Mammalian whisker follicle contains multiple sensory receptors strategically organized to capture tactile sensory stimuli of different frequencies via the vibrissal system. There have been a number of attempts to develop robotic whiskers to perform texture classification tasks in the recent past. Inspired by the features of biological whisker follicle, in this paper we design and use a novel soft whisker follicle comprising of two different frequency-dependent data capturing modules to derive deeper insights into the biological basis of tactile perception in the mammalian whisker follicle. In our design, the innervations at the Outer Conical Body (OCB) of a biological follicle are realized by a piezoelectric transducer for capturing high fr...
Comparison of the functional organization of sensory modalities can reveal the specialized mechanism...
We introduce a new multi-element sensory array built from tactile whiskers and modelled on the mamma...
In the progression of events wherein the rodent whisker sensory system constructs a percept of the w...
Mammals like rats, who live in dark burrows, heav-ily depend on tactile perception obtained through ...
We describe a novel, biomimetic tactile sensing system modeled on the facial whiskers (vibrissae) of...
Active vibrissal touch can be used to replace or to supplement sensory systems such as computer visi...
Kim DE, Möller R. Biomimetic whiskers for shape recognition. Robotics and Autonomous Systems. 2007;5...
The Whiskerbot project is a collaborative project between robotics engineers, computational neurosci...
Rodents excel in making texture judgments by sweeping their whiskers across a surface. Here, we aime...
Actuated artificial whiskers modeled on rat macrovibrissae can provide effective tactile sensor syst...
The unique vibrissal tactile perception possessed by rats allows them to explore the surrounding env...
The cerebral cortex is thought to generate sensory experience and facilitate broadly integrative pro...
Our sense of touch provides information about nearby objects that can affect us in an immediate way....
The rat whisker (vibrissal) system provides rats with an exquisitely acute tactile sense that has he...
Comparison of the functional organization of sensory modalities can reveal the specialized mechanism...
We introduce a new multi-element sensory array built from tactile whiskers and modelled on the mamma...
In the progression of events wherein the rodent whisker sensory system constructs a percept of the w...
Mammals like rats, who live in dark burrows, heav-ily depend on tactile perception obtained through ...
We describe a novel, biomimetic tactile sensing system modeled on the facial whiskers (vibrissae) of...
Active vibrissal touch can be used to replace or to supplement sensory systems such as computer visi...
Kim DE, Möller R. Biomimetic whiskers for shape recognition. Robotics and Autonomous Systems. 2007;5...
The Whiskerbot project is a collaborative project between robotics engineers, computational neurosci...
Rodents excel in making texture judgments by sweeping their whiskers across a surface. Here, we aime...
Actuated artificial whiskers modeled on rat macrovibrissae can provide effective tactile sensor syst...
The unique vibrissal tactile perception possessed by rats allows them to explore the surrounding env...
The cerebral cortex is thought to generate sensory experience and facilitate broadly integrative pro...
Our sense of touch provides information about nearby objects that can affect us in an immediate way....
The rat whisker (vibrissal) system provides rats with an exquisitely acute tactile sense that has he...
Comparison of the functional organization of sensory modalities can reveal the specialized mechanism...
We introduce a new multi-element sensory array built from tactile whiskers and modelled on the mamma...
In the progression of events wherein the rodent whisker sensory system constructs a percept of the w...