<div><p>Kinetic signatures are apparent in position (blue traces) and velocity (green traces), and these are conserved across experimental conditions.</p> <p>(A) Contact of D3 whisker with texture P150, measured ~10 mm from the base (adapted from [<a href="http://www.plosbiology.org/article/info:doi/10.1371/journal.pbio.0060220#pbio-0060220-b012" target="_blank">12</a>]). (B) Contact of C3 whisker with texture P280 (upper panel) and with texture P100 (lower panel), both measured 1 mm from the base (adapted from [<a href="http://www.plosbiology.org/article/info:doi/10.1371/journal.pbio.0060220#pbio-0060220-b010" target="_blank">10</a>]).</p></div
The data in this figure exclude small angle deflections, i.e., any point that lay less than sclosest...
<div><p>(A) V<sub>H</sub> and V<sub>V</sub> for two whisks on texture P400 (left), P280 (middle), an...
A major challenge of sensory systems neuroscience is to quantify brain activity underlying perceptua...
<p>Whisker trajectory measured when the whiskers moved through the air with no texture present (uppe...
<p>Ten successive trials are shown (numbers 46–55), each trial composed of the final two free-whisks...
<div><p>(A) Whisker vibration data were collected during “electrical whisking,” induced by stimulati...
<p>Traced high speed imaging (4000 fps) of whisker displacement and deformation during touch. Each l...
<p>(A) A typical field of view. (B) Typical imaging configuration. (C–G) Automated results of tracin...
(A) Boxplot for the whisker length-base diameter ratio normalized by the mean lSO ratio. Ratios were...
<p>The angles of whiskers found in three different rows are displayed as a function of time, during ...
(A) The black line represents the shape of the whisker with its base placed at the origin. The taper...
Whisker movement has been shown to be under active control in certain specialistanimals such as rats...
<p><b>(a)</b> Chronic silicon probe recordings in VPM. <b>(b</b>,<b>c)</b> Two example trials from t...
<p><b>A.</b> Whisking angle of the ipsilateral C1 whisker (red) and contralateral C1 whisker (blue)....
Whisker movement has been shown to be under active control in certain specialist animals such as ra...
The data in this figure exclude small angle deflections, i.e., any point that lay less than sclosest...
<div><p>(A) V<sub>H</sub> and V<sub>V</sub> for two whisks on texture P400 (left), P280 (middle), an...
A major challenge of sensory systems neuroscience is to quantify brain activity underlying perceptua...
<p>Whisker trajectory measured when the whiskers moved through the air with no texture present (uppe...
<p>Ten successive trials are shown (numbers 46–55), each trial composed of the final two free-whisks...
<div><p>(A) Whisker vibration data were collected during “electrical whisking,” induced by stimulati...
<p>Traced high speed imaging (4000 fps) of whisker displacement and deformation during touch. Each l...
<p>(A) A typical field of view. (B) Typical imaging configuration. (C–G) Automated results of tracin...
(A) Boxplot for the whisker length-base diameter ratio normalized by the mean lSO ratio. Ratios were...
<p>The angles of whiskers found in three different rows are displayed as a function of time, during ...
(A) The black line represents the shape of the whisker with its base placed at the origin. The taper...
Whisker movement has been shown to be under active control in certain specialistanimals such as rats...
<p><b>(a)</b> Chronic silicon probe recordings in VPM. <b>(b</b>,<b>c)</b> Two example trials from t...
<p><b>A.</b> Whisking angle of the ipsilateral C1 whisker (red) and contralateral C1 whisker (blue)....
Whisker movement has been shown to be under active control in certain specialist animals such as ra...
The data in this figure exclude small angle deflections, i.e., any point that lay less than sclosest...
<div><p>(A) V<sub>H</sub> and V<sub>V</sub> for two whisks on texture P400 (left), P280 (middle), an...
A major challenge of sensory systems neuroscience is to quantify brain activity underlying perceptua...