Postmortem Histological Validation

Postmortem histological validation is the examination of preserved tissue after death to confirm that an experimental intervention, anatomical target, or recorded signal corresponds to the intended neural structure. It typically involves fixation, sectioning, staining or labeling, and microscopic analysis, allowing researchers to visualize cytoarchitecture, cellular markers, lesions, or device placements and compare them with experimental records. In neuroscience, this validation provides anatomical evidence that strengthens interpretation of behavioral, physiological, and circuit-level findings, helps identify misplaced or incomplete interventions, and improves the reproducibility and reliability of studies involving animal models, neural recording, stimulation, or targeted manipulation.

Postmortem Histological Validation - Related Videos

Research

JoVE Journal - Neuroscience

Derivation of Leptomeninges Explant Cultures from Postmortem Human Brain Donors

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Cited by 5 •

2017

The leptomeninges explant culture protocol from human postmortem brain is a technically robust and simple way to derive fibronectin-positive meningeal fibroblasts within 6-8 weeks and cryopreserve approximately 20-30 million cells.

High-resolution Structural Magnetic Resonance Imaging of the Human Subcortex In Vivo and Postmortem

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Cited by 5 •

2015

Here we present a protocol to determine the minimum number images that needed to be registered and averaged to resolve subcortical structures and test whether the individual layers of the LGN could be resolved in the absence of physiological noise.

Symmetric Bihemispheric Sectioning of the Human Postmortem Brain

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2025

The video demonstrates a step-by-step procedure for symmetrically dissecting a fixed postmortem human brain, preparing smaller tissue blocks for further analysis.

Neuronal Nuclei Isolation from Human Postmortem Brain Tissue

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Cited by 136 •

2008

The cellular heterogeneity of brain tissue poses a significant limitation for the study of epigenetic markings in chromatin because most assays lack single cell resolution. Neurons typically are intermingled with glia and other non-neuronal cells. We provide a protocol to extract and collect neuronal nuclei from human brain.

Research

JoVE Journal - Biology
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Obtaining High Quality RNA from Single Cell Populations in Human Postmortem Brain Tissue

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Cited by 39 •

2009

We describe a process using laser-capture microdissection to isolate and extract RNA from a homogeneous cell population, pyramidal neurons, in layer III of the superior temporal gyrus in postmortem human brains. We subsequently linearly amplify (T7-based) mRNA, and hybridize the sample to the Affymetrix human X3P microarray.

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