Related Experiment Video
Updated: Apr 25, 2026

Modeling Stroke in Mice: Permanent Coagulation of the Distal Middle Cerebral Artery
Published on: July 31, 2014
Modeling stroke in mice: permanent coagulation of the distal middle cerebral artery
Gemma Llovera1, Stefan Roth1, Nikolaus Plesnila1
1Institute for Stroke and Dementia Research, University Hospital Munich; Munich Cluster for Systems Neurology (SyNergy).
Abstract:
Stroke is the third most common cause of death and a main cause of acquired adult disability in developed countries. Only very limited therapeutical options are available for a small proportion of stroke patients in the acute phase. Current research is intensively searching for novel therapeutic strategies and is increasingly focusing on the sub-acute and chronic phase after stroke because more patients might be eligible for therapeutic interventions in a prolonged time window. These delayed mechanisms include important pathophysiological pathways such as post-stroke inflammation, angiogenesis, neuronal plasticity and regeneration. In order to analyze these mechanisms and to subsequently evaluate novel drug targets, experimental stroke models with clinical relevance, low mortality and high reproducibility are sought after. Moreover, mice are the smallest mammals in which a focal stroke lesion can be induced and for which a broad spectrum of transgenic models are available. Therefore, we describe here the mouse model of transcranial, permanent coagulation of the middle cerebral artery via electrocoagulation distal of the lenticulostriatal arteries, the so-called "coagulation model". The resulting infarct in this model is located mainly in the cortex; the relative infarct volume in relation to brain size corresponds to the majority of human strokes. Moreover, the model fulfills the above-mentioned criteria of reproducibility and low mortality. In this video we demonstrate the surgical methods of stroke induction in the "coagulation model" and report histological and functional analysis tools.
Insights
Researchers developed a reproducible mouse stroke model using middle cerebral artery electrocoagulation. This model aids in studying delayed stroke mechanisms and evaluating new therapeutic targets for improved patient outcomes.
Area of Science:
- Neuroscience
- Translational Medicine
Background:
- Stroke is a leading cause of death and disability, with limited acute treatment options.
- Focus is shifting to sub-acute and chronic stroke phases for broader therapeutic intervention windows.
- Delayed mechanisms like inflammation, angiogenesis, and neuroplasticity are key targets for novel therapies.
Purpose of the Study:
- To present a clinically relevant, reproducible mouse model for stroke research.
- To facilitate the study of post-stroke pathophysiological mechanisms.
- To enable evaluation of potential therapeutic targets in a relevant preclinical setting.
Main Methods:
- Description of a mouse model inducing permanent middle cerebral artery coagulation via electrocoagulation.
- The model creates focal cortical infarcts, mimicking human stroke characteristics.
- Surgical techniques for stroke induction and histological/functional analysis tools are detailed.
Main Results:
- The described "coagulation model" offers high reproducibility and low mortality.
- The induced infarcts are primarily cortical, with volumes comparable to human strokes.
- The model is suitable for investigating delayed stroke mechanisms and testing interventions.
Conclusions:
- The described mouse coagulation model is a valuable tool for stroke research.
- It enables the study of critical post-stroke recovery processes.
- This model supports the development and evaluation of novel stroke therapies.

