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Brain Research
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July 16, 1973
Unmyelinated fibers in the ventral root
R E Coggeshall, J D Coulter, W D Willis
Neuroscience Letters
|
July 6, 2002
Stimulation in the rat fastigial nucleus enhances the responses of neurons in the dorsal column nuclei to innocuous stimuli
C Y Saab, E Garcia-Nicas, W D Willis
The Journal of Chemical Physics
|
June 3, 2019
Calibration of a lattice model for high-molecular-weight block copolymer melts
J D Willis, T M Beardsley, M W Matsen
The Journal of Physiology
|
January 1, 1979
Effects of mechanical and chemical stimulation of fine muscle afferents upon primate spinothalamic tract cells
R D Foreman, R F Schmidt, W D Willis
Experimental Neurology
|
May 1, 1970
Actions of ventral cord pathways on spinal neurons
R D Skinner, W D Willis, M B Hancock
British Journal of Rheumatology
|
December 1, 1995
Polyarthritis in the rat: effects of tolerance and sensitization to the bacterial extract OM-89 with a possible mode of action
D Willis, A R Moore, G Gowland, et al.
The Journal of Comparative Neurology
|
January 10, 1981
Organization of spinothalamic tract axons within the rat spinal cord
G J Giesler, H R Spiel, W D Willis
Applied Optics
|
September 11, 2010
Tin-polyimide and indium-polyimide thin-film composites as soft x-ray bandpass filters
S F Powell, M J Allen, T D Willis
Brain Research
|
February 25, 1982
Responses of primate spinothalamic neurons located in the sacral intermediomedial gray (Stilling's nucleus) to proprioceptive input from the tail
R J Milne, R D Foreman, W D Willis
The Journal of Comparative Neurology
|
May 1, 1982
Electrophysiological response properties of spinoreticular neurons in the monkey
L H Haber, B D Moore, W D Willis
Page
of 76
Search research articles
Search
Showing results (211-220 of 755) with videos related to
Sort By:
Page
of 76
Brain Research
|
July 16, 1973
Unmyelinated fibers in the ventral root
R E Coggeshall, J D Coulter, W D Willis
Neuroscience Letters
|
July 6, 2002
Stimulation in the rat fastigial nucleus enhances the responses of neurons in the dorsal column nuclei to innocuous stimuli
C Y Saab, E Garcia-Nicas, W D Willis
The Journal of Chemical Physics
|
June 3, 2019
Calibration of a lattice model for high-molecular-weight block copolymer melts
J D Willis, T M Beardsley, M W Matsen
The Journal of Physiology
|
January 1, 1979
Effects of mechanical and chemical stimulation of fine muscle afferents upon primate spinothalamic tract cells
R D Foreman, R F Schmidt, W D Willis
Experimental Neurology
|
May 1, 1970
Actions of ventral cord pathways on spinal neurons
R D Skinner, W D Willis, M B Hancock
British Journal of Rheumatology
|
December 1, 1995
Polyarthritis in the rat: effects of tolerance and sensitization to the bacterial extract OM-89 with a possible mode of action
D Willis, A R Moore, G Gowland, et al.
The Journal of Comparative Neurology
|
January 10, 1981
Organization of spinothalamic tract axons within the rat spinal cord
G J Giesler, H R Spiel, W D Willis
Applied Optics
|
September 11, 2010
Tin-polyimide and indium-polyimide thin-film composites as soft x-ray bandpass filters
S F Powell, M J Allen, T D Willis
Brain Research
|
February 25, 1982
Responses of primate spinothalamic neurons located in the sacral intermediomedial gray (Stilling's nucleus) to proprioceptive input from the tail
R J Milne, R D Foreman, W D Willis
The Journal of Comparative Neurology
|
May 1, 1982
Electrophysiological response properties of spinoreticular neurons in the monkey
L H Haber, B D Moore, W D Willis
Page
of 76