The brain is the place where signals from the sense organs (eyes/ ears) are converted into what we think of as sight and sound.
Hair cells in the ear are responsible for converting sound vibrations into electrical signals that can be interpreted by the brain. They play a crucial role in the process of hearing by detecting and transmitting sound information.
The auditory nerve carries sound signals from the inner ear to the brain, allowing us to hear and interpret sounds.
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Ear hair cells play a crucial role in the process of hearing by converting sound waves into electrical signals that the brain can interpret. These specialized cells detect vibrations in the inner ear and transmit signals to the brain, allowing us to perceive and understand sounds.
The cochlea is a spiral-shaped organ in the inner ear that plays a crucial role in the process of hearing. It is responsible for converting sound vibrations into electrical signals that can be interpreted by the brain. The cochlea contains tiny hair cells that are stimulated by these vibrations, sending signals to the brain through the auditory nerve, allowing us to perceive and understand sounds.
The inner ear plays a crucial role in the process of hearing sounds by converting sound vibrations into electrical signals that are sent to the brain for interpretation. This is done through the cochlea, a spiral-shaped structure in the inner ear that contains hair cells responsible for detecting sound waves and transmitting them to the brain via the auditory nerve.
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The cochlea is a spiral-shaped structure in the inner ear that contains hair cells responsible for translating sound vibrations into electrical signals that can be sent to the brain. It plays a crucial role in converting sound waves into neural impulses that the brain can interpret as different pitches and volumes.
Hair cells in the ear are specialized sensory cells that detect sound vibrations. They are located in the cochlea of the inner ear and convert sound waves into electrical signals that are sent to the brain for interpretation. Hair cells play a crucial role in the process of hearing by transducing sound stimuli into neural signals that the brain can perceive as sound.
The hearing receptors of the organ of Corti are called hair cells. These specialized cells are responsible for converting sound vibrations into electrical signals that can be interpreted by the brain. Hair cells play a crucial role in our ability to detect and process sound.
Inner ear hair cells play a crucial role in the process of hearing by converting sound vibrations into electrical signals that can be interpreted by the brain. These hair cells are responsible for detecting different frequencies of sound and transmitting this information to the brain through the auditory nerve. This allows us to perceive and understand the sounds around us.
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