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Solicitations › Department of Health and Human Services › National Institutes of Health

Ultra Highspeed Megapixel CMOS Imaging Camera

Closed — responses were due 23 Sep 2026 · No Set aside used · National Institutes of Health (NIH), HHS · Bethesda, MD · NAICS 334516 · Solicitation NINDS09426

Solicitation details

Solicitation numberNINDS09426
Notice ID4a175001a8074f02a6a857d7cfe8d695
AgencyDepartment of Health and Human Services (HHS)
Sub-agencyNational Institutes of Health (NIH)
Contracting officeNATIONAL INSTITUTES OF HEALTH
NAICS code334516 — Analytical Laboratory Instrument Manufacturing
Product / service code (PSC)6640
Set-asideNo Set aside used
Notice typeSpecial Notice
Posted17 September 2026
Response deadline23 September 2026 (closed)
Place of performanceBethesda, MD, USA

Description

This acquisition is to purchase of a ultra high speed megapixel CMOS imaging camera (PHANTOM VEO 1310L, MONO 72GB MEMORY) from Vision Research Inc. The ultra high speed imaging camera from Vision Research will be used in experiments that will be performed by the Cellular Neurophysiology Section at the National Institute of Neurological Disorders and Stroke (CNS/NINDS). The experiments being performed will directly test the effects of alterations in neural circuitry in various animal models of Parkinson s Disease. Specifically, we are interested in understanding how synaptic and intrinsic conductances expressed on these neurons differ among subpopulations dopamine neurons. We are also interested in understanding how the synaptic and circuit connections onto these cells control their activity and ultimately how they contribute to dopamine dependent behaviors and dysfunction. The hope that this information may provide insight to why SNc dopamine neurons are particularly vulnerable in Parkinson s disease. Our goal is to identify novel physiological and genetic markers in single SNc dopamine neurons which may be useful in defining subpopulations of these neurons. To study the circuits that control midbrain dopaminergic neurons, experimenters in the Cellular Neurophysiology Section prepare tissue slices that will be mounted on an electrophysiology setup. Although electrophysiological recordings provide high temporal resolution and require highly specialized knowledge in order to have consistent success. To increase the successful acquisition of this information, we will use an imaging system that will allow us to perform imaging using fluorescent voltage indicators in which the fluorescence intensity correlate to the neuronal membrane voltage. The major component of this system is a high speed camera that is highly sensitive to moderately low light levels and can also image at frame rates that reach at 10 kilohertz or above. This requirement is necessary because action potentials occur at 1 ms. Using the voltage imaging approach, we will be able to image large populations of neurons, tens to hundreds, simultaneously which is not possible using standard electrophysiology approaches such as patch clamp. Lastly, the camera should have the lowest pixel noise possible so that signal to noise ratio can be maximized for use voltage-indicators that have only small changes fluorescence changes in their signal.

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Market context: HHS and NAICS 334516

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