FAQ on Cancer

eMedica Works on three dimensions of healing Voltages, Frequencies & Current Ethical Papers & Clinical Reports Attached to the link https://lnkd.in/dCVrUhUy

eMedica is a Certified Electronic Device to treat various Chronic & Lifestyle Diseases.
The Govt. Clinical Trials have been done  & proven. Ethical Papers are in place by the Government & along with other Certifications Like NABL , ROHS , CE , ISO 13485

How does eMedica Treat Cancer ?

The benefits of electrical stimulation techniques eMedica include enhanced effectiveness of chemotherapy drugs, targeted destruction of tumor cells, and interference with cancer cell division. Here are some specific benefits of these electrical stimulation methods:
eMedica: Therapy: By combining electrical pulses with chemotherapy drugs, eMedica therapy can increase the permeability of cancer cell membranes. This allows the chemotherapy drugs to enter the cells more effectively, improving their ability to kill cancer cells. The electrical pulses help enhance the cytotoxic effects of the chemotherapy drugs, potentially leading to better treatment outcomes.
Electroablation: Techniques like radiofrequency ablation (RFA) or irreversible electroporation (IRE) use electrical energy to directly destroy tumor cells. These methods can be used to heat or disrupt the cancer cells, causing their destruction. The benefit of electroablation is that it provides a targeted approach to eliminate cancer cells without affecting the surrounding healthy tissues significantly.
Tumor-treating fields (TTFields): TTFields therapy involves the use of low-intensity electric fields to interfere with cancer cell division. Specialized devices deliver these electric fields to the tumor site using electrodes placed on the skin. The electric fields disrupt the normal division process of cancer cells, leading to their reduced growth and potential destruction. TTFields therapy has been approved for certain types of brain tumors.
Overall, electrical stimulation techniques in cancer treatment offer the potential for improved drug delivery, targeted cell destruction, and interference with cancer cell division. These approaches can complement traditional cancer treatments and may help improve patient outcomes. However, it's important to note that the specific benefits and effectiveness of these techniques may vary depending on the individual case and type of cancer being treated.