Radiation and Non-radiation Therapies to Drive Transformational Growth in Cancer Management
10-Dec-2025
Global
Technology Research
DB31-01-00-00-00
HC_2025_34217
Cancer treatment technologies are playing an instrumental role in the effective removal of cancerous tumors through radiation and non-radiation therapies. These therapies offer highly localized, minimally invasive/non-invasive, and personalized treatment options that support effective tumor removal.
The growing burden of cancer cases globally—primarily driven by increased awareness about the condition and the availability of solutions enabling early diagnosis—is accelerating large-scale adoption of these technologies.
Healthcare providers are opting for these therapies because they facilitate effective tumor removal while sparing healthy tissues, thereby improving patient outcomes.
This Frost & Sullivan research study categorizes cancer treatment technologies into radiation therapies, which work by delivering ionizing energy to damage the DNA of cancer cells, and non-radiation therapies, which kill cancer cells without ionizing radiation. Radiation therapy includes biology-guided radiotherapy, brachytherapy, adaptive radiation therapy, electronic brachytherapy, and superficial radiation therapy. Non-radiation therapy includes histotripsy (focused ultrasound), microwave ablation, aquablation, thermal water vapor therapy, and tumor treating fields.
Why Is It Increasingly Difficult to Grow?
The Strategic Imperative 8™: Factors Creating Pressure on Growth
The Strategic Imperative 8™
The Impact of the Top 3 Strategic Imperatives on the Cancer Treatment Technologies Industry
Growth Opportunities Fuel the Growth Pipeline Engine™
Research Methodology
Scope of Analysis
Segmentation by Technologies
Growth Drivers
Growth Restraints
Radiation Therapy—Overview
Radiation Therapy Players—Key Innovations
Other Radiation Therapy Innovators
Non-radiation Therapy—Overview
Non-radiation Therapy Players—Key Innovations
Other Non-radiation Therapy Innovators
Public Funding for Radiology and Non-radiology Therapy Technologies
Private Funding for Radiology and Non-radiology Therapy Technologies
Public and Private Funding for Radiology and Non-radiology Therapy Technologies
Partnership Analysis
Patent Analysis for Cancer Treatment Technologies
Key Patents
Growth Opportunity 1: Use of AI Across the Entire Cancer Care Continuum
Growth Opportunity 2: Pluridirectional High-Energy Agile Scanning Electronic Radiotherapy
Growth Opportunity 3: Medical Device Outsourcing Through Partnership with Contract Manufacturing Organizations
Technology Readiness Levels (TRL): Explanation
Benefits and Impacts of Growth Opportunities
Next Steps
Legal Disclaimer
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The growing burden of cancer cases globally—primarily driven by increased awareness about the condition and the availability of solutions enabling early diagnosis—is accelerating large-scale adoption of these technologies.
Healthcare providers are opting for these therapies because they facilitate effective tumor removal while sparing healthy tissues, thereby improving patient outcomes.
This Frost & Sullivan research study categorizes cancer treatment technologies into radiation therapies, which work by delivering ionizing energy to damage the DNA of cancer cells, and non-radiation therapies, which kill cancer cells without ionizing radiation. Radiation therapy includes biology-guided radiotherapy, brachytherapy, adaptive radiation therapy, electronic brachytherapy, and superficial radiation therapy. Non-radiation therapy includes histotripsy (focused ultrasound), microwave ablation, aquablation, thermal water vapor therapy, and tumor treating fields.
| Deliverable Type | Technology Research |
|---|---|
| Industries | Healthcare |
| No Index | No |
| Is Prebook | No |
| Keyword 1 | cancer treatment technologies market |
| Keyword 2 | oncology therapeutics market |
| Keyword 3 | precision oncology solutions |
| Podcast | No |
| Predecessor | DB47-01-00-00-00 |
| WIP Number | DB31-01-00-00-00 |