Advanced Positioning Technology

Advanced Positioning Technology refers to systems that determine and control the location, orientation, or movement of objects with high precision, supporting accurate measurement and automation. These systems typically combine sensors, computational algorithms, and feedback control to compare a target position with real-time measurements and correct motion or alignment. In bioengineering, advanced positioning technology enables precise operation of robotic instruments, imaging platforms, microfabrication tools, and tissue-engineering systems. Improved spatial control can increase experimental reproducibility, support minimally invasive procedures, and help researchers manipulate cells, biomaterials, or devices at microscopic scales, making the technology valuable for biomedical research, diagnostics, and therapeutic development.

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Education

JoVE Business - Macroeconomics

The Neoclassical Growth Model: Technological Advancement

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2025

In the neoclassical growth model, once capital per worker stops increasing, the only way to keep growing is through better technology. This means finding smarter ways to use the same resources to produce more. It doesn’t require more machines or more people—just improvements in how things are done. As technology improves, output per worker rises even if capital stays the same. This leads to higher wages and better living standards over time.The production function includes a term for technology.

Research

JoVE Journal - Medicine
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Advancements in Bovine Organoid Technology Using Small and Large Intestinal Monolayer Interfaces

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Cited by 1 •

2024

This study presents a protocol for generating bovine intestinal 2D monolayers from organoids, offering improved access for studying host-pathogen interactions. It includes methods for assessing membrane integrity and functionality, advancing in vitro models that mimic cattle's gastrointestinal physiology. This approach promises significant biomedical and agricultural benefits, including enhanced treatment strategies.

Applying Advanced In Vitro Culturing Technology to Study the Human Gut Microbiota

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Cited by 14 •

2019

Here, we present a protocol for culturing the gut microbiota of the colon in vitro, using a series of bioreactors that simulate the physiological conditions of the gastro intestinal tract.

Positive Regulator Molecules

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2019

To consistently produce healthy cells, the cell cycle—the process that generates daughter cells—must be precisely regulated. Internal regulatory checkpoints ensure that a cell’s size, energy reserves, and DNA quality and completeness are sufficient to advance through the cell cycle. At these checkpoints, positive and negative regulators promote or inhibit a cell’s continuation through the cell cycle. Positive regulators include two protein groups that allow cells to pass through regulatory...

Principles of Site-Specific Recombinase (SSR) Technology

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Cited by 14 •

2008

The advent of site-specific recombinase (SSR) technology and the Cre/lox system has led to numerous advances in molecular biology, and has proven itself as a valuable tool for assessing gene function in transgenic animals. This interview discusses the mechanism of site specific recombination by Cyclization recombinase (Cre) and how the use of this enzyme has led to the development of conditional mutagenesis, which has significant advantages over traditional knock out strategies.

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