Bead-free Manipulation

Bead-free manipulation is a technique for positioning, deforming, or measuring biological materials without attaching synthetic microspheres, preserving the native surface and behavior of cells or tissues. In optical implementations, a tightly focused laser generates a gradient force that traps refractive biological structures directly, while controlled movement of the beam applies localized mechanical forces; trapping depends on the object’s optical properties and the surrounding medium. In developmental biology, this approach enables minimally invasive handling of embryos, cells, and subcellular structures to examine morphogenesis, cell mechanics, and tissue organization, supporting studies in which added beads could alter development or obscure biological interactions.

Bead-free Manipulation - Related Videos

Research

JoVE Journal - Developmental Biology

Manipulating Mechanical Forces in the Developing Zebrafish Heart Using Magnetic Beads

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2025

This protocol outlines a method for grafting a magnetic bead into the developing zebrafish heart through microsurgery, enabling the manipulation of mechanical forces in vivo and triggering mechanical stimulus-dependent calcium influx in endocardial cells.

Research

JoVE Journal - Medicine
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Osteopathic Manipulative Treatment as a Useful Adjunctive Tool for Pneumonia

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Cited by 50 •

2014

Pneumonia is one of the top ten leading causes of death in the U.S. Osteopathic manipulative techniques (OMT) may be utilized as an adjunctive therapy in the treatment of pneumonia to enhance biomechanical and immune function; and ultimately, to reduce hospital stay, duration of antibiotics, incidence of respiratory failure, and mortality. In this video-article, we will review randomized controlled studies on the use of OMT in pneumonia patients, as well as demonstrate specific hands-on...

Placing Growth Factor-Coated Beads on Early Stage Chicken Embryos

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Cited by 2 •

2007

A variety of growth factors and proteins interact to induce cells to take on different cell fates during development. Here we demonstrate the use of an in ovo preparation to address possible interactions between different proteins in development by placing beads on E2.5 chick embryos.

Phase Diagram Characterization Using Magnetic Beads as Liquid Carriers

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2015

Here, we present a protocol to investigate multi-component phase diagrams using externally controlled magnetic beads as liquid carriers in a lab-in-tube approach. This approach can aid in applications that seek to gather further information on phase change in complex liquid systems.

Microbubble Fabrication of Concave-porosity PDMS Beads

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Cited by 2 •

2015

Procedures used to generate microstructured concave-porosity polydimethylsiloxane beads are presented. Effects of electrolyte concentration and identity within the aqueous phase are particularly emphasized.

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