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6. Multiple Logistic Regression - Reporting Your Results 

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This video is intended to help viewers get familiar with reporting the results obtained for multiple logistic regression.
This video series is all about multivariate logistic regression also known as multiple logistic regression. The previous series on logistic regression focused on simple logistic regression also known as univariate logistic regression, where we build the model based on only one predictor variable. In multiple regression, the regression model is built on multiple predictor variables. This series would help viewers to do this analysis in JASP.
The analysis shown here is done in the statistical software package - JASP
The JASP website: jasp-stats.org/
The JASP download page: jasp-stats.org/download/
The Campbell collaboration website for calculating effect sizes - www.campbellcollaboration.org...
How to download and install JASP: • 1. How to download + i...
How to convert and upload a Microsoft Excel file to JASP: • 3. How to upload a dat...
Types of data and variables: • 4. Types of data and v...
Which statistical test to use: • 5. Which statistical t...
Null and alternative hypotheses: • 6. What are null and a...
p-value and statistical significance: • 7. The p-value - trans...
Writing up the final report: • 8. Final reporting - w...
Bayesian vs. Frequentist analysis: • Introduction to Bayesi...
When should you use Bayesian analysis: • When should you use Ba...
This tutorial shows how statistical analysis can be done free of cost, by anyone, irrespective of their mathematical aptitude. These tutorials are made especially for medical students and residents or any researcher in health-care, who need data quickly analyzed, with tables, graphs, and plots conveying maximum information, and also reporting those results in a standard manner, so that writing the 'materials and methods' and 'results' section of the manuscript becomes a cake-walk.
Statistics, especially biostatistics, is an enigma all throughout undergraduate days for medical students. Applying a few formulae which didn't even make sense during a 15 minute biostatistics exam was all that was expected.
When it comes to research however, students often employ the services of a statistician to help analyze their data.
Seldom do students do statistical analyses on their own.
The following video series will help medical students to analyze their own data.
Our tool of choice is going to be JASP software, which is an excellent and free, open-source alternative to the gold-standard SPSS software, which needs users to pay to use the software - a luxury students cannot afford!
The following series is going to focus on how to use the software to do statistical analyses, quite unlike what is taught in most medical schools. I hope that this series will help medical students to take up research early on in their undergraduate days, and also analyze their own data by themselves, completely independently. I also hope that this will change the perspective of biostatistics that medical students have, which is inculcated by the syllabus studied during their MBBS days.

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5 сен 2022

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Комментарии : 6   
@savitaapte574
@savitaapte574 Год назад
Very inforvative
@suhrudp
@suhrudp Год назад
Thank you!
@planetofpharmacology2184
@planetofpharmacology2184 9 месяцев назад
Thanks But could you explain "the odds of survival decreased by 3.8% (odds ratio: 0.9)? How could we calculate the 3.8% ?
@suhrudp
@suhrudp 9 месяцев назад
Thanks for your comment! The odds ratio is 0.962. If you think about it in percentage, it's 96.2%. 100% - 96.2% = 3.8%. Hope it helps!
@planetofpharmacology2184
@planetofpharmacology2184 9 месяцев назад
God bless You 🌹
@planetofpharmacology2184
@planetofpharmacology2184 9 месяцев назад
As it is a negative correlation between age and survival, so we calculate it by subtracting 96.8% from 100% Am I correct? @@suhrudp
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