For the increasing demands of CT imaging, particularly, we have realized precise diagnostic imaging with a wide exposure range and a patient-friendly, accurate positioning system in addition to its high-resolution exposure capability, which is one of the features of its dental cone beam CT.
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Frequency processing and noise reduction supported by our original image processing technology has realized higher image quality.
This can suppress graininess often seen at temporomandibular joint and molar region, making the panoramic images close to analog films in quality and so contributing to diagnosis of caries and inflammation.

Acquisition of Panoramic images in Tomosynthesis mode provides image data with a slice depth of 30mm, enabling a clear view of the blurring of the anterior teeth image area by choosing an optimum slice position.

Shortwave therapy uses a frequency of 27.12 MHz. The electric-fields methods used in shortwave therapy comprise Capacitive (Condenser-field) and Inductive (Coil-field) methods. Shortwave in the form of electromagnetic radiation is absorbed by the body, generating molecular rotational movement and displacement current within the body, in accordance with the Maxwell equation. The unique wave motion of electromagnetic radiation propagates deep inside the body allowing tissue to be heated.

Shortwave therapy uses a frequency of 27.12 MHz. The electric-fields methods used in shortwave therapy comprise Capacitive (Condenser-field) and Inductive (Coil-field) methods. Shortwave in the form of electromagnetic radiation is absorbed by the body, generating molecular rotational movement and displacement current within the body, in accordance with the Maxwell equation. The unique wave motion of electromagnetic radiation propagates deep inside the body allowing tissue to be heated.

Microwave diathermy is classified as high frequency therapy which utilizes electromagnetic waves. As the energy from these waves is absorbed in high water content such as muscle and will make them warm, microwave diathermy will be practical and suitable for reduction of pain, relaxation of muscle and improvement of range of motion and treatment for pathologies in the muscles.

Many pathologies which afflict the muscular system are at deep area. When the cause of a pathology is at such area, it becomes difficult to reduce the pain. In these cases laser therapy is of fundamental importance because it contributes to facilitating optimal physical recovery.

An advantage of laser therapy is its ability to work at deep area, and to resolve the cause of the pathology at its point of origin. This characteristic can be attributed to two properties of the laser: wavelength and power. Different wavelengths have different properties in terms of diffusion and absorption by human tissues. As our laser has three wavelengths, you can select the most suitable wavelength for each therapeutic objective.

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