Basic Over of The C-Arm System | Amber Diagnostics (2024)

by Amber Diagnostics

A C-Arm system is an overhead x-ray that provides real-time detailed viewing of anatomic structures using fluoroscopic dyes

A C-arm system is an overhead x-ray image intensifier that provides real-time detailed viewing of anatomic structures using fluoroscopic dyes. The system is a non-invasive device that does not enter the patient’s body, making it safe for screening before, during and after procedures.

These machines are mobile, easily transportable, and can be used in confined spaces. The unit’s support structure is shaped like the letter “C”, and is capable of being adjusted to different settings based on the application. The special arced semi-circular design also permits the physician to rotate and angle an x-ray tube without moving the patient. Furthermore, using a moveable C-arm table allows the physician the opportunity to “tilt” the patient while rotating the C-arm system, maximizing the viewing capacity. The flexibility allows physicians to quickly view and monitor the placement of devices like pacemakers, catheters and prostheses.

The C-arm system works in conjunction with patient tables and are specifically designed for x-ray imaging, allowing free positioning of the C-arm around the patient. Tables may even be designed to move and rotate to allow better patient access for procedures and to aid imaging angles.

Though the C-arm system has radiographic capabilities, they are primarily used for fluoroscopic imaging during surgical, orthopedic, critical care, pain management, and emergency care procedures.

Outpatient studies

C-arm system imaging is used for various studies including those of the digestive, reproductive, coronary and venous systems to help identify potential health problems such as stomach ulcers, infertility, and coronary artery occlusion.

Line placement

C-arm fluoroscopes are ideal for use in visually guiding physicians to place needles, stents and catheters in specific areas.

Image Intensifiers

Image intensifiers are usually set up for two purposes: for plain fluoroscopy or digital subtraction angiography (DSA). Image intensifiers are frequently used in orthopedics to help put hardware needed to stabilize bones and joints; for vascular and neurological imaging to ensure surrounding tissues remain healthy; and to help guide surgeons operating on delicate areas such as the spine.

Surgery

The C-Arm Machine has a number of surgical uses including real-time viewing of the gallbladder, liver, heart and bone structures. It can also provide viewing assistance to ensure accuracy during surgery. Some imaging systems are capable of taking images in multiple planes, which is useful for reconstructing a 3D volume of the patient anatomy. This is typically used for surgical navigation. Surgeons also find this helpful to check the placement of implanted devices in the patient.

Pain Management

Image intensifiers are used to help direct needle placement into joints when injecting anesthetics. Pain-relieving medication can be inserted into shoulders and knees with little or no damage to the nearby structures.

C-Arm Components

The portable C-Arm system generally consists of these main components: the x-ray generator, imaging system, and workstation unit.

X-Ray Generator

The X-ray generator, dose control system and collimator controls are usually housed in the frame on which the C-arm is mounted. All of the control systems are directed by the master controller (found in work station). User controls on the C-arm allow the operator to modify the operation of the system while in use. There are several benefits for increased x-ray power. For starters, it allows greater flexibility for imaging while reducing exposure times and the risk for error. These benefits may be very important for pediatric and obese patients who may find longer exposure times daunting.

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Types of X-Ray Tubes

The two types of X-ray tubes are fixed anode or rotating anode. Typical features of fixed anode tubes include a heat capacity load 30,000 – 50,000 heat units; an angle on the anode target of about 12 degrees; and single or dual focused anode with 0.5 by 0.5 mm focal spot for fluoroscopic applications and 1.8 by 1.8 mm focal spot size for radiographic applications. Typical features of rotating anode tubes include a 0.3 mm focal spot for better image detail; longer tube life; typical anode heat rating of 300 000 heat units for longer exposure times; and housing with a heat storage limitation of about 1200-1250kHU.

Imaging System

The imaging system unit can perform a variety of movements that allow for use in a variety of surgical procedures such as cardiology, orthopedics and urology. This unit provides the correct structure to properly mount an image intensifier and an X-ray tube. The imaging system must be compact and lightweight to allow easy positioning with a wide range of motion and adequate space to work around, but must still remain firm enough to avoid misalignment.

Workstation unit

Much of the operation of the machine comes from the workstation unit. This unit is typically equipped with the following features: various handles for movement and positioning; power switch and exposure switch; cable hanger; brake pedal; controls for radiographic and fluoroscopic settings; assorted interconnect cables; hard disk and optical disk writer/rewriter, DVD R/RW, PACS system connection; advanced image quality enhancement software such as noise reduction and zoom control; ability to save and swap images; contrast and brightness controls; single or dual large monitors; and advanced image processing such as noise reduction.

