C. elegans is a worm that could be mutated to have different muscle arms, which may generate distinct force patterns when the worm moves. In this paper, an integrated system employing both a novel PDMS device and a visual feedback from the device is reported. The silicone elastomer-based PDMS device consists of arrays of pillars, which forms open channels for the worm to move in and bend the pillars in contact. Enabled by a single vision sensor (CCD/CMOS camera), the computer vision system is able to transform the forces generated by C. elegans, through detecting the deflection of the pillars with sub-pixel accuracy. The experimental results demonstrate that the current vision-based force sensing system is capable of performing robust ...
For decades, Caenorhabditis elegans roundworms have been used to study the sense of touch, and this ...
For decades, Caenorhabditis elegans roundworms have been used to study the sense of touch, and this ...
One of the fundamental problems in neuroscience is how behavior is generated from sensory input and ...
Abstract—this paper reports an automated tracking and force measurement system for C. elegans in mo...
Studying animal mechanics is crucial in order to understand how signals in the neuromuscular system ...
This paper presents integration of optogenetic illumination of C. elegans neural circuits and muscul...
The understanding of force interplays between an organism and its environment is imperative in biolo...
Measuring forces applied by multi-cellular organisms is valuable in investigating biomechanics of th...
Optogenetics has been recently applied to manipulate the neural circuits of Caenorhabditis elegans ...
The behavior of the nematode C. elegans has proven increasingly useful for the genetic dissection of...
Abstract—The nematode Caenorhabditis elegans is an im-portant model organism for many areas of biolo...
A major challenge of neuroscience is to understand the circuit and gene bases of behavior. C. elegan...
This paper shows the three-dimensional physical model created to simulate the locomotion of the Caen...
This work presents a novel method to assess the condition of Caenorhabditis elegans (C. elegans) thr...
In the study of the molecular origins of behaviour, the nematode Caenorhabditis elegans has emerged ...
For decades, Caenorhabditis elegans roundworms have been used to study the sense of touch, and this ...
For decades, Caenorhabditis elegans roundworms have been used to study the sense of touch, and this ...
One of the fundamental problems in neuroscience is how behavior is generated from sensory input and ...
Abstract—this paper reports an automated tracking and force measurement system for C. elegans in mo...
Studying animal mechanics is crucial in order to understand how signals in the neuromuscular system ...
This paper presents integration of optogenetic illumination of C. elegans neural circuits and muscul...
The understanding of force interplays between an organism and its environment is imperative in biolo...
Measuring forces applied by multi-cellular organisms is valuable in investigating biomechanics of th...
Optogenetics has been recently applied to manipulate the neural circuits of Caenorhabditis elegans ...
The behavior of the nematode C. elegans has proven increasingly useful for the genetic dissection of...
Abstract—The nematode Caenorhabditis elegans is an im-portant model organism for many areas of biolo...
A major challenge of neuroscience is to understand the circuit and gene bases of behavior. C. elegan...
This paper shows the three-dimensional physical model created to simulate the locomotion of the Caen...
This work presents a novel method to assess the condition of Caenorhabditis elegans (C. elegans) thr...
In the study of the molecular origins of behaviour, the nematode Caenorhabditis elegans has emerged ...
For decades, Caenorhabditis elegans roundworms have been used to study the sense of touch, and this ...
For decades, Caenorhabditis elegans roundworms have been used to study the sense of touch, and this ...
One of the fundamental problems in neuroscience is how behavior is generated from sensory input and ...