How to completely cure a recurrence of Bartholin's gland cyst

Patient's question:

I recently don't know what's going on, my lower body is very uncomfortable, and I'm not getting morning erections anymore. How can I completely cure a recurrent Bartholin's gland cyst?

Doctor's answer:

1 Traditional Treatment
Vaginal gland cyst is a common gynecological disease caused by inflammation, epithelial metaplasia, and other factors leading to obstruction of the vaginal gland ducts. Traditional treatment methods include cyst excision, cystostomy (incision and drainage are required for infected cases), and cyst fluid aspiration. Traditional treatments are prone to bleeding during surgery, requiring suture ligation and removal, daily drainage tube changes for incision and drainage, and recurrence-prone aspiration methods. With the promotion of microwave treatment technology, these drawbacks can be avoided.
2 Microwave Treatment
Microwave is a high-frequency electromagnetic wave with a significant thermal effect, no dielectric action, and no excitatory ability on nerves and muscles. The electrodes can be separated from the skin, and the tissue resistance to current is low. Its biophysical effects are primarily thermal oscillation. During surgery, there are no obvious side effects on human tissues.
When microwaves act on the human body, they produce both thermal and non-thermal effects. Due to the action of electromagnetic waves, the dipole moments of electrolytes in the body rotate with frequency changes, meaning the positive and negative poles of water molecules in the tissue change. The microwave electric field polarity changes at a high speed of 2450 MHz × 10^6/s. During vibration and rotation, friction occurs, producing the aforementioned effects, causing the tissue to heat up and expand, achieving coagulation, solidification, and hemostasis. Unlike laser and high-frequency electricity, microwaves belong to internal heating (induction heating method), featuring simultaneous internal and external heating, no heat transfer process, rapid high-temperature achievement, and low diffusion.
Microwaves not only cause denaturation and coagulation of tissue proteins but also can close blood vessels with diameters of 3–4 mm, thereby achieving hemostatic effects. The thermal effect of microwaves is proportional to power and radiation time.

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