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This minimally invasive treatment is designed to help reduce or eliminate pain caused by a fractured vertebra and stabilize the bone. Low viscosity cement is injected directly into the collapsed vertebral body under high pressure, with the goal of stabilizing the fracture and relieving the associated back pain.

This minimally invasive treatment is designed to help reduce or eliminate pain caused by a fractured vertebra and stabilize the bone. Low viscosity cement is injected directly into the collapsed vertebral body under high pressure, with the goal of stabilizing the fracture and relieving the associated back pain.

Mock up human spine on a white background with a laser. The concept of a new modern method without surgery for the treatment and removal of intervertebral hernias

This minimally invasive treatment is designed to help reduce or eliminate pain caused by a fractured vertebra and stabilize the bone. Low viscosity cement is injected directly into the collapsed vertebral body under high pressure, with the goal of stabilizing the fracture and relieving the associated back pain.

Sacral nerve stimulation (SNS), also known as sacral neuromodulation, is a medical therapy that involves the use of electrical stimulation to modulate the sacral nerves. These nerves play a vital role in controlling various pelvic and lower abdominal functions, such as bladder and bowel function, as well as pelvic pain. SNS is primarily used to treat conditions in which these functions are disrupted or dysfunctional. Here is an overview of the concept of sacral nerve stimulation.

Lower spine coccyx and sacrum on a white background, isolate. Tailbone anatomy, disease coccygodynia, spondylolisthesis

Close-up anatomical model view of the sacral region showing sacral spinal nerves, sacral canal, filum terminale, and cauda equina for neurology education.

This minimally invasive treatment is designed to help reduce or eliminate pain caused by a fractured vertebra and stabilize the bone. Low viscosity cement is injected directly into the collapsed vertebral body under high pressure, with the goal of stabilizing the fracture and relieving the associated back pain.

Study the anatomy and physiology of chickens in the biology lab.

Study the anatomy and physiology of chickens in the biology lab.

Study the anatomy and physiology of chickens in the biology lab.

Study the anatomy and physiology of chickens in the biology lab.

Study the anatomy and physiology of chickens in the biology lab.

Study the anatomy and physiology of chickens in the biology lab.

Study the anatomy and physiology of chickens in the biology lab.

Study the anatomy and physiology of chickens in the biology lab.

Study the anatomy and physiology of chickens in the biology lab.

Study the anatomy and physiology of chickens in the biology lab.

Study the anatomy and physiology of chickens in the biology lab.

Study the anatomy and physiology of chickens in the biology lab.

This minimally invasive treatment is designed to help reduce or eliminate pain caused by a fractured vertebra and stabilize the bone. Low viscosity cement is injected directly into the collapsed vertebral body under high pressure, with the goal of stabilizing the fracture and relieving the associated back pain.

Close-up view of domestic ducks walking on a green grass

Close-up view of domestic ducks walking on a green grass



