Retrofitting in the Digital Age

An issue affecting C-arms today concerns the ability of practitioners to replace their analog equipment with digital devices. In the digital age, analog equipment is essentially being phased out. However, buying new digital equipment is typically very expensive and time-consuming.

There is a solution for C-arms however: the Digital Retrofit for OEC 9800 Series C-Arms. This flat panel digital detector easily upgrades OEC 9800 C-Arms to digital at a fraction of the cost of a new device. More information can be found here.

If you need any assistance in purchasing a C-arm system, please don’t hesitate to contact me.

Posted by:

John Brant (JB)
Sales Manager

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FAQs

What are the basics of C-arm? ›

A C-arm is an imaging scanner intensifier. The name derives from the C-shaped arm used to connect the x-ray source and x-ray detector to one another. C-arms have radiographic capabilities, though they are used primarily for fluoroscopic intraoperative imaging during surgical, orthopedic and emergency care procedures.

What is the C-arm for orthopedic surgery? ›

C-arms play an indispensable role in orthopedic surgery, especially during implant placements and fracture alignments. They provide real-time, high-definition imaging that guides surgeons, helping to ensure precision and bolster patient safety during these complex procedures.

What is the C-arm machine in the cath lab? ›

A C-Arm machine is an advanced medical imaging device based on X-ray technology. They are primarily used for fluoroscopy capabilities, although they have radiography capability too. C-Arm is called so, due to its C-shaped arm, which is used to connect the x-ray source on one end and the detector on the other.

What are the components of the C-arm machine? ›

A C-arm machine consists of several key components, including an X-ray source, an image intensifier, and a flat-panel detector. The X-ray source generates radiation, which then passes through the patient's whole body and produces an image on the flat-panel detector.

What are the 4 parts of an ARM? ›

The arm is divided into several parts, including the upper arm, lower arm, forearm, and hand. Upper Arm: Also known as the brachium, it extends from the shoulder to the elbow joint.

What are the principles of C-arm machine? ›

What is the basic principle of C-arm? The basic principle of a C-arm machine involves emitting X-rays from one side, which pass through the body and are captured by an image intensifier on the other side. This produces real-time fluoroscopic images, allowing medical professionals to monitor procedures dynamically.

What is the difference between a cath lab and a C-arm? ›

Current C-arm generators have an output of 7.5kW to 25kW while cath labs will have much more power at 100kW. As a result, a C-arm can't match the output and duration a cath lab can handle. For longer or more advanced studies that require extended fluoro time, you'll likely need the power of the cath lab.

What is the function of the C-arm? ›

C-Arm gets its name from the C-shaped arm present in the device, which is used to connect the x-ray source and the detector. These C-Arm machines are widely used during orthopedic, complicated surgical, pain management (Anesthetics) and emergency procedures.

What is another name for the C-arm machine? ›

Mobile C-arm machines are used for a range of diagnostic imaging and minimally invasive surgical procedures. They're fluoroscopy devices and could be colloquially referred to as “image intensifiers.” What's so useful about them is that they're flexible, and thus can be used in a variety of situations.

What is the image intensifier in C-arm? ›

"C-arm" mobile fluoroscopy machines are often colloquially referred to as image intensifiers (or IIs), however strictly speaking the image intensifier is only one part of the machine (namely the detector). Fluoroscopy, using an X-ray machine with an image intensifier, has applications in many areas of medicine.

What are the four components of an arm? ›

An ARM has four components: (1) an index, (2) a margin, (3) an interest rate cap structure, and (4) an initial interest rate period. When the initial interest rate period has expired, the new interest rate is calculated by adding a margin to the index.

What are the basics of ARM microcontroller? ›

ARM is apopular low power embedded processor. Itscore is based on the RISC architecture. In 1985 the first prototype was introduced under the name Acorn RISC machine later renamed as Advanced RISC Machine (ARM). Being a RISC machine the design is simple which means it can be built by less number of transistors.

How do C-arms work? ›

How does a C-arm machine work? The machine employs X-ray technology whereby integrates high-frequency light waves to capture and record internal structures. A C-arm incorporates a generator which is the X-ray source and the picture or the image intensifier or plane detector.

How far away from C-arm is safe? ›

A good rule of thumb is that if you are not wearing radiation protective apparel, stand at least two meters (m) away from the part of the patient being x rayed and two m away from the x-ray tube (usually the part of the c-arm under the table).

What are the modes of C-arm? ›

C-arm machines have several imaging modes: Continuous fluoroscopy – viewing live images (not acquiring images) Pulsed fluoroscopy – viewing intermittent live images to reduce dose during long procedures.

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