Many people having hearing problems normally use hearing aids or undergo surgery for implants to assist in voice reception. The reality is that many patients experience a lot of difficulties in hearing without the aids. This could be probably due to incorrect setting by the clinical technicians. Therefore, speech therapists need to advance in the hearing test that can predict quickly and accurately how well people with hearing aids and implants to enable them hear in the actual world of excess noise. This type of advanced test is critical and important for children for timely intervention before the hearing problem impedes their learning process.
From research, it has been established that if children with hearing problems are not treated or the situation is not intervened on time, to administer special education for such a child would be expensive compared to when the intervention is put in place on time. These costs have been estimated at over $500, 000 on lifetime basis per child. For the adults’ category, it has been documented that loss in hearing begin at age of about 50 years which can lead to emotional stresses as well as job loss (Mallik, Chowdhury, & Chttopadhyay, 2019) . Also loss of hearing ability can reduces one`s life expectancy.
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This project therefore aims to introduce early intervention procedures especially for the children. This Realistic Speech Perception Device, (RSPD) will be introduced to the hospital NTE Department. This system will be realized through computerization (Henry, Frederick, Sell, Griest, & Abrams, 2015). This will enables the clinical technicians to accurately analyze the results and help the child recognize sounds early enough. This will cost the hospital about $ 10,000 to install the support system as well as the devices. This will purchase 1000 devices for the entire Department (capital equipment costs). This cost is proposed to be covered by the government`s Medical Improvement Grants (MIG). There is need for this project as it will assist in early intervention on hearing problems.
REFERENCES
Henry, J., Frederick, M., Sell, S., Griest, S., & Abrams, H. (2015). Validation of a anovel combination hearing aid and tinnitus therapy device. Ear and Hearing, 36 (1), 42-52.
Mallik, S., Chowdhury, D., & Chttopadhyay, M. (2019). Development and performance analysis of a low-cost MEMS microphone-based hearing aid with three different audio amplifiers. Innovations in System and Software Engineering, 15 (1), 17-25.