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Therapeutic brain-computer-interfaces for glioblastoma, with Dr Elise Jenkins

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Manage episode 465886151 series 3556156
Content provided by Mark Davison. All podcast content including episodes, graphics, and podcast descriptions are uploaded and provided directly by Mark Davison or their podcast platform partner. If you believe someone is using your copyrighted work without your permission, you can follow the process outlined here https://podcastplayer.com/legal.

Electrical monitoring and stimulation could revolutionise diagnosis and treatment for some of the most aggressive brain cancers and intractable neurological diseases.

In glioblastoma, a particularly aggressive brain tumour that is hard to treat and almost invariably fatal, the impacts of an effective treatment would be huge.

My guest in this episode, Dr Elise Jenkins, is working with a new class of therapeutic brain-computer-interface (BCI) that can measure and disrupt neural signalling within the body. With this technology she and her team are creating breakthroughs in new materials and electronics to develop safe, minimally invasive interfaces to interact with the complex biology of the brain. That will lead to earlier detection of new tumours, and could pave the way for new treatments.

Elise shares her journey from aspiring medical doctor to electrical engineer to leading a neurotechnology startup. She discusses the many difficult challenges of engineering tiny bioelectronic devices, and the importance of understanding brain activity in cancer progression for them to be a success.

We also touch on regulatory hurdles, funding strategies, and the future potential of the technology in both cancer and non-cancer applications.

Elise and her team are looking to create a new approach to healthcare which will change the lives of millions.

“We're looking at how to slow down cancer growth.” – Elise Jenkins

You’ll hear about:

01:06 - Elise Jenkins and OptoBioSystems

02:30 - Elise's Journey into Science and Engineering

05:42 - Understanding Bioelectronics and Neural Interfaces

09:01 - Exploring Glioblastoma and Its Challenges

12:18 - Measuring Brain Activity and Cancer Progression

16:30 - The Role of Implants in Cancer Treatment

19:14 - Engineering Challenges in Medical Devices

22:57 - Wireless Power and Data Transmission Innovations

25:20 - Regulatory Considerations for Medical Devices

28:14 - Future Directions and Broader Applications

33:24 - Funding and Company Development

Connect with Elise Jenkins:

LinkedIn - https://www.linkedin.com/in/elise-jenkins-/

Opto - https://www.opto.bio/

Find out about opportunities with Opto - https://www.opto.bio/team

Connect with me:

LinkedIn: https://www.linkedin.com/in/markdavison100/

If you need any lab equipment:

Grant Instruments: https://www.grantinstruments.com/

Grant Instruments on LinkedIn: https://www.linkedin.com/company/grant-instruments-cambridge-ltd/

  continue reading

Chapters

1. Therapeutic brain-computer-interfaces for glioblastoma, with Dr Elise Jenkins (00:00:00)

2. Elise Jenkins and OptoBioSystems (00:01:06)

3. Elise's Journey into Science and Engineering (00:02:30)

4. Understanding Bioelectronics and Neural Interfaces (00:05:42)

5. Exploring Glioblastoma and Its Challenges (00:09:01)

6. Measuring Brain Activity and Cancer Progression (00:12:18)

7. The Role of Implants in Cancer Treatment (00:16:30)

8. Engineering Challenges in Medical Devices (00:19:14)

9. Wireless Power and Data Transmission Innovations (00:22:57)

10. Regulatory Considerations for Medical Devices (00:25:20)

11. Future Directions and Broader Applications (00:28:14)

12. Funding and Company Development (00:33:24)

25 episodes

Artwork
iconShare
 
Manage episode 465886151 series 3556156
Content provided by Mark Davison. All podcast content including episodes, graphics, and podcast descriptions are uploaded and provided directly by Mark Davison or their podcast platform partner. If you believe someone is using your copyrighted work without your permission, you can follow the process outlined here https://podcastplayer.com/legal.

Electrical monitoring and stimulation could revolutionise diagnosis and treatment for some of the most aggressive brain cancers and intractable neurological diseases.

In glioblastoma, a particularly aggressive brain tumour that is hard to treat and almost invariably fatal, the impacts of an effective treatment would be huge.

My guest in this episode, Dr Elise Jenkins, is working with a new class of therapeutic brain-computer-interface (BCI) that can measure and disrupt neural signalling within the body. With this technology she and her team are creating breakthroughs in new materials and electronics to develop safe, minimally invasive interfaces to interact with the complex biology of the brain. That will lead to earlier detection of new tumours, and could pave the way for new treatments.

Elise shares her journey from aspiring medical doctor to electrical engineer to leading a neurotechnology startup. She discusses the many difficult challenges of engineering tiny bioelectronic devices, and the importance of understanding brain activity in cancer progression for them to be a success.

We also touch on regulatory hurdles, funding strategies, and the future potential of the technology in both cancer and non-cancer applications.

Elise and her team are looking to create a new approach to healthcare which will change the lives of millions.

“We're looking at how to slow down cancer growth.” – Elise Jenkins

You’ll hear about:

01:06 - Elise Jenkins and OptoBioSystems

02:30 - Elise's Journey into Science and Engineering

05:42 - Understanding Bioelectronics and Neural Interfaces

09:01 - Exploring Glioblastoma and Its Challenges

12:18 - Measuring Brain Activity and Cancer Progression

16:30 - The Role of Implants in Cancer Treatment

19:14 - Engineering Challenges in Medical Devices

22:57 - Wireless Power and Data Transmission Innovations

25:20 - Regulatory Considerations for Medical Devices

28:14 - Future Directions and Broader Applications

33:24 - Funding and Company Development

Connect with Elise Jenkins:

LinkedIn - https://www.linkedin.com/in/elise-jenkins-/

Opto - https://www.opto.bio/

Find out about opportunities with Opto - https://www.opto.bio/team

Connect with me:

LinkedIn: https://www.linkedin.com/in/markdavison100/

If you need any lab equipment:

Grant Instruments: https://www.grantinstruments.com/

Grant Instruments on LinkedIn: https://www.linkedin.com/company/grant-instruments-cambridge-ltd/

  continue reading

Chapters

1. Therapeutic brain-computer-interfaces for glioblastoma, with Dr Elise Jenkins (00:00:00)

2. Elise Jenkins and OptoBioSystems (00:01:06)

3. Elise's Journey into Science and Engineering (00:02:30)

4. Understanding Bioelectronics and Neural Interfaces (00:05:42)

5. Exploring Glioblastoma and Its Challenges (00:09:01)

6. Measuring Brain Activity and Cancer Progression (00:12:18)

7. The Role of Implants in Cancer Treatment (00:16:30)

8. Engineering Challenges in Medical Devices (00:19:14)

9. Wireless Power and Data Transmission Innovations (00:22:57)

10. Regulatory Considerations for Medical Devices (00:25:20)

11. Future Directions and Broader Applications (00:28:14)

12. Funding and Company Development (00:33:24)

25 episodes

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