Glass slide Micropipettes Starting Materials Cut along dotted traces Plexiglas square (1.1” x 1.1”) 0.2” Interface reservoir sleeves Drummond 1-5-µL micropipette:

Slides:



Advertisements
Similar presentations
Tessellations……… Creating Tiles that Tessellate.
Advertisements

Canon 6000 series When taking cartridge out of the printer, make sure to seal the ink outlet with Scotch tape before refilling the ink. Step 1 Step 2 Make.
Step-by-step assembly instructions
RockOn! Canister Integration RockOn! 2009.
Click on this image to open the full PDF document.
Machining a V-Block Flexible Manufacturing Copyright © Texas Education Agency, All rights reserved. 1.
BUNNY LANTERN. Place BACK of envelope on table in front of you, with flap up and open.
The Glue Method. 1. Take a clean slide and carefully place a coverslip at one end of it.
Method to fix wall tiles. Preparation All wall tiles to be immersed in water for 3-4 hours for better results. Some gap in between the rows to allow the.
Manufacturing Processes lab I Milling Machine- 2
Using a Microscope to View Cells
Spiral Stairs Assembly Instruction By Laser Dollhouse Designs
The Little Nikki Assembly Instruction By Laser Dollhouse Designs.
Hydraulic Digger Step-by-step assembly instructions (c) 2013 Mechanical Kits Ltd.1.
Lone Star Region National Model Railroad Association “The Shack” Scratch Build -Mike Jobe.
Pneumatic Arm Assembly Instructions
Coin Drop Lab.
SEACORK INSTALLATION ON A CATAMARAN The first step is to make templates of all corner pieces to be cut from sheet material, which will be used for border.
Pneumatic Arm Assembly Instructions. Contents of Pneumatic Arm Kit Wooden pieces (⅜” cross-section): 1 X 24”; 1 X 21⅛”; 8 X 7½”; 4 X 7⅛”; 4 X 7”; 2 X.
Manufacturing Assembly Plan P Mechanical Spine Test Platform.
TOOL: Radial Arm Saw NEXT STEP: Radial Arm Saw RESULTS: Finish Top Apron Pieces at 9” L x 4” W x ¾ “ Th PROJECT Square Plant Stand PART Top Apron # NEEDED.
Hand-cranked Windmill Assembly Instructions copyright Mechanical Kits Ltd
Hydro-Electric Generator Manual Group number 403 Dan KJ Daewoo JT Group number 403 Dan KJ Daewoo JT.
Rotating Base Model Assembly Instructions copyright Mechanical Kits Ltd
PLAN #PartProcessTools and equipmentQuality controlSafety *Aprons must be worn is ALL stages of manufacture Tim e 1 MDF base Mark out on MDF piece Pencil,
Day and Night by M.C. Escher
COLORS OF THE SUN Spectroscopy Activity
Column Chromatography
 Straight line cuts  Rectangular work pieces  Boring/Radial Cuts  Axisymmetric work pieces.
Rut ‘n’ Strut Game Calls How I turn a Pot Call. Select wood that you want to use to turn Pot Calls out of, Rip it 4” wide and then Crosscut into 4” X.
Step-by-step assembly instructions
Agriscience Toolbox Plan of Procedure 1. Table Saw (equipment) Rip the bottom of the toolbox to a width of 10 inches.
Microscope Lab. Mrs. Orwar’s sure fire way to find an image every time! 1.Start on low power (red objective) 2.Place your slide centered over the light.
Lifter Step-by-step assembly instructions (c) 2010 National Fluid Power Association.
Design Studies 20 ‘Show Off’ Project How to make a computer monitor In Google Sketchup By: Liam Jack.
Decorated Coasters NOISE LEVEL 1 Materials  Ruler  Pencil  fine tip marker  Felt/cork  scrapbook paper  8 tiles per rotation  Modge Podge  Foil/wax.
Levers & Fluids Rig Step-by-step assembly instructions (c) 2012 Mechanical Kits Ltd.
Chapter 7 Osmosis lab. Materials red onion forceps metric ruler Scissors paper towel iodine solution microscope slide coverslip dissecting probe microscope.
Setting up correctly Different types and their use
Gingerbread House Construction Instructions graham crackers 2.Knife 3.Cutting board 4.Hot glue gun 5.Base for house (paper plate)
Square Plant Stand. TOOL: Radial Arm Saw NEXT STEP: Surface Planer RESULTS: Rough size pieces for 4 Legs. 33” long PROJECT Square Plant Stand PART Legs.
1) Place the open napkin in front of you 2) Fold the four corners into the middle of the napkin 3) Repeat the process a second time. 4) Turn the napkin.
How to Make an Origami Jumping Frog. This amazing origami frog really jumps! When you're done making this amazing frog, you can have a frog jumping contest.
IRRIGATION SYSTEMS. OBJECTIVES 1. Describe irrigation & its purpose 2. Explain preparation for irrigation systems 3. Calculate GPM 4. Identify & explain.
1. Swab throat. 5. Read Results Positive = 2 lines. Strep A Rapid Test Strip Procedure For details, consult Lab Manual located at: P:\Clinical\Lab Manual.
Modeling Land Features EQ: Why does the surface of the Earth change? Starter: If I wanted to go camping, why would a map that shows land features be more.
Procedure for making a wet mount
Preparing Wet Mount Slides
Board Replacement for Engineered Glue-Down Pattern Plus with a Premier Performance replacement board.
BORDER SEAL After finish the festooning of all polished surfaces and carving of the cast in the post dam area. Now the next step is to do border seal.
Hand-cranked Windmill Assembly Instructions
Step-by-step assembly instructions
Step-by-step assembly instructions
Hot-Air Balloons.
Excel Basic Operation Manual
Origami & Kirigami “3-D Tactile Geometry”.
Step-by-step assembly instructions
Step-by-step assembly instructions
Step-by-step assembly instructions
Hydraulic Arm Assembly Instructions
Shaw Survey Shaw STEM Lab
Mitsy Kit Instructions and Tips
DISSECTION GUIDE Use forceps to catch a termite around the head, being careful not to squeeze the abdomen, and place the termite in 0.85% saline on the.
Step-by-step assembly instructions
Space and Shape.
How to Use a Protractor.
Step-by-Step Assembly Instructions – Cube Version
Star Life Cycle Accordion Book
Step-by-step assembly instructions
Step-by-step assembly instructions
Presentation transcript:

