The term C-arm is used to refer to an imaging machine that is based on X-ray technology. Basically, it is an imaging scanner intensifier that can be used flexibly in different kinds of operating rooms in a health facility. The name C-arm is usually derived from the C-shaped arm that is used to connect the source of X-rays to the x-ray detector. Although c arm x ray devices have radiographic capabilities, they are mostly used for fluoroscopic intraoperative imaging.
This machine is used in surgical operations, emergency care, orthopedic, traumatology, and cardiology. The machine was first introduced in 1955 and ever since this introduction in the field of medicine, it has rapidly undergone a number of advancements. The machine operates in real time giving out X-ray images with high- resolution. During surgery, the machine often allows physicians to monitor progress and to be able to immediately make any corrections required.
Some models of these machines are permanently fixed in the place that they are installed. On the other hand, others are made so that they can be moved from one place to another. Those that can be moved are referred to a mobile of portable C-arms. Mobile C-arms are composed of a generator and a flat-panel detector. A flat-panel detector is also called an image intensifier.
The C-shaped element that is used to connect the device normally allows it to be moved extensively. For example, it can be moved around the swivel axis, vertically, and horizontally. The ability of the machine to be moved allows the x-ray machine to produce images of the patient from any angle preferred by the doctor. X-rays are produced by the generator and focused in the body part being x-rayed.
The x-rays first get into contact with the skin and pass through the body, to meet the detector which detects and converts the rays to visible images. A monitor is used to display the produced images. Physicians use the images to study anatomical details including bones. In addition, they can check the location of implants and surgical tools inside the body.
The use of flat-panel detectors is becoming increasingly common these days. Previously, image intensifiers (II) were the most commonly used components for detection of images in fixed room systems. Detectors are becoming more common because they have more advantages, which include increased image quality and lower patient dose. Also, images produced by detectors do not deteriorate in their quality over time.
Flat-panel detectors are much more expensive compared to image intensifiers. Even though they are more expensive, flat-panel detectors are still preferable because their size has been reduced significantly compared to that of image intensifiers. The small size makes them more accessible to patients.
A number of manufacturers play a big role in regulation of the C-arms market. They include Ziehm, GE healthcare, and Siemens. Each individual producer makes efforts to better a number of aspects of the machine. A number of the aspects that manufacturers constantly strive to improve include quality of images, the dose of x-ray, price, portability, and size. The devices have seen continued reduction in prices due to competition.
This machine is used in surgical operations, emergency care, orthopedic, traumatology, and cardiology. The machine was first introduced in 1955 and ever since this introduction in the field of medicine, it has rapidly undergone a number of advancements. The machine operates in real time giving out X-ray images with high- resolution. During surgery, the machine often allows physicians to monitor progress and to be able to immediately make any corrections required.
Some models of these machines are permanently fixed in the place that they are installed. On the other hand, others are made so that they can be moved from one place to another. Those that can be moved are referred to a mobile of portable C-arms. Mobile C-arms are composed of a generator and a flat-panel detector. A flat-panel detector is also called an image intensifier.
The C-shaped element that is used to connect the device normally allows it to be moved extensively. For example, it can be moved around the swivel axis, vertically, and horizontally. The ability of the machine to be moved allows the x-ray machine to produce images of the patient from any angle preferred by the doctor. X-rays are produced by the generator and focused in the body part being x-rayed.
The x-rays first get into contact with the skin and pass through the body, to meet the detector which detects and converts the rays to visible images. A monitor is used to display the produced images. Physicians use the images to study anatomical details including bones. In addition, they can check the location of implants and surgical tools inside the body.
The use of flat-panel detectors is becoming increasingly common these days. Previously, image intensifiers (II) were the most commonly used components for detection of images in fixed room systems. Detectors are becoming more common because they have more advantages, which include increased image quality and lower patient dose. Also, images produced by detectors do not deteriorate in their quality over time.
Flat-panel detectors are much more expensive compared to image intensifiers. Even though they are more expensive, flat-panel detectors are still preferable because their size has been reduced significantly compared to that of image intensifiers. The small size makes them more accessible to patients.
A number of manufacturers play a big role in regulation of the C-arms market. They include Ziehm, GE healthcare, and Siemens. Each individual producer makes efforts to better a number of aspects of the machine. A number of the aspects that manufacturers constantly strive to improve include quality of images, the dose of x-ray, price, portability, and size. The devices have seen continued reduction in prices due to competition.
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