<div><p>Femtosecond laser nanosurgery has been widely accepted as an axonal injury model, enabling nerve regeneration studies in the small model organism, <i>Caenorhabditis elegans</i>. To overcome the time limitations of manual worm handling techniques, automation and new immobilization technologies must be adopted to improve throughput in these studies. While new microfluidic immobilization techniques have been developed that promise to reduce the time required for axotomies, there is a need for automated procedures to minimize the required amount of human intervention and accelerate the axotomy processes crucial for high-throughput. Here, we report a fully automated microfluidic platform for performing laser axotomies of fluorescently ta...
Single axon transection by laser surgery has made Caenorhabditis elegans a new model for axon regene...
The complexity of tissue is shaped by profound molecular diversity at a single cell level. Isolating...
<p>a) Images from a continuously immobilized <i>C. elegans</i>, showing an ALM neuron severed 20 µm ...
Understanding the molecular basis of nerve regeneration can potentiate the development of novel and ...
textSurgery of axons in C. elegans using ultrafast laser pulses, and observing their subsequent regr...
Femtosecond laser nanosurgery has been widely accepted as an axonal injury model, enabling nerve reg...
textThe nexus of engineering and molecular biology has given birth to high-throughput technologies t...
Several sophisticated microfluidic devices have recently been proposed for femtosecond laser axotomy...
With its well-characterized genome, simple anatomy, and vast array of uses in molecular biology, the...
In recent years, the advantages of using small invertebrate animals as model systems for human disea...
Neurons communicate with other cells via axons and dendrites, slender membrane extensions that conta...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
Laser axotomy followed by time-lapse microscopy is a sensitive assay for axon regeneration phenotype...
Understanding the basic mechanisms of neural regeneration after injury is a pre-requisite for develo...
High-resolution in vivo time-lapse assays require repeated immobilization and imaging of whole anima...
Single axon transection by laser surgery has made Caenorhabditis elegans a new model for axon regene...
The complexity of tissue is shaped by profound molecular diversity at a single cell level. Isolating...
<p>a) Images from a continuously immobilized <i>C. elegans</i>, showing an ALM neuron severed 20 µm ...
Understanding the molecular basis of nerve regeneration can potentiate the development of novel and ...
textSurgery of axons in C. elegans using ultrafast laser pulses, and observing their subsequent regr...
Femtosecond laser nanosurgery has been widely accepted as an axonal injury model, enabling nerve reg...
textThe nexus of engineering and molecular biology has given birth to high-throughput technologies t...
Several sophisticated microfluidic devices have recently been proposed for femtosecond laser axotomy...
With its well-characterized genome, simple anatomy, and vast array of uses in molecular biology, the...
In recent years, the advantages of using small invertebrate animals as model systems for human disea...
Neurons communicate with other cells via axons and dendrites, slender membrane extensions that conta...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Electrical Engineering and Comp...
Laser axotomy followed by time-lapse microscopy is a sensitive assay for axon regeneration phenotype...
Understanding the basic mechanisms of neural regeneration after injury is a pre-requisite for develo...
High-resolution in vivo time-lapse assays require repeated immobilization and imaging of whole anima...
Single axon transection by laser surgery has made Caenorhabditis elegans a new model for axon regene...
The complexity of tissue is shaped by profound molecular diversity at a single cell level. Isolating...
<p>a) Images from a continuously immobilized <i>C. elegans</i>, showing an ALM neuron severed 20 µm ...