purpose of this study was to determine if there is not only increased expression of collagen but also decreased expression of collagenase in hypertrophic scar fibroblasts. 1996-10-10 2023-08-12 Not clear
M Arakawa, A Hatamochi, Y Mori, K Mori, H Ueki, T Moriguch. Reduced collagenase gene expression in fibroblasts from hypertrophic scar tissue. The British journal of dermatology. vol 134. issue 5. 1996-10-10. PMID:8736326. in hypertrophic scar fibroblasts, increased levels of alpha 1 (i) and alpha 1 (iii) collagen mrnas were observed in fibroblasts from the edge and outside of scar tissue, while normal levels were noted in fibroblasts from the centre of this tissue. 1996-10-10 2023-08-12 Not clear
M Arakawa, A Hatamochi, Y Mori, K Mori, H Ueki, T Moriguch. Reduced collagenase gene expression in fibroblasts from hypertrophic scar tissue. The British journal of dermatology. vol 134. issue 5. 1996-10-10. PMID:8736326. in contrast, decreased levels of collagenase mrna were found in the hypertrophic scar fibroblasts. 1996-10-10 2023-08-12 Not clear
M Arakawa, A Hatamochi, Y Mori, K Mori, H Ueki, T Moriguch. Reduced collagenase gene expression in fibroblasts from hypertrophic scar tissue. The British journal of dermatology. vol 134. issue 5. 1996-10-10. PMID:8736326. the changes in the collagenase mrna levels of the hypertrophic scar fibroblasts correlated well with decreased collagenolytic activity as determined by the degradation rate of fluorescein isothiocyanate-labelled type i collagen in fibroblast culture supernatant. 1996-10-10 2023-08-12 Not clear
M Arakawa, A Hatamochi, Y Mori, K Mori, H Ueki, T Moriguch. Reduced collagenase gene expression in fibroblasts from hypertrophic scar tissue. The British journal of dermatology. vol 134. issue 5. 1996-10-10. PMID:8736326. these results suggest that decreased expression of collagenase in hypertrophic scar fibroblasts may be one possible cause for the excessive accumulation of collagen in the skin lesions of hypertrophic scars. 1996-10-10 2023-08-12 Not clear
U Wlotzke, U Hohenleutner, T A Abd-El-Raheem, W Bäumler, M Landthale. Side-effects and complications of flashlamp-pumped pulsed dye laser therapy of port-wine stains. A prospective study. The British journal of dermatology. vol 134. issue 3. 1996-10-02. PMID:8731672. furthermore, complications such as impetigo-like crusting occurred in 25%, bleeding in 12%, a pyogenic granuloma in 1%, hyperpigmentation in 27%, hypopigmentation in 1%, atrophic scarring in 3%, and an hypertrophic scar in 1%. 1996-10-02 2023-08-12 Not clear
C Tsai, K Hata, S Torii, M Matsuyama, M Ued. Contraction potency of hypertrophic scar-derived fibroblasts in a connective tissue model: in vitro analysis of wound contraction. Annals of plastic surgery. vol 35. issue 6. 1996-09-26. PMID:8748348. by using a connective tissue model (ctm) of collagen gel lattice, we analyzed the contraction potency of fibroblasts that had been obtained from hypertrophic scar, normal skin, and normal oral mucosa. 1996-09-26 2023-08-12 Not clear
C Tsai, K Hata, S Torii, M Matsuyama, M Ued. Contraction potency of hypertrophic scar-derived fibroblasts in a connective tissue model: in vitro analysis of wound contraction. Annals of plastic surgery. vol 35. issue 6. 1996-09-26. PMID:8748348. we believe that the hypertrophic scar-derived ctm is a useful pathological model for the research of wound contraction and hypertrophic scar formation. 1996-09-26 2023-08-12 Not clear
N Mazzer, C H Barbieri, M Corte. The posterior interosseous forearm island flap for skin defects in the hand and elbow. A prospective study of 51 cases. Journal of hand surgery (Edinburgh, Scotland). vol 21. issue 2. 1996-09-18. PMID:8732408. late complications included hair growth in the first web and palm, flap redundancy and hypertrophic scar at the donor site. 1996-09-18 2023-08-12 Not clear
P A Ahlerin. Topical silastic gel sheeting for treating and controlling hypertrophic and keloid scars: case study. Dermatology nursing. vol 7. issue 5. 1996-09-05. PMID:8695320. in this case study the treatment and control of hypertrophic and keloid scars in an adult chinese male with third degree burns is presented, emphasizing the use of topical silastic gel for scar treatment and control. 1996-09-05 2023-08-12 Not clear
P G Scott, C M Dodd, E E Tredget, A Ghahary, F Rahemtull. Chemical characterization and quantification of proteoglycans in human post-burn hypertrophic and mature scars. Clinical science (London, England : 1979). vol 90. issue 5. 1996-08-08. PMID:8665780. samples of normal skin from four patients, post-burn hypertrophic scar from five patients and post-burn mature scar from six patients were analysed for hydroxyproline, water and uronic acid and extracted with guanidinium chloride to yield the proteoglycan pool. 1996-08-08 2023-08-12 human