First, a drug rich in isotope 10B is selectively delivered to tumor cells, and then a low-energy thermal neutron beam is applied. When 10B captures the neutron, a nuclear reaction occurs instantly, releasing high-energy α particles and lithium ions with a range of only 5–9 micrometers (approximately the diameter of a single cell), precisely blasting cancer cells while almost not harming the surrounding normal tissues.
The key to the success of BNCT lies in two core elements: an efficient boron drug and a precise neutron irradiation device, both indispensable.

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