Outils pour utilisateurs

Outils du site


pages:norae:biologicus:biohacking

Différences

Ci-dessous, les différences entre deux révisions de la page.

Lien vers cette vue comparative

Prochaine révision
Révision précédente
pages:norae:biologicus:biohacking [2021/08/06 11:05] – - Imported by DokuWiki Advanced Plugin xavccpages:norae:biologicus:biohacking [2022/06/27 12:28] (Version actuelle) – [Analyses génétiques] ajout de nouvelle page de notes xavcc
Ligne 27: Ligne 27:
  
   * Note 1 [[note_technique_pour_culture_anaérobies_facultative|Pour les les anaérobies facultatives]]   * Note 1 [[note_technique_pour_culture_anaérobies_facultative|Pour les les anaérobies facultatives]]
-  * Biblio {{pavillon_35_recipe_1_yeast_print_s_1_.pdf|This recipe shows a method to cultivate baker’s yeast and to shape the cultivation according to aesthetic and artistic decisions.}}+  * Biblio {{norae:biologicus:pavillon_35_recipe_1_yeast_print_s_1_.pdf|This recipe shows a method to cultivate baker’s yeast and to shape the cultivation according to aesthetic and artistic decisions.}}
  
 ==== Électrophorèse sur papier ==== ==== Électrophorèse sur papier ====
Ligne 37: Ligne 37:
  
     * Note n°1 : [[biohacking_note-protocole-analyses-gmo-1|notes et Analyse sur les OGM]]     * Note n°1 : [[biohacking_note-protocole-analyses-gmo-1|notes et Analyse sur les OGM]]
 +    * Note n°2 : [[biohacking_ADN_arabidopsis_exon_1pb|Le mystérieux A de l'Arabidopsis Thaliana]]
  
 === Sols et bactéries === === Sols et bactéries ===
Ligne 56: Ligne 57:
 ===== Déformulation ===== ===== Déformulation =====
  
-  * Note 1 : [[biohacking_note-reformulation|Débuter sur les pratiques de déformulation]]+  * Note 1 : //tbd// Débuter sur les pratiques de déformulation
  
 ===== BioinfoSec ===== ===== BioinfoSec =====
Ligne 76: Ligne 77:
 Open Source Estrogen combines #biohacking and speculative #design to demonstrate the entrenched ways in which estrogen is a biomolecule with institutional biopower. It is a form of biotechnical civil disobedience, seeking to subvert dominant biopolitical agents of hormonal management, knowledge production, and anthropogenic toxicity. Open Source Estrogen combines #biohacking and speculative #design to demonstrate the entrenched ways in which estrogen is a biomolecule with institutional biopower. It is a form of biotechnical civil disobedience, seeking to subvert dominant biopolitical agents of hormonal management, knowledge production, and anthropogenic toxicity.
  
-  * {{creating-critical-thinkers-through-civic-science-.pdf|Biohacking (DIY-Bio):Creating critical thinkers through civic science}}+  * {{norae:biologicus:creating-critical-thinkers-through-civic-science-.pdf|Biohacking (DIY-Bio):Creating critical thinkers through civic science}}
  
 ===== Microfluidics ===== ===== Microfluidics =====
  
-  * {{lowtech_microfluidics.pdf|Lowtech Microfluidics}} +  * {{norae:biologicus:lowtech_microfluidics.pdf|Lowtech Microfluidics}} 
-  * {{biologie-prgramme-shaketswan.pdf|Homemade Microfluidics using adhesive tape}} +  * {{norae:biologicus:{biologie-prgramme-shaketswan.pdf|Homemade Microfluidics using adhesive tape}} 
-  * {{lowtech_microfluidics.pdf|piis016777991730001x.pdf}} +  * {{norae:biologicus:lowtech_microfluidics.pdf|piis016777991730001x.pdf}} 
-  * {{pbio.1002110.pdf|A Biotic Game Design Project for IntegratedLife Science and Engineering Education}} +  * {{norae:biologicus:pbio.1002110.pdf|A Biotic Game Design Project for IntegratedLife Science and Engineering Education}} 
-  * {{micro-fluidics_logic_gates.pdf|Microfluidic logic gates and timers}} +  * {{norae:biologicus:micro-fluidics_logic_gates.pdf|Microfluidic logic gates and timers}} 
-  * {{advs.201903027.pdf|Pressure-Driven Two-Input 3D Microfluidic Logic Gates}} +  * {{norae:biologicus:advs.201903027.pdf|Pressure-Driven Two-Input 3D Microfluidic Logic Gates}} 
-  * {{micromachines-11-00479-v2_1_.pdf|Hydrogel Patterns in Microfluidic Devices byDo-It-Yourself UV-Photolithography Suitablefor Very Large-Scale Integration}} +  * {{norae:biologicus:micromachines-11-00479-v2_1_.pdf|Hydrogel Patterns in Microfluidic Devices byDo-It-Yourself UV-Photolithography Suitablefor Very Large-Scale Integration}} 
-  * {{prakash_1_2_.pdf|Microfluidic Bubble Logic}} Manu Prakash, Massachusetts Institute of Technology +  * {{norae:biologicus:prakash_1_2_.pdf|Microfluidic Bubble Logic}} Manu Prakash, Massachusetts Institute of Technology 
-  * {{adma.200601818.pdf|Rapid Prototyping in Copper Substrates for Digital Microfluidics}} +  * {{norae:biologicus:adma.200601818.pdf|Rapid Prototyping in Copper Substrates for Digital Microfluidics}} 
-  * {{paper5.pdf|Solvent Compatibility ofPoly(dimethylsiloxane)-Based Microfluidic Devices}}+  * {{norae:biologicus:paper5.pdf|Solvent Compatibility ofPoly(dimethylsiloxane)-Based Microfluidic Devices}}
  
 ===== Safety ===== ===== Safety =====
  
-  * {{embr.202152506.pdf|Biosafety in DIY-bio laboratories: from hype to policy}}+  * {{norae:biologicus:embr.202152506.pdf|Biosafety in DIY-bio laboratories: from hype to policy}}
  
  
pages/norae/biologicus/biohacking.1628247941.txt.gz · Dernière modification : 2021/08/06 11:05 de xavcc