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Evaluating Improved Knee-Save device in Deep Squatting Tasks

Key dates

Posted
Jul 27, 2026
Response deadline
Aug 10, 2026, 4:00 PM UTC
Archive date
Archive type
autocustom

Classification

Notice type
Solicitation
Base type
Solicitation
Set-aside
No Set aside used
Set-aside code
NONE
PSC
R499

NAICS

Issuing office

Department
HEALTH AND HUMAN SERVICES, DEPARTMENT OF
Sub-tier
CENTERS FOR DISEASE CONTROL AND PREVENTION
Office
CDC OFFICE OF ACQUISITION SERVICES
Office code
075.7523.75D301
Organization type
OFFICE
Office address
ATLANTA, GA, 30333, USA

Place of performance

Street
Street 2
City
State
Zip
Country
UNITED STATES

Contacts

Description

Osteoarthritis (OA) is a chronic disease that affects 32.5 million people in the US. The prevalence of knee OA among adults over 60 years is approximately 10% (men) and 13% (women). Epidemiological studies showed that the prevalence of knee OA among workers is associated with their occupational activities. In many occupational activities, such as floor installation, electrical repairs and installations, roofing, retail stocking, gardening, and construction repairs, workers need to perform high knee-flexion tasks. Occupations involving high knee flexion tasks for at least 30 minutes per day resulted in increases in knee OA occurrence from 122% to 240 %, compared to average workers. The prevalence of OA will continue to increase with the aging workforce and the increasing life expectancy. Knee savers or knee supporters are devices that are attached to the users’ legs to make users feel more comfortable during high knee flexion tasks. Knee savers have been used to reduce knee joint loading in some sports and occupational activities, such as roofing; however, the mechanism of how or if knee savers can reduce joint loading during deep squatting has not been analyzed on a biomechanical basis and their designs may be improved. Currently, commercially available knee savers of one size/type are intended to be used for individuals with different ranges of motion (ROM) in the lower extremities and different body sizes. NIOSH researchers are working on a NORA-funded project (Biomechanical Evaluation of Knee Savers for Reducing Joint Load during Squatting) to improve the knee saver design to reduce the knee joint loading, thereby reducing workers’ knee OA risk. NIOSH researchers will develop a biomechanical model to analyze the musculoskeletal loading in the knee joint and in the spine region during high knee flexion tasks such as deep squatting, validating the model using human subject testing data, and applying the biomechanical model to improve the knee saver design. The human subject testing data will be obtained from the proposed contract. SECTION 2 – PURPOSE/OBJECTIVE The objective of this service contract is to obtain the human biomechanical data required to develop biomechanical models of human deep squatting tasks with and without a knee-saver device. The experimental data shall be generated by the contractor through conducting a series of tests of different knee-saver devices in deep squatting tasks.

Attachments (1)

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Metadata

Notice ID
73c7bb200ddc419ba7b83eac3381ca0c
Full path
HEALTH AND HUMAN SERVICES, DEPARTMENT OF.CENTERS FOR DISEASE CONTROL AND PREVENTION.CDC OFFICE OF ACQUISITION SERVICES
Office code
075.7523.75D301
Ingested
Jul 28, 2026
Updated
Jul 28, 2026