Planarian Seizure Model

The planarian seizure model is an invertebrate neuroscience system that uses freshwater flatworms to study seizure-like neural activity and behavior in a simple, experimentally accessible nervous system. Seizure-like states are typically induced by exposing animals to convulsant compounds, which perturb signaling balance in neural circuits and produce measurable changes such as spasms, uncontrolled contractions, or abnormal locomotion. Researchers quantify these behaviors to evaluate seizure mechanisms, compare neural responses, and test candidate anticonvulsant treatments. Because planarians combine a centralized nervous system with straightforward handling and behavioral observation, the model supports early-stage drug screening and investigation of conserved principles of neuronal excitability while complementing vertebrate studies.

Planarian Seizure Model - Related Videos

Research

JoVE Journal - Neuroscience

Planarian as an Animal Model for Experimental Acute Seizure

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2025

Seizures negatively impact various functions and life quality. Planaria worms were exposed to varying concentrations of chemoconvulsants to evaluate their seizure phenotypes and disruptive motility. This study proposes using planaria worms as a model for acute seizures in humans and holds significance in drug development for epilepsy.

Inducing an Acute Electroconvulsive Seizure in a Rat Model

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2025

Source: Jang, S., et al, Electroconvulsive Seizures in Rats and Fractionation of Their Hippocampi to Examine Seizure-induced Changes in Postsynaptic Density Proteins. J. Vis. Exp. (2017)This video demonstrates the induction of an acute electroconvulsive seizure (ECS) in a rat model to study seizure-induced neuroplasticity. Researchers apply electrical stimulation via ear-clip electrodes, triggering neuronal hyperexcitability and clonus. This model helps investigate synaptic plasticity, seizure...

Handling-Induced Seizures in a Mouse Model

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2025

This video demonstrates the induction of handling-induced seizures in a mouse infected with Theiler's Murine Encephalomyelitis Virus (TMEV). The infected mouse, which has hyperexcitable neurons, is exposed to external physical stimuli. This exposure causes stress, leading to abnormal electrical activity in the neurons, which results in seizures.

Establishing a Pentylenetetrazole-Induced Epileptic Seizure Model in Mice

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2025

This video demonstrates the process of inducing epilepsy in mice using pentylenetetrazole (PTZ) injections, a GABA-A receptor antagonist. Repeated intraperitoneal administration of PTZ progressively lowers the seizure threshold by inhibiting chloride ion influx, disrupting inhibitory neurotransmission, and leading to hyperexcitability in neurons that trigger seizures. This process results in kindling and the development of spontaneous seizures, mimicking chronic epilepsy.

Surgical Ablation Assay for Studying Eye Regeneration in Planarians

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2017

This protocol shows how to consistently excise planarian eyes (optic cups) without disturbing surrounding tissues. Using an insulin needle and syringe, either one or both eyes can be ablated to facilitate investigations into the mechanisms regulating eye regeneration, the evolution of visual regeneration, and the neural basis of light-induced behavior.

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