| Location: | Federal |
|---|---|
| Posted: | Apr 30, 2026 |
| Due: | Jun 23, 2026 |
| Agency: | TRANSPORTATION, DEPARTMENT OF |
| Type of Government: | Federal |
| Category: |
|
| Solicitation No: | 693JJ926R000020 |
| Publication URL: | To access bid details, please log in. |
APEX Accelerators are an official government contracting resource for small businesses. Find your local APEX Accelerator (opens in new window) for free government expertise related to contract opportunities.
APEX Accelerators are funded in part through a cooperative agreement with the Department of Defense.
The APEX Accelerators program was formerly known as the Procurement Technical Assistance Program (opens in new window) (PTAP).
The National Highway Traffic Safety Administration (NHTSA) is committed to saving lives, preventing injuries, and
reducing traffic-related health care and economic costs. As part of that mission, the Office of Vehicle Safety
Research (OVSR) supports a robust scientific research program to provide the technical foundation for NHTSA’s
vehicle and traffic safety initiatives.
This procurement seeks to establish an Indefinite Delivery, Indefinite Quantity (IDIQ) contract to support NHTSA’s
Experimental and Mathematical Biomechanics Injury Research (EMBIR) program. The IDIQ will enable the issuance
of Task Orders (TOs) that require a broad range of specialized research, analysis, and technical support services
related to human injury mechanisms and prevention in motor vehicle crashes.
The contractor shall provide services across the following four research domains:
Experimental Biomechanics: Conduct physical testing to evaluate human injury tolerance under crashrelevant
loading conditions and identify the mechanisms and thresholds for injury.
1.Anthropomorphic Test Device (ATD) Support: Provide technical expertise to develop and assess ATDs,
ensuring biofidelity, durability, and measurement accuracy.
2.Computational Modeling: Develop and utilize advanced computational models (e.g., finite element models of
the human body and ATDs) to simulate crash scenarios, validate injury mechanisms, and support virtual
testing environments.
3.Crash and Injury Data Analysis: Analyze real-world crash data, ATD testing, and experimental research to
support injury criteria development, identify emerging crash trends, and enhance vehicle safety metrics.
Data science tools such as AI/machine learning may be applied to enhance insights from large-scale datasets.
| Apr 23, 2026 | [Combined Synopsis/Solicitation (Updated)] Experimental and Mathematical Biomechanics Injury Research IDIQ |

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