B. Incorrect. In fact, it’s the opposite. The nature of the micromotor's operation makes it suitable for more extensive surgical interventions where larger access is necessary, whereas the piezotome's precise and minimally invasive capabilities make it ideal for procedures that demand high precision and minimal tissue disruption.
A. Correct! The piezotome is designed for precise cuts that minimize collateral tissue damage, whereas the micromotor offers robust bone manipulation capabilities, necessitating careful handling to prevent excessive damage.
C. Correct! The piezotome's ultrasonic technology inherently produces less heat, enhancing tissue safety. In contrast, the micromotor's mechanical operation can generate significant heat, which must be carefully managed to avoid thermal injury.
D. Correct! While both devices are used for bone surgeries, they offer different balances of power and precision. The piezotome is favored for its fine control, making it suitable for delicate operations, while the micromotor, with its greater power, is beneficial in situations where more forceful bone manipulation is required.