BME100 f2014:Group16 L5: Difference between revisions

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'''Representative Images of Negative and Positive Samples'''
'''Representative Images of Negative and Positive Samples'''
<!-- INSTRUCTIONS: (1) Show ONE image where you drew a circle around the droplet with the freehand tool for any sample with *no* DNA. (2) Show ONE image where you drew a circle around the droplet with the freehand tool for a sample *with* DNA (positive signal). -If you include more than two images, you will not receive any additional credit. -->
<!-- INSTRUCTIONS: (1) Show ONE image where you drew a circle around the droplet with the freehand tool for any sample with *no* DNA. (2) Show ONE image where you drew a circle around the droplet with the freehand tool for a sample *with* DNA (positive signal). -If you include more than two images, you will not receive any additional credit. -->
| [[Image:BME103student.jpg|100px|thumb|Name: student]]
| [[Image:BME103student.jpg|100px|thumb|Name: student]]





Revision as of 05:10, 30 October 2014

BME 100 Fall 2014 Home
People
Lab Write-Up 1 | Lab Write-Up 2 | Lab Write-Up 3
Lab Write-Up 4 | Lab Write-Up 5 | Lab Write-Up 6
Course Logistics For Instructors
Photos
Wiki Editing Help


OUR TEAM

Name: Christopher Saar
Protocol editer
image Source:smashbroslawlorigins.wikia.com
Name: Gurpaul Sidhu
Role(s): Wiki editor, researcher
Picture Source:www. shadyrecords.com/wp-content/uploads/2013/01/royce.jpg
Name: Emily Angeles Mancinas
Role: assistant
Picture Source:http://wallpaperswa.com
Name: Sheania Morgan
Roles: Conductor of experiment
image source: http://www.iemoji.com/view/emoji/814/places/moyai
Name: student
Name: Romann Arizmendi
Assistant


LAB 5 WRITE-UP

Procedure

Smart Phone Camera Settings

  • Type of Smartphone:
    • Flash: NO Flash
    • ISO setting:800
    • White Balance: Auto
    • Exposure: Zero
    • Saturation:Standard
    • Contrast:Auto


Calibration

  • Distance between the smart phone cradle and drop = 6.5 cm


Solutions Used for Calibration

Init. Conc. 2X Calf Thymus DNA (micrograms/mL) Vol. 2X DNA solution (micro-mL) Vol. SYBR GREEN 1 DYE (micro-mL) Final DNA Concentration STBR GREEN 1 Solution (Micrograms/mL)
5 80 80 row 2 cell 4
2 80 80 row 3 cell 4
1 80 80 row 1 cell 4
0.5 80 80 row 2 cell 4
0.25 80 80 row 3 cell 4
0 80 80 row 3 cell 4


Placing Samples onto the Fluorimeter

  1. Place fluorimeter on the table
  2. Place slide in the fluorimeter with the smooth side down hydrophobic side up
  3. Adjust slide to the light shines between the dots on the slide
  4. Place 80 micro-mL of SYBR green 1 on slide between the middle dots
  5. Place 80 micro-mL of calibration on the sphere you already placed to a 160 micro-mL shpere
  6. Adjust the shpere placement for the light and phone distance in the holder
  7. Record Iphone distance
  8. Cover the assembly and make small adjustments
  9. Take a photo on delay and cover
  10. Send photo to be recorded for ImageJ analysis
  11. Remove the 160 micro-mL
  12. Discard the slide
  13. Repeat steps 1-12



Data Analysis

Representative Images of Negative and Positive Samples

Name: student
Name: student


Image J Values for All Calibrator Samples

EXCEL Table1 RAW DATA

Final DNA Concentration in SYBR Green 1 solution (microgram/mL) Area Mean Pixel Value RAWINTDEN OF THE DROP RAWINTDEN OF THE BACKGROUND
0 Cell Cell Cell Cell
0.25 Cell Cell Cell Cell
0.5 Cell Cell Cell Cell
1 Cell Cell Cell Cell
2 Cell Cell Cell Cell
N Cell Cell Cell Cell
P Cell Cell Cell Cell
1.1 Cell Cell Cell Cell
1.2 Cell Cell Cell Cell
1.3 Cell Cell Cell Cell
2.1 Cell Cell Cell Cell
2.2 Cell Cell Cell Cell
2.3 Cell Cell Cell Cell


EXCEL Table 2 Edited to included background-subtractions

Final DNA Concentration in SYBR Green 1 solution (microgram/mL) Area Mean Pixel Value RAWINTDEN OF THE DROP RAWINTDEN OF THE BACKGROUND RAWINTDEN-DROP Background
Cell Cell Cell Cell Cell Cell
Cell Cell Cell Cell Cell Cell
Cell Cell Cell Cell Cell Cell
Cell Cell Cell Cell Cell Cell
Cell Cell Cell Cell Cell Cell
Cell Cell Cell Cell Cell Cell

Calibration curve


PCR Results Summary

  • Our positive control PCR result was ____ μg/mL
  • Our negative control PCR result was ____ μg/mL

Observed results

  • Patient _____ :
  • Patient _____ :

Conclusions

  • Patient _____ :
  • Patient _____ :




SNP Information & Primer Design

Background: About the Disease SNP


Primer Design and Testing