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A laparoscopic hernia repair is when the hiatal hernia is corrected using a covering for the mesh that is used to repair the weakened area. The defect is then measured and the mesh is stapled into place. [6] A benefit of performing Laparoscopic hernia repair is shorter recovery times compared to other methods.
External fixation is a surgical treatment wherein Kirschner pins and wires are inserted and affixed into bone and then exit the body to be attached to an external apparatus composed of rings and threaded rods — the Ilizarov apparatus, the Taylor Spatial Frame, and the Octopod External Fixator — which immobilises the damaged limb to facilitate healing. [1]
A hiatal hernia or hiatus hernia [2] is a type of hernia in which abdominal organs (typically the stomach) slip through the diaphragm into the middle compartment of the chest. [1] [3] This may result in gastroesophageal reflux disease (GERD) or laryngopharyngeal reflux (LPR) with symptoms such as a taste of acid in the back of the mouth or heartburn.
In medicine, the Ilizarov apparatus is a type of external fixation apparatus used in orthopedic surgery to lengthen or to reshape the damaged bones of an arm or a leg; used as a limb-sparing technique for treating complex fractures and open bone fractures; and used to treat an infected non-union of bones, which cannot be surgically resolved.
The medical device shares a number of components and features of the Ilizarov apparatus. The Taylor Spatial Frame is a hexapod device based on a Stewart platform, and was invented by orthopaedic surgeon Charles Taylor. The device consists of two or more aluminum or carbon fibre rings connected by six struts. Each strut can be independently ...
Leg restraints. Limb restraints can be physical (or psychological) restraints that inhibit an individual's movement in their arms or legs. The most common limb restraint is physical, whereby restraints are fixed to the individual in order to prevent movement of the limbs. They are most commonly used within the field of medicine.
Suboptimal dosage choices may be a key for the negative conclusions on traction. Different dosage levels for aspects such as traction force, traction rhythm, duration of treatment, and frequency could be the key to providing efficient effects. Proper dosage levels for any therapeutic treatment will be vital for recovery efficiency.
Halo-gravity traction (HGT) is a type of traction device utilized to treat spinal deformities such as scoliosis, [1] [2] congenital spine deformities, cervical instability, basilar invagination, and kyphosis. [3] It is used prior to surgical treatment to reduce the difficulty of the following surgery and the need for a more dangerous surgery.