Ibm Qiskit

IBM Qiskit is an open-source software development kit for building, simulating, and executing quantum computing programs, making quantum technologies accessible to engineers and researchers. It represents algorithms as quantum circuits composed of gates and measurements, then transpiles those circuits into instructions optimized for a selected quantum processor or simulator. Qiskit supports work across quantum algorithm design, circuit optimization, hardware characterization, and hybrid quantum-classical workflows. In engineering, these capabilities help users test quantum applications, study hardware constraints such as noise and connectivity, and evaluate how emerging quantum systems may address computational problems beyond the practical reach of conventional methods.

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Research

JoVE Journal - Medicine

Vascular Occlusion Training for Inclusion Body Myositis: A Novel Therapeutic Approach

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Cited by 38 •

2010

The present article presents the details pertaining to the application of resistance training associated to vascular occlusion in IBM patients.

Research

JoVE Journal - Bioengineering
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Rapid Subtractive Patterning of Live Cell Layers with a Microfluidic Probe

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Cited by 2 •

2016

We present a protocol to perform subtractive patterning of live cell monolayers on a surface. This is achieved by local and selective lysis of adherent cells using a microfluidic probe (MFP). The cell lysate retrieved from local regions can be used for downstream analysis, enabling molecular profiling studies.

Identification of a Murine Erythroblast Subpopulation Enriched in Enucleating Events by Multi-spectral Imaging Flow Cytometry

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Cited by 6 •

2014

The present protocol describes a novel method of identifying a population of enucleating orthochromatic erythroblasts by multi-spectral imaging flow cytometry, providing a visualization of the erythroblast enucleation process.

Reusable Hepatic Imaging Tool: A Reusable 3D-Printed Tool for Hepatic Intravital Microscopy

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2026

This protocol introduces a cutting-edge, Reusable Hepatic Imaging Tool (RHIT) for intravital microscopy (IVM) of live mice, which enhances tissue stability for rapid and acute experiments. The RHIT's 3D-printed design offers cost-effective production, scalability, and versatility, enabling prolonged observation of metabolic processes in mice of various sizes.

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