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RES099 Nachwachsende Nervenzellen

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Archived series ("Inactive feed" status)

When? This feed was archived on December 04, 2022 14:03 (1+ y ago). Last successful fetch was on October 24, 2022 13:48 (1+ y ago)

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Manage episode 170567012 series 58907
Content provided by Holger Klein and Holger Klein / Helmholtz-Gemeinschaft. All podcast content including episodes, graphics, and podcast descriptions are uploaded and provided directly by Holger Klein and Holger Klein / Helmholtz-Gemeinschaft 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://player.fm/legal.
Nervenzellen
Transplantierte Nervenzellen (blau) verknüpfen sich im Mäusegehirn mit Nervenzellen des Empfängergewebes (gelb). Quelle: Sofia Grade (LMU/Helmholtz-Zentrum München)

Magdalena Götz ist Direktorin für Stammzellenforschung am Helmholtz-Zentrum München und Leiterin des Lehrstuhls für physiologische Genomik an der LMU. Im Jahr 2000 hat sie entdeckt, dass Nervenzellen sich aus Gliazellen bilden. Mittlerweile forscht sie daran, wie man zerstörte Nervenzellen wieder wachsen lassen kann.

Darin: Neurophysiologie, DNA, Entwicklungsbiologie, Transkriptionsfaktoren, Ionenkanäle, Pluripotente Stammzellen, Rückenmark, Myelin, Polyneuropathie, Parkinson, Dopamin, Shin’ya Yamanaka, Virale Vektoren, Großhirnrinde, Leukämie, Sehrinde, Bewusstsein, Herbarium, Vesikel, Proteine.

Download: mp3 (33 MB) m4a (27 MB) opus (17 MB)

Veröffentlicht am 20.01.2017
Dauer: 1 Stunde 12 Minuten
Lizenz: CC-BY 4.0
Downloads: 38.420

Mehr zum Thema:
98 Gliazellen und Alphamännchen

Themen: HMGU Gehirn Genetik DNA Medizin

Diese Folge zitieren: Holger Klein/Helmholtz-Gemeinschaft: Resonator-Podcast: "99 Nachwachsende Nervenzellen". 20.01.2017, https://resonator-podcast.de/2017/res099-nachwachsende-nervenzellen/ (CC-BY 4.0)

Impressum | Datenschutz

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  continue reading

Chapters

1. Musik (00:00:00)

2. Begrüssung (00:00:26)

3. Gene ablesen (00:01:52)

4. Woraus das Gehirn besteht (00:08:08)

5. Nervenzellen ersetzen (00:15:33)

6. Stammzellen kultivieren (00:23:22)

7. Paradigmenwechsel (00:35:37)

8. Preise (00:43:54)

9. Klinische Versuche (00:47:50)

10. Was wir über das Gehirn wissen (00:54:40)

11. Wandern und Kinder (01:00:04)

12. Lehre (01:03:40)

190 episodes

Artwork

RES099 Nachwachsende Nervenzellen

Resonator

47 subscribers

published

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Archived series ("Inactive feed" status)

When? This feed was archived on December 04, 2022 14:03 (1+ y ago). Last successful fetch was on October 24, 2022 13:48 (1+ y ago)

Why? Inactive feed status. Our servers were unable to retrieve a valid podcast feed for a sustained period.

What now? You might be able to find a more up-to-date version using the search function. This series will no longer be checked for updates. If you believe this to be in error, please check if the publisher's feed link below is valid and contact support to request the feed be restored or if you have any other concerns about this.

Manage episode 170567012 series 58907
Content provided by Holger Klein and Holger Klein / Helmholtz-Gemeinschaft. All podcast content including episodes, graphics, and podcast descriptions are uploaded and provided directly by Holger Klein and Holger Klein / Helmholtz-Gemeinschaft 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://player.fm/legal.
Nervenzellen
Transplantierte Nervenzellen (blau) verknüpfen sich im Mäusegehirn mit Nervenzellen des Empfängergewebes (gelb). Quelle: Sofia Grade (LMU/Helmholtz-Zentrum München)

Magdalena Götz ist Direktorin für Stammzellenforschung am Helmholtz-Zentrum München und Leiterin des Lehrstuhls für physiologische Genomik an der LMU. Im Jahr 2000 hat sie entdeckt, dass Nervenzellen sich aus Gliazellen bilden. Mittlerweile forscht sie daran, wie man zerstörte Nervenzellen wieder wachsen lassen kann.

