Lisa Impactor

The LISA Impactor is a precision device used to generate reproducible mechanical injuries in experimental medicine, particularly for modeling traumatic brain injury and studying its biological consequences. It delivers a calibrated impact to the skull or exposed brain surface while controlling variables such as impact velocity, depth, and duration, allowing researchers to produce consistent injury severities. This standardization supports analysis of tissue damage, inflammation, neurological dysfunction, and recovery over time. LISA Impactor models also provide a controlled platform for investigating injury mechanisms, evaluating biomarkers, and testing potential neuroprotective treatments before clinical studies.

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Generating a Mouse Model of Traumatic Brain Injury Using an Impactor Device

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2025

This video demonstrates the procedure for inducing traumatic brain injury (TBI) in a mouse model. An anesthetized mouse with an exposed skull is taken to create an opening in the skull, and then a controlled cortical injury is induced using an impact device. The injury damages the brain tissue, causing impaired cognitive function and motor coordination.

Generating a Traumatic Brain Injury Mouse Model Using an Impactor Probe

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2025

This video demonstrates the procedure for inducing an open-skull traumatic brain injury in a mouse by making a midline skull incision, drilling through the skull and removing the bone flap to expose the brain cortex, and applying high pressure to induce trauma. The wound is then sutured to prepare the mouse model for subsequent experiments.

Investigating the 'Uncatchable Smile' in Leonardo da Vinci's La Bella Principessa: A Comparison with the Mona Lisa and Pollaiuolo's Portrait of a Girl

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Cited by 3 •

2016

This paper discusses the methodology used to reveal the 'Uncatchable Smile' illusion in Leonardo da Vinci's La Bella Principessa portrait. A combination of three methods was used (inter-observation, structured interviews, and psychophysical experiments), which led to an investigation that shaped itself without prior beliefs, thus reducing potential researcher bias.

A Contusive Model of Unilateral Cervical Spinal Cord Injury Using the Infinite Horizon Impactor

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Cited by 46 •

2012

A reliable and repeatable way to produce a cervical unilateral spinal cord injury using the Infinite Horizon impactor is described. The method takes advantage of a custom designed frame and clamp to stabilize the spine. The standardized procedure and biomechanical injury parameters result in sufficient and sustained injuries.

Automated Impactor for Contusive Spinal Cord Injury Model in Mice

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Cited by 6 •

2024

Presented here is a novel automated spinal cord injury contusion device for mice, which can accurately produce spinal cord injury contusion models with varying degrees.

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