According to the CDC, four million workers go to work each day in damaging noise, while ten million in the U.S. suffer from noise-related hearing loss. Hearing loss accounted for at least 14% of occupational illness in 2007, and ap- proximately $242M is spent annually on worker's compensation for hearing loss disability. To address this problem, employers are required by law to implement hearing conservation programs for employees at risk. Potential risk is determined by measuring cumulative noise exposure using personal noise dosimeters (PNDs). These instruments are typically worn on-the-shoulder as a surrogate position for center-of-head measurements. The in-ear PND (iPNDTM) is a relatively new dosimeter that has signi?cant advantages over traditional systems because iPNDsTM measure noise in the ear canal using a microphone located interior to any hearing protection. Traditionally, the protected exposure level is estimated by subtracting the noise reduction rating (NRR) of the hearing protection device (HPD) from the on-the-shoulder exposure level which can be an inaccurate estimate. This problem is well documented and contributes to noise induced hearing loss (NIHL) because the employee may be subjected to higher exposure levels than estimated. The iPNDTM avoids this shortcoming by directly measuring protected exposure when the user is wearing an HPD. Although these dosimeters provide superior performance and function, only one is commercially available today. The lack of popularity of the iPND system is primarily due to wires that connect the earplugs to a dosimetry processor, creating a nuisance and potential snag hazard. A wireless iPNDTM (wiPNDTM) system that would solve the aforementioned problems is proposed. A relatively new wireless technology can be used to transmit noise level data from a wiPNDTM earplug to a remote processor. Novel new features?such as wireless LED alerts, in-ear versus out-of-ear compensation, use monitoring, health monitoring, automated data download and cloud processing?are provided with this system that will help prevent NIHL and improve acceptance of PNDs. The wiPNDTM earplug is like a Fitbit version of a personal noise dosimeter.

Public Health Relevance

The aim of the proposed research project is to develop a wireless in-ear noise exposure monitoring system that is used to prevent noise induced hearing loss in the workplace. The system employs a hearing protection earplug with microphone and novel electronics to measure in-ear noise levels and actual protected exposure as opposed to estimating the exposure using potentially non-representative laboratory measurements and arbitrary derating schemes. This comfortable, inexpensive and simple to use system uses RFID technology for fast and convenient data transfer and provides other innovative features to signi?cantly impact hearing loss prevention in the workplace.

Agency
National Institute of Health (NIH)
Institute
National Institute for Occupational Safety and Health (NIOSH)
Type
Small Business Innovation Research Grants (SBIR) - Phase II (R44)
Project #
5R44OH011145-03
Application #
9817568
Study Section
Special Emphasis Panel (ZRG1)
Project Start
2018-09-01
Project End
2020-08-31
Budget Start
2019-09-01
Budget End
2020-08-31
Support Year
3
Fiscal Year
2019
Total Cost
Indirect Cost
Name
Red Tail Hawk Corporation
Department
Type
DUNS #
021593632
City
Philadelphia
State
PA
Country
United States
Zip Code
19107