Spiral Acquisition

Spiral acquisition is an MRI data-collection technique that samples spatial frequency information along spiral trajectories through k-space, enabling efficient image formation. During each readout, rapidly varying magnetic-field gradients move the signal path from the center of k-space outward, collecting data across two dimensions in a single continuous waveform rather than through separate Cartesian lines. In neuroscience, this approach can support fast functional MRI and other dynamic measurements by shortening image readouts and improving temporal resolution. Its efficiency is valuable for tracking changing brain activity, although magnetic-field inhomogeneity, off-resonance effects, and motion can cause image blurring or distortion that require specialized reconstruction and correction.

Spiral Acquisition - Related Videos

Research

JoVE EoE - Neuronal Culture Techniques

Culturing Murine Spiral Ganglion Neuron Explants on Multielectrode Arrays

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2025

This video demonstrates the process for isolating spiral ganglion explants from the inner ear and co-culturing them with the organ of Corti on a multielectrode array. Spiral ganglia are carefully extracted and sectioned into smaller tissue sections or explants. These explants are cultured on the multielectrode array's active area to promote neuronal process outgrowth.

Label-Free Neutrophil Separation from Tracheal Secretion Using Spiral Microfluidics Channel

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2025

This video demonstrates separating neutrophils from tracheal secretions using a microfluidic device with spiral channels. The device achieves efficient separation based on cell size by utilizing varying thicknesses and trapezoidal-shaped channels. The interplay between forces results in large neutrophils accumulating near the inner wall while erythrocytes and mucin aggregates remain near the outer wall, ensuring effective neutrophil separation.

Research

JoVE Journal - Neuroscience
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Spiral Ganglion Neuron Explant Culture and Electrophysiology on Multi Electrode Arrays

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Cited by 5 •

2016

We present a protocol to culture primary murine spiral ganglion neuron explants on multi electrode arrays to study neuronal response profiles and optimize stimulation parameters. Such studies aim to improve the neuron-electrode interface of cochlear implants to benefit hearing in patients as well as the energy consumption of the device.

Analyzing Neural Activity in Primary Murine Spiral Ganglion Neurons Using Multielectrode Arrays

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2025

This video demonstrates the recording of spontaneous and stimulation-dependent neural activity from primary murine spiral ganglion neuron (SGN) cultures on a multielectrode array (MEA). It involves washing and preparing the MEA, recording spontaneous neural activity, and applying controlled electrical stimuli to identify stimulation-dependent neuronal activity.

Differentiating Immortalized Multipotent Otic Progenitors into Spiral Ganglion Neurons and Evaluating the Differentiation

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2025

The video demonstrates the differentiation of immortalized multipotent otic progenitors (iMOPs) into spiral ganglion neurons (SGNs) and immunofluorescence-based confirmation of the differentiation. The iMOPs are plated onto culture substrate-coated coverslips in a neuronal differentiation medium for differentiation into SGNs. The differentiated cells are labeled with antibodies specific for neuronal differentiation markers and analyzed under a microscope to confirm differentiation.

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