Guiding neuron development with planar surface gradients of substrate cues deposited using microfluidic devices

LJ Millet, ME Stewart, RG Nuzzo, MU Gillette - Lab on a Chip, 2010 - pubs.rsc.org
Wiring the nervous system relies on the interplay of intrinsic and extrinsic signaling
molecules that control neurite extension, neuronal polarity, process maturation and …

[PDF][PDF] Guiding neuron development with planar surface gradients of substrate cues deposited using microfluidic devices

LJ Millet, ME Stewart, RG Nuzzob, MU Gillette - Lab Chip, 2010 - academia.edu
Wiring the nervous system relies on the interplay of intrinsic and extrinsic signaling
molecules that control neurite extension, neuronal polarity, process maturation and …

[PDF][PDF] Guiding neuron development with planar surface gradients of substrate cues deposited using microfluidic devices

LJ Millet, ME Stewart, RG Nuzzob, MU Gillette - Lab Chip, 2010 - Citeseer
Wiring the nervous system relies on the interplay of intrinsic and extrinsic signaling
molecules that control neurite extension, neuronal polarity, process maturation and …

Guiding neuron development with planar surface gradients of substrate cues deposited using microfluidic devices

LJ Millet, ME Stewart, RG Nuzzo, MU Gillette - Lab on a chip, 2010 - experts.illinois.edu
Wiring the nervous system relies on the interplay of intrinsic and extrinsic signaling
molecules that control neurite extension, neuronal polarity, process maturation and …

Guiding neuron development with planar surface gradients of substrate cues deposited using microfluidic devices.

LJ Millet, ME Stewart, RG Nuzzo, MU Gillette - Lab on a Chip, 2010 - europepmc.org
Wiring the nervous system relies on the interplay of intrinsic and extrinsic signaling
molecules that control neurite extension, neuronal polarity, process maturation and …

[PDF][PDF] Guiding neuron development with planar surface gradients of substrate cues deposited using microfluidic devices

LJ Millet, ME Stewart, RG Nuzzob, MU Gillette - Lab Chip, 2010 - life.illinois.edu
Wiring the nervous system relies on the interplay of intrinsic and extrinsic signaling
molecules that control neurite extension, neuronal polarity, process maturation and …

[引用][C] Guiding neuron development with planar surface gradients of substrate cues deposited using microfluidic devices

LJ Millet, ME Stewart, RG Nuzzo, MU Gillette - Lab on a Chip, 2010 - cir.nii.ac.jp
Guiding neuron development with planar surface gradients of substrate cues deposited using
microfluidic devices | CiNii Research CiNii 国立情報学研究所 学術情報ナビゲ恁縖サイニィ] 詳細 …

Guiding neuron development with planar surface gradients of substrate cues deposited using microfluidic devices

LJ Millet, ME Stewart, RG Nuzzo… - Lab on a chip, 2010 - pubmed.ncbi.nlm.nih.gov
Wiring the nervous system relies on the interplay of intrinsic and extrinsic signaling
molecules that control neurite extension, neuronal polarity, process maturation and …

[HTML][HTML] Guiding neuron development with planar surface gradients of substrate cues deposited using microfluidic devices

LJ Millet, ME Stewart, RG Nuzzo, MU Gillette - Lab on a chip, 2010 - ncbi.nlm.nih.gov
Wiring the nervous system relies on the interplay of intrinsic and extrinsic signaling
molecules that control neurite extension, neuronal polarity, process maturation and …

Guiding neuron development with planar surface gradients of substrate cues deposited using microfluidic devices.

LJ Millet, ME Stewart, RG Nuzzo, MU Gillette - Lab on a Chip, 2010 - europepmc.org
Wiring the nervous system relies on the interplay of intrinsic and extrinsic signaling
molecules that control neurite extension, neuronal polarity, process maturation and …