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General Information Document Type: Presolicitation Synopsis Number: 75N98026Q00609 Posted Date: June 11, 2026 Original Response Date: June 22, 2026 Current Response Date: June 22, 2026 Set Aside: N/A NAICS Code: 334118 Contracting Office Address National Institutes of Health (NIH), Office of the Director (OD) Office of Logistics and Operations (OLAO) Office of Acquisition and Logistics Management (OALM) Hospital and Laboratory Support Division 6701 Rockledge Drive Bethesda, MD 20817 Description INTRODUCTION THIS IS A PRE-SOLICITATION NON-COMPETITIVE (NOTICE OF INTENT) SYNOPSIS TO AWARD A CONTRACT OR PURCHASE ORDER WITHOUT PROVIDING FOR FULL OR OPEN COMPETITION (INCLUDING BRAND-NAME). The National Institutes of Health (NIH) intends to negotiate and award a contract without providing for full and open competition (Including brand-name) to: National Instruments 11500 N Mopac Expwy Austin, TX 78759-3504 NORTH AMERICAN INDUSTRY CLASSIFICATION SYSTEM (NAICS) CODE The intended procurement is classified under NAICS code 334118 with a Size Standard $1000. REGULATORY AUTHORITY The resultant contract will include all applicable provisions and clauses in effect through the Federal Acquisition Circular (FAC) 2026-01, March 13, 2026. This acquisition is conducted under the procedures as prescribed in FAR subpart 13-Simplified Acquisition Procedures at an amount not exceeding the simplified acquisition threshold ($350,000). STATUTORY AUTHORITY This acquisition is conducted under the authority of the Federal Acquisition Regulation (FAR) Part 13-Simplified Acquisition Procedures, Subpart 13.106-1 (b) (1), Soliciting from a single source and is not expected to exceed the simplified acquisition threshold. Contracts awarded using FAR Part 13-Simplified Acquisition Procedures are exempt from the requirements of FAR Part 6-Competition Requirements. GENERAL INFORMATION Title: Acquisition of PCIe-5764 FlexRIO 16 bit Digitizer Background Information: Electron Paramagnetic Resonance (EPR) Imaging is a specialized low field MRI technique that utilizes an exogenous paramagnetic tracer administered to live subjects, enabling the creation of detailed, non-invasive, and quantitative maps of tissue oxygenation. This method is particularly valuable for physiological studies, as it allows researchers to monitor oxygen levels in both tumors and normal organs in real time. The Molecular Imaging Branch (MIB) at the NCI, Center for Cancer Research has developed a robust system based on EPR imaging, optimized for pre-clinical models, which has expanded the scope of in vivo research. Currently, efforts are underway to develop a prototype EPR imaging system for human applications. A primary challenge is enhancing detection sensitivity to permit the use of lower tracer doses while maintaining high image resolution. The existing system relies on an 8-bit digitizer, achieving necessary sensitivity through signal averaging—a process that is inefficient in terms of time. Advancements in dig…
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