Glass slide Micropipettes Starting Materials Cut along dotted traces Plexiglas square (1.1” x 1.1”) 0.2” Interface reservoir sleeves Drummond 1-5-µL micropipette: OD = 0.042” Drill head = 0.046” (Lot# ) Separation capillary sleeves (Outer capillary sleeves) Drummond microcap: OD = 0.034” Drill head = 0.037” (Lot#205309) UV glue + UV lamp Epoxy glue 365-µm OD capillary (Inner capillary sleeves)

A cross is formed in the Plexiglas square using the flat-head drills with the lathe machine. If you don’t know how to use the machine, ask for assistance from someone in the lab or one of the machinists. Machining the Cross Overhead view Side view 1 Side view ” 0.037” 0.046”

Microcap sleeves Micropipette sleeves Add a drop of UV glue to the outer ends of channels 1 and 3 and allow the glue to traverse down the channel. Be sure not to add too much glue. Carefully place the microcap sleeves in the channels. At the same time, thread the 365-µm OD capillary through both sleeves to ensure alignment. These channels are used for the separation capillaries. Observe the flow of glue under a microscope. Anneal when the UV glue reaches close to the center of the cross. Remove the 365-µm OD capillary. Repeat the same procedure for channels 2 and 4 using the micropipette sleeves. These channels are used to connect the interface with a reservoir

Place the glass square corner cut from the microscope slide on the center of the cross. This will be used to seal the interface. Add a small drop of UV glue to one corner of the glass square as shown above. Allow the glue to move to each edge through capillary action without leaking into the channels. Anneal when the glue fills the pink area. Repeat this step with all four corners.

Now the channels must be sealed with UV glue. Place some glue at the edge of the glass square where it meets with one of the channels. Capillary action will cause the glue to flow down the channel. Carefully watch the flow under a microscope and anneal just as the glue reaches the end of the channel. Repeat this step for the 3 remaining channels. At this point, the interface should be sealed except for flow within the sleeves.

The 365-µm OD capillary will be used as the inner capillary sleeve residing within the microcap outer capillary sleeves (channels 1 and3). First cut the capillary into two pieces having roughly 4-5-cm long. Remove the polyimide coat at the tip of each sleeve; insert this end into the outer sleeve while using epoxy glue on the outer surface area of the capillary sleeve. Do this for the other side as shown above. Give time to allow epoxy to dry. The final step is to epoxy the separation capillaries within the inner capillary sleeves. The alignment must be done under a microscope. As the epoxy is drying, you can manually rotate the separation capillaries on each side to fine the best alignment but you only have 5 minutes or so. With separation capillaries