What Is Proton Therapy?

Proton therapy is an advanced form of radiation therapy that uses positively charged particles (protons) to precisely target and destroy cancer tumors while minimizing damage to surrounding healthy tissues and organs.

These are the defining features of proton therapy. By delivering radiation with a high level of accuracy, proton therapy reduces the risk of harmful side effects compared to traditional radiation. It is often recommended for patients with complex tumors, tumors that have returned after prior treatment, and children with cancer.

The Most Precise Proton Therapy Available

Not all proton therapy is the same. Many proton centers use “volumetric” beams that deliver a fixed amount of energy to the entire tumor area, which may expose more healthy tissue to radiation. At the New York Proton Center, pencil beam scanning delivers intensity-modulated proton therapy (IMPT), widely considered the most advanced form of proton therapy. IMPT allows clinicians to adjust radiation dose levels within different parts of the tumor, improving precision and effectiveness while further limiting exposure to nearby healthy tissues.
This advanced approach is especially important for tumors located near critical areas of the body and supports highly personalized treatment planning.

Frequently Asked Questions

Proton therapy is used to treat many types of cancer, including tumors in the brain, spine, lungs, head and neck, prostate, breast, and pediatric cancers.

Proton therapy may reduce exposure to healthy tissues and organs compared to traditional radiation, helping lower the risk of short- and long-term side effects. Radiation oncologists consider several factors to determine whether a patient will benefit from proton therapy.

While both are forms of radiation treatment, proton therapy uses positively charged particles that deliver energy directly to the tumor, while traditional radiation uses X-rays that pass through the body.

Patients with tumors near critical organs, complex tumors, recurrent cancers, or pediatric patients may benefit most. A radiation oncologist can help determine eligibility through a consultation.

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