1. Technical Field
The present invention relates to image calibration devices integrated with optical locater and, more particularly, to an image calibration device integrated with optical locater, wherein the image calibration device is applicable to a surgical navigation system.
2. Description of Related Art
Taking medical images as preparation for surgical operations is a commonly performed pre-surgical procedure for precisely locating the nidi to be treated. In recent years, the computer-aided locating technology has been increasingly applied in surgical operations for enhancing the locating accuracy. Among others, surgical navigation systems are the most popular means.
A surgical navigation system is a system that guides the surgeon to conduct a surgical operation according to the spacial information between surgical instruments and a nidus to be treated. Prior to the surgical operation, the surgeon may use a medical imaging approach to obtain images of the nidus, and electronically reconstruct the images to form a full view of the nidus. The full view can then be defined in a coordinate system and the relevant coordinates can be input to computers for preoperative route planning of surgical instruments, thereby ensuring the locating accuracy in the surgical operation.
Referring to
However, due to X-rays being comprised of invisible light, before obtaining the images, an operator essentially has no way of knowing whether the C-arm image capturing device 10 is properly aligned with the nidus or not. Furthermore, the coordinates corresponding to the nidus cannot be determined unless the area photographed by the C-arm image capturing device 10 fully covers the entire nidus. Consequently, if the C-arm image capturing device 10 fails to cover the entire nidus when capturing the image, the resultant image will be one as typified in
In view of the above plight of the art, there is a need for improved image locating techniques.
The present invention provides an image calibration device integrated with an optical locater, wherein the image calibrator, by utilizing the optical locater to target a location designated by the image calibrator, helps to minimize incidence in photography before a competent image is obtained.
The present invention provides an image calibration device integrated with an optical locater, wherein the image calibrator, by utilizing the optical locater to locate an imaging zone of the image capturing device, helps to improve imaging accuracy.
The present invention provides an image calibration device integrated with an optical locater, wherein the image calibration device serves to clearly show a location and a range of image capturing, so that the image capturing device can be easily directed at the target object to be photographed and produce clear images, thereby enhancing the locating accuracy.
To achieve the above effects, the image calibration device of the present invention includes an image calibrator and an optical locater, wherein the optical locater has at least one pointing light source, and is located on a surface of the image calibrator.
In the image calibration device integrated with the optical locater, the surface is further provided with a slideway, and the pointing light source is slidably coupled with the slideway.
In the image calibration device integrated with the optical locater, the pointing light source is a laser light source.
In the image calibration device integrated with the optical locater, the optical locater has two pointing light sources that are located at two opposite sides of the surface and aligned with each other.
In the image calibration device integrated with the optical locater, the optical locater has three pointing light sources that are arranged as three points of an imaginary triangle on the surface.
By implementing the present invention, at least the following progressive effects can be achieved:
1. The image calibrator, by utilizing the optical locater to target a location designated by the image calibrator, helps to improve the imaging accuracy and minimize incidence in photography before a competent image is obtained.
2. Due to its ability of clearly locating the nidus, the image calibrator helps to minimize incidence in photography before a competent image is obtained and thereby prevent the patient from receiving excessive X-ray radiation.
3. The image calibration device serves to clearly show the location and the range of image capturing, so as to enhance the locating accuracy.
The invention as well as a preferred mode of use, further objectives and advantages thereof will be best understood by reference to the following detailed description of illustrative embodiments when read in conjunction with the accompanying drawings, wherein:
As shown in
The image calibrator 30 is deposited before an X-ray receiving end 12 of a C-arm image capturing device 10. Since in image capturing, a patient's nidus X is arranged between an X-ray emitting end 11 of the C-arm image capturing device 10 and the X-ray receiving end 12, a location aimed by the image calibrator 30 is the area photographed by the C-arm image capturing device 10.
As shown in
As shown in
As shown in
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Therefore, as shown in
By providing the image calibrator 30 with the optical locater 40 that implements the pointing light source 41 to emit visible light beams, the present invention can direct the pointing light source 41 to locate the imaging zone target by the image calibrator 30, so as to improve imaging accuracy, thereby minimizing incidence of image capturing before a competent image is obtained, and in turn prevent the patient from receiving excessive X-ray radiation.
The embodiments described above are intended only to demonstrate the technical concept and features of the present invention so as to enable a person skilled in the art to understand and implement the contents disclosed herein. It is understood that the disclosed embodiments are not to limit the scope of the present invention. Therefore, all equivalent changes or modifications based on the concept of the present invention should be encompassed by the appended claims.
Number | Date | Country | Kind |
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098137338 | Nov 2009 | TW | national |