BMCB625: Difference between revisions
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'''Current tasks:''' | '''Current tasks:''' | ||
:Post your individual talk titles, bonus materials asap on the proper section in "Materials" | :Post your individual talk titles, bonus materials asap on the proper section in "[[BMCB625:Materials|Materials]]" | ||
:Send out invitations to faculty for your individual talks and post acceptance so we can get a bigger room if needed | :Send out invitations to faculty for your individual talks and post acceptance so we can get a bigger room if needed | ||
:Post your slides after you give your presentation | :Post your slides after you give your presentation |
Revision as of 16:07, 18 April 2007
Current tasks:
- Post your individual talk titles, bonus materials asap on the proper section in "Materials"
- Send out invitations to faculty for your individual talks and post acceptance so we can get a bigger room if needed
- Post your slides after you give your presentation
- New! A Course Discussion Page is ready for you to populate
Course overview
Advanced Molecular Biology: Topics and Methods in Modern Molecular Biology. An advanced graduate course with an emphasis on the latest research from the primary literature along with in-depth presentation of the basic concepts of biochemistry and molecular biology. Topics will be chosen from areas of expertise in the Biochemistry and Molecular Biology faculty. Topics will include properties of nucleotides and nucleic acids, the composition and structure of eukaryotic chromatin, eukaryotic gene expression, DNA replication, RNA transcription, RNA splicing and metabolism, and protein translation.
This class is not a faculty-driven lecture class, but is based on student presentations of background material and research papers selected from the current literature. It is designed to maximize active roles for students in each class.
Announcements
- A picture is needed for the BMB seminar series wiki banner jpg. A combo picture ala Jon Fay/Larry user page would be nice, except with a theme of molecular medicine (next year's theme) and maybe including some local color. If anyone is up to the challenge, please post an example link on your user page.
Extras
Recent updates to the course
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17 April 2024
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14:22 | BioMicroCenter:Element Sequencing 2 changes history +100 [Challee (2×)] | |||
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14:22 (cur | prev) +100 Challee talk contribs | ||||
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13:10 | BioMicroCenter:SingleCell diffhist +30 Noelani Kamelamela talk contribs (→10X CHROMIUM X) |
12:43 | BioMicroCenter diffhist −15 Noelani Kamelamela talk contribs |
16 April 2024
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N 19:59 | Nanoimprint Lithography (NIL) - Carter Paul 10 changes history +7,205 [CarterPaul (10×)] | |||
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19:59 (cur | prev) +769 CarterPaul talk contribs (→Thermal NIL Process) | ||||
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18:42 (cur | prev) +85 CarterPaul talk contribs (Created page with "{{Template:CHEM-ENG590E}} =Motivation= =Introduction to NIL= =Thermal NIL Process=") |
19:40 | Upload log CarterPaul talk contribs uploaded File:NIL1.png |
N 18:40 | 3D Cell Culture - McLean Taggart, Emma Villares, Maximillian Marek, Scott LeBlanc, Adam Lyons and Jacob Belden diffhist +24,060 CarterPaul talk contribs (Created page with "{{Template:CHEM-ENG590E}} ==Introduction== While most microfluidic devices incorporate a 2D cell culture design, in which a single layer of cells is grown on the bottom of a device, these systems suffer from poor <i>in vivo</i> mimicry, as, in the human body, most cells grow in all directions.<sup>https://doi.org/10.5114/aoms.2016.63743 1</sup> To address this limitation, 3D cell culture devices have been developed - in w...") |
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18:38 | CHEM-ENG590E:Wiki Textbook 2 changes history +63 [CarterPaul (2×)] | |||
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18:38 (cur | prev) +50 CarterPaul talk contribs (→Chapter 1 - Microfabrication) | ||||
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18:36 | 3D Cell Culture - McLean Taggart, Emma Villares, Maximillian Marek, Scott LeBlanc, and Adam Lyons diffhist +5,343 CarterPaul talk contribs (Added a Technique and applications section) |
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10:20 | Yarn Microfluidics - Roger Dirth 12 changes history +442 [Rcostello (12×)] | |||
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10:20 (cur | prev) +41 Rcostello talk contribs (→Applications) | ||||
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10:18 (cur | prev) +36 Rcostello talk contribs (→Introduction) | ||||
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10:17 (cur | prev) +38 Rcostello talk contribs (→Washburn Equation) | ||||
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10:16 (cur | prev) +38 Rcostello talk contribs (→Wicking Rate) | ||||
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10:16 (cur | prev) +37 Rcostello talk contribs (→Introduction) | ||||
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10:14 (cur | prev) +36 Rcostello talk contribs (→Introduction) | ||||
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08:18 | 3D Printed Microfluidic Robots - Helen Hua 2 changes history +6 [Michele Caggioni (2×)] | |||
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08:18 (cur | prev) +22 Michele Caggioni talk contribs (→Actuation) | ||||
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08:18 (cur | prev) −16 Michele Caggioni talk contribs (→Actuation) |
08:11 | 3D Printing Overview diffhist +422 Michele Caggioni talk contribs |
15 April 2024
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23:43 | User:Yanbin Huang 2 changes history +170 [Yanbin Huang (2×)] | |||
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23:43 (cur | prev) 0 Yanbin Huang talk contribs (→Granted Patents) | ||||
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23:43 (cur | prev) +170 Yanbin Huang talk contribs (→Granted Patents) |
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22:11 | The paper that launched microfluidics - Xi Ning 12 changes history +5,191 [Xning098 (12×)] | |||
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22:11 (cur | prev) −6 Xning098 talk contribs (→Summary) | ||||
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21:44 (cur | prev) +688 Xning098 talk contribs (→Separation and quantification) | ||||
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21:45 | (Upload log) [Xning098 (2×)] | |||
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21:45 Xning098 talk contribs uploaded File:Figure 4 Tdesign.png | ||||
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21:30 Xning098 talk contribs uploaded File:Figure 3 Set-up3.png |