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Journal of Cell Science
|
December 8, 1998
The M-cadherin catenin complex interacts with microtubules in skeletal muscle cells: implications for the fusion of myoblasts
U Kaufmann, J Kirsch, A Irintchev, et al.
Experimental Cell Research
|
October 20, 2001
A model system for studying postnatal myogenesis with tetracycline-responsive, genetically engineered clonal myoblasts in vitro and in vivo
D Link, A Irintchev, U Knauf, et al.
Journal of Cell Science
|
October 28, 1998
Ectopic skeletal muscles derived from myoblasts implanted under the skin
A Irintchev, J D Rosenblatt, M J Cullen, et al.
Journal of Neurocytology
|
December 1, 1991
Formation of new muscle fibres and tumours after injection of cultured myogenic cells
A Wernig, A Irintchev, A Härtling, et al.
Biochimica Et Biophysica Acta
|
February 17, 1999
Low-energy laser irradiation affects satellite cell proliferation and differentiation in vitro
N Ben-Dov, G Shefer, A Irintchev, et al.
Neuroscience
|
June 29, 2013
Deficient functional recovery after facial nerve crush in rats is associated with restricted rearrangements of synaptic terminals in the facial nucleus
G Hundeshagen, K Szameit, H Thieme, et al.
Experimental Brain Research
|
October 24, 2007
Manual stimulation of forearm muscles does not improve recovery of motor function after injury to a mixed peripheral nerve
N Sinis, O Guntinas-Lichius, A Irintchev, et al.
Human Gene Therapy
|
May 8, 2001
A new immunodeficient mouse model for human myoblast transplantation
R N Cooper, A Irintchev, J P Di Santo, et al.
Experimental Brain Research
|
April 29, 2011
Non-invasive stimulation of the vibrissal pad improves recovery of whisking function after simultaneous lesion of the facial and infraorbital nerves in rats
H Bendella, S P Pavlov, M Grosheva, et al.
Neuroscience
|
July 6, 2010
Recovery of whisking function after manual stimulation of denervated vibrissal muscles requires brain-derived neurotrophic factor and its receptor tyrosine kinase B
J Söhnchen, M Grosheva, S Kiryakova, et al.
Page
of 4
Search research articles
Search
Showing results (21-30 of 32) with videos related to
Sort By:
Page
of 4
Journal of Cell Science
|
December 8, 1998
The M-cadherin catenin complex interacts with microtubules in skeletal muscle cells: implications for the fusion of myoblasts
U Kaufmann, J Kirsch, A Irintchev, et al.
Experimental Cell Research
|
October 20, 2001
A model system for studying postnatal myogenesis with tetracycline-responsive, genetically engineered clonal myoblasts in vitro and in vivo
D Link, A Irintchev, U Knauf, et al.
Journal of Cell Science
|
October 28, 1998
Ectopic skeletal muscles derived from myoblasts implanted under the skin
A Irintchev, J D Rosenblatt, M J Cullen, et al.
Journal of Neurocytology
|
December 1, 1991
Formation of new muscle fibres and tumours after injection of cultured myogenic cells
A Wernig, A Irintchev, A Härtling, et al.
Biochimica Et Biophysica Acta
|
February 17, 1999
Low-energy laser irradiation affects satellite cell proliferation and differentiation in vitro
N Ben-Dov, G Shefer, A Irintchev, et al.
Neuroscience
|
June 29, 2013
Deficient functional recovery after facial nerve crush in rats is associated with restricted rearrangements of synaptic terminals in the facial nucleus
G Hundeshagen, K Szameit, H Thieme, et al.
Experimental Brain Research
|
October 24, 2007
Manual stimulation of forearm muscles does not improve recovery of motor function after injury to a mixed peripheral nerve
N Sinis, O Guntinas-Lichius, A Irintchev, et al.
Human Gene Therapy
|
May 8, 2001
A new immunodeficient mouse model for human myoblast transplantation
R N Cooper, A Irintchev, J P Di Santo, et al.
Experimental Brain Research
|
April 29, 2011
Non-invasive stimulation of the vibrissal pad improves recovery of whisking function after simultaneous lesion of the facial and infraorbital nerves in rats
H Bendella, S P Pavlov, M Grosheva, et al.
Neuroscience
|
July 6, 2010
Recovery of whisking function after manual stimulation of denervated vibrissal muscles requires brain-derived neurotrophic factor and its receptor tyrosine kinase B
J Söhnchen, M Grosheva, S Kiryakova, et al.
Page
of 4