Earlier Detection of Stroke and Stimulating a Nerve Using EEG in Human Brain

Authors

  • B. Bhavadharani UG Student, Department of Biomedical Engineering, Sri Venkateshwaraa College of Engineering and Technology, Puducherry, India
  • R. Arulmozhi UG Student, Department of Biomedical Engineering, Sri Venkateshwaraa College of Engineering and Technology, Puducherry, India
  • K. Divyapriya UG Student, Department of Biomedical Engineering, Sri Venkateshwaraa College of Engineering and Technology, Puducherry, India
  • M. Sowmiya Assistant Professor, Department of Biomedical Engineering, Sri Venkateshwaraa College of Engineering and Technology, Puducherry, India

Keywords:

EEG, Stroke, Stimulator, Brain nerve

Abstract

According to the World Health Organization, stroke is the second leading cause of disability. In 2022, 1 in 6 deaths from cardiovascular disease will be due to stroke. In India, 6.5 million stroke cases have been identified, with half of the strokes occur-ring between the ages of 46 and 65, and one-third occurring after the age of 65. The main aim of our project is to identify the brain stroke by using non-invasive methods and stimulating the nerves with current stimulation with a voltage range of 90 to 100 volts and a frequency of 3 Hz to 5 Hz. This paper mainly focused on the EEG level generated and when it reaches above threshold level stimulation is given when a brain wave signal is an abnormal condition to generate a small electrical signal for brain nerve stimulation. The main result of our paper is that normal or abnormal conditions of stroke exist. When it reaches an abnormal condition to generate the electric stimulation and prevent stroke.

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Published

29-05-2023

Issue

Section

Articles

How to Cite

[1]
B. Bhavadharani, R. Arulmozhi, K. Divyapriya, and M. Sowmiya, “Earlier Detection of Stroke and Stimulating a Nerve Using EEG in Human Brain”, IJRESM, vol. 6, no. 5, pp. 128–131, May 2023, Accessed: Dec. 21, 2024. [Online]. Available: https://journal.ijresm.com/index.php/ijresm/article/view/2711