Flexibility Method

The flexibility method is an analytical technique for solving statically indeterminate structures by determining unknown redundant forces from deformation compatibility. It first releases selected redundants to create a statically determinate primary structure, calculates the resulting displacements from applied loads and unit forces, and then enforces compatibility conditions so that the original supports or connections undergo their required movements. Using flexibility coefficients, the method relates forces to displacements through material stiffness and structural geometry. It is useful for analyzing beams, trusses, and frames, predicting reactions and internal forces, and understanding how structural members share loads under different loading conditions.

Flexibility Method - Related Videos

Research

JoVE Journal - Biology

An Efficient and Flexible Cell Aggregation Method for 3D Spheroid Production

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Cited by 67 •

2017

Here, we describe a rapid and flexible protocol for the formation of 3D cell spheroids through cell aggregation. This is easily adapted to multiple cell types and is suitable for use in a variety of applications including cell migration, invasion, or anoikis assays, and for imaging and quantifying cell-matrix interactions.

Research

JoVE Journal - Behavior
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Operant Procedures for Assessing Behavioral Flexibility in Rats

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Cited by 69 •

2015

The ability to assess executive functions such as behavioral flexibility in rats is useful for investigating the neurobiology of cognition in both intact animals and disease models. Here we describe automated tasks for assessing strategy shifting and reversal learning, which are particularly sensitive to disruptions in prefrontal cortical networks.

Implantation of a Flexible Biocompatible Probe in a Glioblastoma Mouse Model

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2025

Source: Lefevre, M. C., et al., Flexible Organic Electronic Devices for Pulsed Electric Field Therapy of Glioblastoma. J. Vis. Exp. (2022)This video demonstrates the implantation of a flexible, biocompatible probe in a glioblastoma mouse model to deliver targeted pulsed electric field therapy for neurotherapeutic applications.

High-throughput, Robust and Highly Time-flexible Method for Surface Sterilization of Arabidopsis Seeds

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Cited by 2 •

2021

A high-throughput protocol for the surface sterilization of Arabidopsisthaliana (Arabidopsis) seeds is provided, optimizing the liquid handling steps with a simple suction device constructed with a vacuum pump. Hundreds of seed samples can be surface-sterilized in one day.

Insertion of Flexible Neural Probes Using Rigid Stiffeners Attached with Biodissolvable Adhesive

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Cited by 99 •

2013

Insertion of flexible neural microelectrode probes is enabled by attaching probes to rigid stiffeners with polyethylene glycol (PEG). A unique assembly process ensures uniform and repeatable attachment. After insertion into tissue, the PEG dissolves and the stiffener is extracted. An in vitro test method evaluates the technique in agarose gel.

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