Biospecimen Map

A biospecimen map is a structured visual or digital representation of biological samples, their origins, and associated information, helping researchers locate and interpret specimens systematically. It works by linking specimen identifiers with metadata such as tissue or fluid type, anatomical source, collection conditions, processing history, storage location, and experimental status. In biology, biospecimen maps support biobanking, sample tracking, study design, and quality control by showing how materials relate to one another across a collection or research project. They also improve reproducibility and data integration, enabling investigators to select appropriate specimens, identify gaps or biases in sampling, and connect physical samples with molecular, clinical, or spatial analyses.

Biospecimen Map - Related Videos

Research

JoVE Journal - Biology

SpOT the Correct Tissue Every Time in Multi-tissue Blocks

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Cited by 5 •

2015

The purpose of the Specimen Orientation Tag (SpOT) is to function as an orientation tool to aid in individual tissue identification in multi-tissue paraffin blocks. These protocols demonstrate how it is constructed easily from common, low-cost histology materials and serves as a reliable visual marker in paraffin blocks and sections.

Quantification of Filamentous Actin Puncta in Rat Cortical Neurons

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2025

This video demonstrates the procedure for fluorescently staining rat cortical neurons for microscopy. It targets F-actin and dendritic proteins to analyze structural integrity and calculate F-actin density, which is crucial for studying neuronal function and health.

Quantification of Filamentous Actin (F-actin) Puncta in Rat Cortical Neurons

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Cited by 8 •

2016

Filamentous actin (F-actin) plays an important role in spinogenesis, synaptic plasticity, and synaptic stability. Quantification of F-actin puncta is therefore a useful tool to study the integrity of synaptic structures. This protocol describes the procedures of quantifying F-actin puncta labeled with Phalloidin in low-density primary cortical neuronal cultures.

An Acute Retinal Model for Evaluating Blood Retinal Barrier Breach and Potential Drugs for Treatment

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Cited by 3 •

2016

A low-cost, easy-to-use and powerful system is established to evaluate potential treatments that could ameliorate blood retinal barrier breach induced by histamine. Blood vessel leakage, Müller cell activation and the continuity of neuronal processes are utilized to assess the damage response and its reversal with a potential drug, lipoxin A4.

Research

JoVE Journal - Cancer Research
Free Sample

Protocol for HER2 FISH Using a Non-cross-linking, Formalin-free Tissue Fixative to Combine Advantages of Cryo-preservation and Formalin Fixation

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Cited by 3 •

2017

Fluorescence in-situ hybridization (FISH) is often required in combination with histopathology and molecular diagnostics for selection of therapy in personalized medicine. A novel non-cross-linking, formalin-free tissue fixative that allows high quality morphologic, molecular and FISH analyses from the same specimen by addition of a post-fixation step before FISH is presented.

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