Darin: Neurophysiologie, DNA, Entwicklungsbiologie, Transkriptionsfaktoren, Ionenkanäle, Pluripotente Stammzellen, Rückenmark, Myelin, Polyneuropathie, Parkinson, Dopamin, Shin’ya Yamanaka, Virale Vektoren, Großhirnrinde, Leukämie, Sehrinde, Bewusstsein, Herbarium, Vesikel, Proteine.

Download: mp3 (33 MB) m4a (27 MB) opus (17 MB)

Veröffentlicht am 20.01.2017
Dauer: 1 Stunde 12 Minuten
Lizenz: CC-BY 4.0
Downloads: 38.420

Mehr zum Thema:
98 Gliazellen und Alphamännchen

Themen: HMGU Gehirn Genetik DNA Medizin

Diese Folge zitieren: Holger Klein/Helmholtz-Gemeinschaft: Resonator-Podcast: "99 Nachwachsende Nervenzellen". 20.01.2017, https://resonator-podcast.de/2017/res099-nachwachsende-nervenzellen/ (CC-BY 4.0)

Impressum | Datenschutz

window.podcastData07dacb12c69240 = {"title":"Resonator","subtitle":"Der Forschungspodcast der Helmholtz-Gemeinschaft - mit Holger Klein","description":"Eine Sammlung von Gespr\u00e4chen \u00fcber Wissenschaft, Wissenschaftler*innen und Forschung.","cover":"https:\/\/resonator-podcast.de\/podlove\/image\/68747470733a2f2f7265736f6e61746f722d706f64636173742e64652f77702d636f6e74656e742f75706c6f6164732f323032322f30342f32325f485f5265736f6e61746f725f426f785f3330303070782d333030783330302e706e67\/400\/0\/0\/resonator","feeds":[{"type":"audio","format":"mp3","url":"https:\/\/resonator-podcast.de\/feed\/mp3\/","variant":"high","directory-url-itunes":"https:\/\/podcasts.apple.com\/podcast\/id641501347"},{"type":"audio","format":"aac","url":"https:\/\/resonator-podcast.de\/feed\/m4a\/","variant":"high","directory-url-itunes":"https:\/\/podcasts.apple.com\/podcast\/id641501347"},{"type":"audio","format":"opus","url":"https:\/\/resonator-podcast.de\/feed\/opus\/","variant":"high","directory-url-itunes":"https:\/\/podcasts.apple.com\/podcast\/id641501347"}]}; if (typeof SubscribeButton == 'undefined') { document.write(unescape("%3Cscript class=\"podlove-subscribe-button\" src=\"https://resonator-podcast.de/wp-content/plugins/podlove-podcasting-plugin-for-wordpress/lib/modules/subscribe_button/dist/javascripts/app.js\" data-json-data=\"podcastData07dacb12c69240\" data-language=\"de\" data-size=\"big\" data-format=\"rectangle\" data-style=\"outline\" data-color=\"#00477b\"> %3E%3C/script%3E")); // hide uninitialized button window.setTimeout(function() { iframes = document.querySelectorAll('.podlove-subscribe-button-iframe') for (i = 0; i < iframes.length; ++i) { if (!iframes[i].style.width && !iframes[i].style.height) { iframes[i].style.display = 'none'; } } }, 5000); }
  continue reading

Chapters

1. Musik (00:00:00)

2. Begrüssung (00:00:26)

3. Gene ablesen (00:01:52)

4. Woraus das Gehirn besteht (00:08:08)

5. Nervenzellen ersetzen (00:15:33)

6. Stammzellen kultivieren (00:23:22)

7. Paradigmenwechsel (00:35:37)

8. Preise (00:43:54)

9. Klinische Versuche (00:47:50)

10. Was wir über das Gehirn wissen (00:54:40)

11. Wandern und Kinder (01:00:04)

12. Lehre (01:03:40)

190 episodes

All episodes

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