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Epidermal ridge formation during limb regeneration in the adult salamander, Ambystoma annulatum
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Young HE. Epidermal ridge formation during limb regeneration in the adult salamander, Ambystoma annulatum. Proc Ark Acad Sci 1977;31:107-9.
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Young BE. Limb Regeneration in the Adult Salamander, Ambystoma annulatum. Cope 1889 (Amphibia:Ambystomatidae). Little Rock: Univ Ark Library Press; 1977.
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Identification of hyaluronate within peripheral nervous tissue matrices during limb regeneration
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Coates PW, Markwald RR, Kenny AD, Alan R, editors. New York: Liss, Inc
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Young HE, Dalley BK, Markwald RR. Identification of hyaluronate within peripheral nervous tissue matrices during limb regeneration. In: Coates PW, Markwald RR, Kenny AD, Alan R, editors. Developing and Regenerating Vertebrate Nervous Systems, Neurology and Neurobiology. New York: Liss, Inc.; 1983;6:175-83.
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Histological analysis of limb regeneration in postmetamorphic adult Ambystoma
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Young HE, Bailey CF, Markwald RR, Dalley BK. Histological analysis of limb regeneration in postmetamorphic adult Ambystoma. Anat Rec 1985;212:183-94.
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Anat Rec
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61
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Effect of selected denervations on glycoconjugate composition and tissue morphology during the initiation phase of limb regeneration in adult Ambystoma
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Young HE, Dalley BK, Markwald RR. Effect of selected denervations on glycoconjugate composition and tissue morphology during the initiation phase of limb regeneration in adult Ambystoma. Anat Rec 1989;223:223-30.
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Anat Rec
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Glycoconjugates in normal wound tissue matrices during the initiation phase of limb regeneration in adult Ambystoma
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Young HE, Dalley BK, Markwald RR. Glycoconjugates in normal wound tissue matrices during the initiation phase of limb regeneration in adult Ambystoma. Anat Rec 1989;223:231-41.
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Anat Rec
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Histochemical analysis of newly synthesized and resident sulfated glycosaminoglycans during musculogenesis in the embryonic chick leg
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Young HE, Carrino DA, Caplan AI. Histochemical analysis of newly synthesized and resident sulfated glycosaminoglycans during musculogenesis in the embryonic chick leg. J Morph 1989;201:85-103.
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J Morph
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Enzyme-linked immuno-culture assay
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Young HE, Sippel J, Putnam LS, Lucas PA, Morrison DC. Enzyme-linked immuno-culture assay. J Tiss Cult Meth 1992;14:31-6.
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(1992)
J Tiss Cult Meth
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66
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Isolation of embryonic chick myosatellite and pluripotent stem cells
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Young HE, Ceballos EM, Smith JC, Lucas PA, Morrison DC. Isolation of embryonic chick myosatellite and pluripotent stem cells. J Tiss Cult Meth 1992;14:85-92.
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(1992)
J Tiss Cult Meth
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67
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Pluripotent mesenchymal stem cells reside within avian connective tissue matrices. in vitro
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Young HE, Ceballos EM, Smith JC, Mancini ML, Wright RP, Ragan BL et al. Pluripotent mesenchymal stem cells reside within avian connective tissue matrices. in vitro Cell Devel Biol 1993;29A: 723-36.
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Cell Devel Biol
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Young, H.E.1
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68
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Mesenchymal stem cells reside within the connective tissues of many organs
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Young HE, Mancini ML, Wright RP, Smith JC, Black AC Jr, Reagan CR et al. Mesenchymal stem cells reside within the connective tissues of many organs. Devel Dynam 1995;202:137-44.
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(1995)
Devel Dynam
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69
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Transforming growth factor-b (TGF-b) stimulates chondrogenesis in cultured embryonic mesenchymal cells
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Bowerman SG, Taylor SS, Putnam L, Young HE, Lucas PA. Transforming growth factor-b (TGF-b) stimulates chondrogenesis in cultured embryonic mesenchymal cells. Surg Forum 1991;42:535-6.
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(1991)
Surg Forum
, vol.42
, pp. 535-536
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71
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Isolation and differentiation of mesenchymal stem cells from rabbit muscle
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Pate DW, Southerland SS, Grande DA, Young HE, Lucas PA. Isolation and differentiation of mesenchymal stem cells from rabbit muscle. Surg Forum 1993;44:587-9.
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(1993)
Surg Forum
, vol.44
, pp. 587-589
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Pate, D.W.1
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72
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A population of cells resident within embryonic and newborn rat skeletal muscle is capable of differentiating into multiple mesodermal phenotypes
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Lucas PA, Calcutt AF, Southerland SS, Warejcka D, Young HE. A population of cells resident within embryonic and newborn rat skeletal muscle is capable of differentiating into multiple mesodermal phenotypes. Wound Rep Regen 1995;3:457-68.
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(1995)
Wound Rep Regen
, vol.3
, pp. 457-468
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Effect of rat mesenchymal stem cells on the development of abdominal adhesions after surgery
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Lucas PA, Warejcka DJ, Zhang L-M, Newman WH, Young HE. Effect of rat mesenchymal stem cells on the development of abdominal adhesions after surgery. J Surg Res 1996;62:229-32.
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(1996)
J Surg Res
, vol.62
, pp. 229-232
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Formation of abdominal adhesions is inhibited by antibodies to transforming growth factor-beta1
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Lucas PA, Warejcka DJ, Young HE, Lee BY. Formation of abdominal adhesions is inhibited by antibodies to transforming growth factor-beta1. J Surg Res 1996;65:135-8.
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J Surg Res
, vol.65
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75
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Differentiation factors induce expression of muscle, fat, cartilage, and bone in a clone of mouse pluripotent mesenchymal stem cells
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Rogers JJ, Adkison LR, Black AC Jr, Lucas PA, Young HE. Differentiation factors induce expression of muscle, fat, cartilage, and bone in a clone of mouse pluripotent mesenchymal stem cells. Am Surg 1995;61:1-6.
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(1995)
Am Surg
, vol.61
, pp. 1-6
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Recombinant human bone morphogenetic proteins-2 and 4 (rhBMP-2 and rhBMP-4) induce several mesenchymal phenotypes in culture
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Dixon K, Murphy RW, Southerland SS, Young HE, Dalton ML, Lucas PA. Recombinant human bone morphogenetic proteins-2 and 4 (rhBMP-2 and rhBMP-4) induce several mesenchymal phenotypes in culture. Wound Rep Regen 1996;4:374-80.
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(1996)
Wound Rep Regen
, vol.4
, pp. 374-380
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Dixon, K.1
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77
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A population of cells isolated from rat heart capable of differentiating into several mesodermal phenotypes
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Warejcka DJ, Harvey R, Taylor BJ, Young HE, Lucas PA. A population of cells isolated from rat heart capable of differentiating into several mesodermal phenotypes. J Surg Res 1996;62:233-42.
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J Surg Res
, vol.62
, pp. 233-242
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Clonal population of adult stem cells: Life span and differentiation potential
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