Biological Target Volume

Biological target volume is a radiotherapy planning concept that identifies tumor regions according to their biological activity, such as proliferation, metabolism, hypoxia, or radiosensitivity, rather than anatomy alone. Functional imaging, molecular markers, and radiobiological models can reveal intratumoral heterogeneity and define subvolumes that may respond differently to treatment. In cancer research, this information complements gross tumor volume, clinical target volume, and planning target volume to support biologically informed treatment design. Biological target volume assessment may enable dose painting, improve tumor control by focusing treatment on resistant regions, and reduce unnecessary exposure of surrounding healthy tissue.

Biological Target Volume - Related Videos

Research

JoVE Journal - Biology
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Volume Segmentation and Analysis of Biological Materials Using SuRVoS (Super-region Volume Segmentation) Workbench

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Cited by 10 •

2017

Segmentation of three-dimensional data from many imaging techniques is a major bottleneck in analysis of complex biological systems. Here, we describe the use of SuRVoS Workbench to semi-automatically segment volumetric data at various length-scales using example datasets from cryo-electron tomography, cryo soft X-ray tomography, and phase contrast X-ray tomography techniques.

Research

JoVE Journal - Biology
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ACT-PRESTO: Biological Tissue Clearing and Immunolabeling Methods for Volume Imaging

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Cited by 7 •

2016

ACT-PRESTO (active clarity technique–pressure related efficient and stable transfer of macromolecules into organs) enables rapid, efficient, but inexpensive tissue clearing and rapid antibody penetration into cleared tissues by passive diffusion or pressure-assisted delivery. Using this method, a wide range of tissues can be cleared, immunolabeled by multiple antibodies, and volume-imaged.

A Microfluidic Platform for Precision Small-volume Sample Processing and Its Use to Size Separate Biological Particles with an Acoustic Microdevice

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Cited by 9 •

2015

This protocol describes a system architecture for performing automated small volume (0.15–1.5 ml) particle separations using a microfluidic device, and discusses methods to optimize acoustofluidic device performance and operation.

Education

JoVE Science Education - Engineering

Synthetic Biology

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2023

This video presents synthetic biology and its role in bioengineering. Synthetic biology refers to the methods used to genetically modify organisms in order to make them capable of producing large quantities of a product. This product could be a protein that the cell already makes or a new protein that has been encoded in a newly-inserted DNA sequence. Here, we discuss how an organism's genetic material is modified using transformation or transfection. Then, the process is shown in the...

Pharmacogenetic Phenotypes: Alterations in Pharmacokinetics, Drug Targets and Biologic Milieu

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2026

Genetic variations significantly influence drug response through pharmacokinetics, receptor interactions, and biologic milieu modifications. Pharmacokinetic alterations impact drug metabolism and clearance, affecting efficacy and toxicity. Variants in drug-metabolizing enzymes, such as CYP2C9 and CYP2C19, alter drug activation and elimination. For example, CYP2C9 loss-of-function variants require lower warfarin doses to prevent excessive bleeding, while CYP2C19 variants reduce clopidogrel...

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