Abstract:
A voice converting apparatus and a voice converting method are provided. The method of converting a voice using a voice converting apparatus including receiving a voice from a counterpart, analyzing the voice and determining whether the voice abnormal, converting the voice into a normal voice by adjusting a harmonic signal of the voice in response to determining that the voice is abnormal, and transmitting the normal voice.
Abstract:
An electronic stethoscope apparatus includes a bioacoustics sensor configured to sense bioacoustics; a noise sensor configured to sense noise in the sensed bioacoustics; and a noise remover configured to remove the sensed noise and output the bioacoustics from which the noise has been removed.
Abstract:
An electronic apparatus includes: a connector which is configured to enable one of measurement devices for measuring different types of bio signals to be selectively attached thereto or detached therefrom; a communication device configured to communicate with an external apparatus; and a processor configured to, in response to the measurement device being attached to the connector, obtain identification information of the attached measurement device and transmit the identification information to the external apparatus, and control the attached measurement device based on a control command received from the external apparatus.
Abstract:
A voice converting apparatus and a voice converting method are provided. The method of converting a voice using a voice converting apparatus including receiving a voice from a counterpart, analyzing the voice and determining whether the voice abnormal, converting the voice into a normal voice by adjusting a harmonic signal of the voice in response to determining that the voice is abnormal, and transmitting the normal voice.
Abstract:
The present invention relates to an electronic device to be worn on a user body, the electronic device comprising: a sensor configured to sense the user body and generate body condition information; an operation implementator configured to perform a health care operation having one state among a plurality of operation states; a communicator configured to communicate with an external device; and a controller configured to: control the operation implementator to perform a health care operation of one state among the plurality of operation states with regard to the user body, control the communicator to transmit the body condition information and information about the operation state of the operation implementator to the external device, and control the operation implementator to perform the health care operation of the operation state corresponding to user control information received from the external device through the communicator among the plurality of operation states of the operation implementator. Thus, it is possible to be worn on a user's body and sense the user's body, transmit the sensed information, and provide a health care operation to a user in response to the received user control information.
Abstract:
A method of providing a medical image by using a medical imaging apparatus includes: acquiring blood vessel information indicating information about a blood vessel, the blood vessel being included in a medical image; and displaying the medical image. The blood vessel information includes at least one of a first diameter of the blood vessel, a first angle of the blood vessel, and a presence of at least one of bifurcation and crossover, in a first region of interest (ROI) with respect to a first position in the medical image. The acquiring of the blood vessel information includes acquiring blood vessel information corresponding to a second ROI with respect to a second position, based on the blood vessel information corresponding to the first ROI.
Abstract:
An ultrasonic probe apparatus includes an ultrasound transceiver adapted to receive ultrasonic echo signals reflected after transmitting unfocused or defocused ultrasonic signals having a first frame rate; a converter adapted to convert ultrasonic echo signals received by the ultrasound transceiver into digital signals; an image processor adapted to generate a plurality of image data by processing the digital signals; a combiner adapted to combine the plurality of image data having a first frame rate into a plurality of composite image data having a second frame rate; and a transmitter adapted to transmit the plurality of composite image data having the second frame rate.
Abstract:
An ultrasonic probe apparatus includes an ultrasound transceiver adapted to receive ultrasonic echo signals reflected after transmitting unfocused or defocused ultrasonic signals having a first frame rate; a converter adapted to convert ultrasonic echo signals received by the ultrasound transceiver into digital signals; an image processor adapted to generate a plurality of image data by processing the digital signals; a combiner adapted to combine the plurality of image data having a first frame rate into a plurality of composite image data having a second frame rate; and a transmitter adapted to transmit the plurality of composite image data having the second frame rate.