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[Harnessing AI and Big Data to Redefine Cancer Treatment and Global Care]-[Ep. 52: Live at GTC - How Deep Learning Can Fight Cancer]

NVIDIA AI Podcast · B2 · 2018-04-04

Technology
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📋 Summary

Transforming Oncology: The Intersection of Big Data and Cancer Care

In this episode of the NVIDIA AI Podcast, host Noah Kravitz sits down with Dr. Richard Wender, Chief Cancer Control Officer at the American Cancer Society (ACS), to explore how cutting-edge technology—specifically AI, machine learning, and big data—is fundamentally altering the landscape of cancer diagnosis, treatment, and global accessibility.

The Molecular Shift in Cancer Classification

Dr. Wender emphasizes that we are in a "remarkable moment" for oncology. Historically, cancer was defined by the organ of origin or its appearance under a microscope. Today, that framework is obsolete. Modern medicine now defines cancer by its "DNA sequence" and "molecular signature."

As Wender notes, we have moved from understanding a few hundred types of cancer to potentially millions, where the "cellular environment" dictates the disease's behavior. This granular data allows for the development of "tailored or targeted chemotherapeutic drugs or immunotherapy," enabling clinicians to target the exact "mutation abnormality" of a patient's specific subtype of cancer.

AI as a Point-of-Care Catalyst

Looking toward the next decade, Wender envisions a future where oncology teams are "completely dependent on feeding that patient's data into a large data set." By utilizing machine learning to analyze clinical information from past patients with similar molecular signatures, healthcare providers can receive real-time, personalized treatment recommendations at the point of care.

Beyond molecular profiling, AI is revolutionizing medical imaging. Wender highlights ongoing research in "better harnessing of CT scans using machine learning" to detect the subtle "texture and patterns" of difficult-to-diagnose cancers, such as pancreatic cancer. This accuracy is vital for determining whether a patient is "amenable to surgery," potentially saving lives that might otherwise be lost to late-stage discovery.

Closing the Gap: Technology in Underserved Regions

One of the most ambitious goals of the ACS is ensuring equitable care, whether in urban centers or rural, underserved areas. Wender admits that with the current shortage of specialized oncologists, the organization must "harness robotics," "distance learning," and "advanced telemedicine" to reach patients.

In sub-Saharan Africa, for instance, the ACS is working to bridge the treatment divide. They have developed an app that allows local clinicians—who may not have access to the same resources as Western oncologists—to enter patient data and receive "treatment guidelines tailored for African drugs that are available." This practical application of technology ensures that high-quality care is not limited by geography.

Overcoming Systemic Barriers

Despite the potential, Wender acknowledges that technological adoption faces significant hurdles, including "competing insurance providers," "data portability" issues, and the limitations of current Electronic Medical Records (EMRs). He points out that current systems are often designed for billing rather than clinical decision support.

Furthermore, he highlights the role of "evidence-based interventions" in public health. Using colorectal cancer screening (the "80% by 2018" initiative) as a case study, he explains how natural language processing (NLP) could eventually scan EMRs to identify patients due for screening, effectively automating the identification of those at risk and ensuring preventative measures are taken before a diagnosis is even necessary.

A Future-Forward Vision

Dr. Wender’s optimism extends to unconventional technologies. From using autonomous vehicles to transport patients in rural Wyoming to remote radiation therapy, to the potential of "3D printing of homes" to provide temporary lodging for patients traveling for treatment, the ACS is actively looking for innovative solutions to practical problems.

Concluding the discussion, Wender extends an invitation to the tech community. He emphasizes that the fight against cancer is a "two-way street"—the ACS provides the clinical context and the mission, while tech partners provide the tools. He encourages engineers and data scientists to reach out, noting that as long as the goal is "aspirational," the progress made by integrating AI into the clinical workflow will continue to redefine the survival and quality of life for millions.

🎯Key Sentences

1
I'm delighted to be here.
2
in reality, Noah, we're in a remarkable moment.
3
Even that we're going to learn is not sufficient.
4
So just think about it.
5
That, frankly, is just scratching the surface.
Expand All

📝Key Phrases

1
impacting all facets of modern life
2
redefining how we look at and fight
3
scratching the surface
4
amenable to surgery
5
from the ground up
Expand All

📖 Transcript

Hello, and welcome to the NVIDIA AI Podcast.
I'm your host, Noah Kravitz. We talk a lot about technology, and data specifically, impacting all facets of modern life.
In this episode, we're going to look at data's role in the fight against one of the biggest threats to life as we know it, cancer.
We'll talk to Richard Wender, Chief Cancer Control Officer at the American Cancer Society, about the role of AI and machine learning in his work. and how technology is key to redefining how we look at and fight cancer.
Richard, thanks so much for joining the podcast.
I'm delighted to be here. How is the American Cancer Society using AI, machine learning, big data, all of this stuff in the battle against cancer?

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