[HTML][HTML] Survival of partially differentiated mouse embryonic stem cells in the scala media of the guinea pig cochlea

MS Hildebrand, HHM Dahl, J Hardman… - Journal of the …, 2005 - Springer
The low regenerative capacity of the hair cells of the mammalian inner ear is a major
obstacle for functional recovery following sensorineural hearing loss. A potential treatment is …

[引用][C] Survival of Partially Differentiated Mouse Embryonic Stem Cells in the Scala Media of the Guinea Pig Cochlea

MS Hildebrand, HHM Dahl, J Hardman… - Journal of the …, 2005 - cir.nii.ac.jp
Survival of Partially Differentiated Mouse Embryonic Stem Cells in the Scala Media of the
Guinea Pig Cochlea | CiNii Research CiNii 国立情報学研究所 学術情報ナビゲータ[サイニィ] …

[PDF][PDF] Survival of Partially Differentiated Mouse Embryonic Stem Cells in the Scala Media of the Guinea Pig Cochlea

MS HILDEBRAND, HHM DAHL, J HARDMAN… - researchgate.net
The low regenerative capacity of the hair cells of the mammalian inner ear is a major
obstacle for functional recovery following sensorineural hearing loss. A potential treatment is …

[HTML][HTML] Survival of Partially Differentiated Mouse Embryonic Stem Cells in the Scala Media of the Guinea Pig Cochlea

MS Hildebrand, HHM Dahl, J Hardman… - JARO: Journal of the …, 2005 - ncbi.nlm.nih.gov
The low regenerative capacity of the hair cells of the mammalian inner ear is a major
obstacle for functional recovery following sensorineural hearing loss. A potential treatment is …

Survival of partially differentiated mouse embryonic stem cells in the scala media of the guinea pig cochlea.

MS Hildebrand, HH Dahl, J Hardman… - Journal of the …, 2005 - europepmc.org
The low regenerative capacity of the hair cells of the mammalian inner ear is a major
obstacle for functional recovery following sensorineural hearing loss. A potential treatment is …

Survival of partially differentiated mouse embryonic stem cells in the scala media of the guinea pig cochlea

MS Hildebrand, HHM Dahl… - Journal of the …, 2005 - pubmed.ncbi.nlm.nih.gov
The low regenerative capacity of the hair cells of the mammalian inner ear is a major
obstacle for functional recovery following sensorineural hearing loss. A potential treatment is …

[PDF][PDF] Survival of Partially Differentiated Mouse Embryonic Stem Cells in the Scala Media of the Guinea Pig Cochlea

MS HILDEBRAND, HHM DAHL, J HARDMAN… - academia.edu
The low regenerative capacity of the hair cells of the mammalian inner ear is a major
obstacle for functional recovery following sensorineural hearing loss. A potential treatment is …

Survival of Partially Differentiated Mouse Embryonic Stem Cells in the Scala Media of the Guinea Pig Cochlea

MS Hildebrand, HHM Dahl, J Hardman… - Journal of the …, 2005 - search.proquest.com
The low regenerative capacity of the hair cells of the mammalian inner ear is a major
obstacle for functional recovery following sensorineural hearing loss. A potential treatment is …

Survival of Partially Differentiated Mouse Embryonic Stem Cells in the Scala Media of the Guinea Pig Cochlea.

MS Hildebrand, HHM Dahl, J Hardman… - JARO-Journal of the …, 2005 - search.ebscohost.com
The low regenerative capacity of the hair cells of the mammalian inner ear is a major
obstacle for functional recovery following sensorineural hearing loss. A potential treatment is …

Survival of Partially Differentiated Mouse Embryonic Stem Cells in the Scala Media of the Guinea Pig Cochlea

MS Hildebrand, HHM Dahl, J Hardman… - Journal of the …, 2005 - infona.pl
The low regenerative capacity of the hair cells of the mammalian inner ear is a major
obstacle for functional recovery following sensorineural hearing loss. A potential treatment is …