What is the treatment for thoracic spine injury

What is the treatment for thoracic spine injury

The thoracic vertebrae are skeletal organs in the human chest, which are distributed in the middle part of the spine. This is an indispensable part of the human body. The support of gravity and the support of spinal nerves are the functions of the thoracic vertebrae on the human body, and it can also cushion the impact force on the human body. However, if we do not pay attention to calcium supplementation in our daily lives or if the thoracic spine is damaged during exercise, it will have a great adverse effect on the human body, and may cause: asthma, dyspnea, pulmonary edema, myocardial infarction, etc. The following will introduce the treatment of thoracic spine injury.

The concept of thoracic spine

1. There are 12 thoracic vertebrae in humans.

2. The vertebral body gradually increases in size from top to bottom, and its cross section is heart-shaped. The upper and lower edges of its two side surfaces have upper and lower costal grooves respectively, which are articulated with the costal heads. p2) In front of the end of the transverse process, there is a transverse groove that articulates with the costal tubercle.

3. The costal concavities of the first thoracic vertebra and the thoracic vertebra below the ninth thoracic vertebra are atypical.

4. The articular surface of the articular process is almost in a coronal position, with the articular surface of the superior articular process facing backwards and the articular surface of the inferior articular process facing forwards.

5. The spinous processes are long and tilted posteriorly and inferiorly, and adjacent spinous processes are arranged in an imbricate manner.

Corresponding diseases

First thoracic vertebra

Esophagitis, swollen and painful esophagus, asthma, dyspnea, tracheitis, pleurisy, cold hands, and pain in finger joints.

Second thoracic vertebra

Arrhythmia, myocardial infarction, myocarditis, endocarditis, myocardial hypertrophy, arteriosclerosis, cardiac dysfunction, and hypertension.

Third thoracic vertebra

Tuberculosis, pneumonia, emphysema, pulmonary edema, pulmonary artery stenosis, shock, pleurisy, tracheitis.

Fourth thoracic vertebra

Jaundice, excessive bile, gallstones, arteriosclerosis, neurasthenia, depression, premature graying of hair.

Fifth thoracic vertebra

Hypertension, hypotension, circulatory disorders, decreased liver function, liver fire jaundice, and hepatitis.

Sixth thoracic vertebra

Various gastritis, gastric acid secretion disorders, indigestion, gastric ulcer, gastric cancer, and gastric motility deficiency.

Seventh thoracic vertebra

Abnormal secretion of various digestive enzymes, diabetes, hypoglycemia, and duodenal ulcer.

Eighth thoracic vertebra

Anemia, enlarged spleen, irritability, shortness of breath, measles, obesity that is difficult to lose weight, excessive sweating and night sweats, and dreaminess when sleeping.

Ninth and tenth thoracic vertebrae

Painful urination, nephritis, renal failure, uremia, arteriosclerosis, chronic fatigue, low back pain, and kidney diseases.

11th thoracic vertebra

Skin disorders.

12th thoracic vertebra

Absorption disorder, malnutrition, enteritis, abdominal pain, and decreased immunity.

For thoracic spinal cord injury combined with high paraplegia, Western medicine surgery only restores the diameter of the spinal canal and causes the nerves to be damaged again. They have completed their treatment mission, but the damaged nerves are still in a state of paralysis and shock. They are helpless and can only let you wait for recovery. In addition to self-repair, the recovery of nerve function can be treated with this program. If the damaged nerves undergo ischemic degeneration due to prolonged time, there is no hope of recovery from this disease.

Treatment options

1. Use Chinese medicine to enhance and improve spinal blood circulation so that damaged nerves can get adequate blood supply. 2. Combine traditional Chinese and Western medicine to nourish the nerves.

3. Use nerve regeneration drugs to stimulate and activate the damaged nerves that are paralyzed and in shock.

4. Autonomous functional training of the stent can achieve functional reconstruction and achieve optimal early recovery.

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