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INFO I519 Fall 2016

Fundamental Models and Algorithms in Bioinformatics

INFO I519 (= I617) Fall 2016


Time & Location:    Mon, Wed 9:30p - 10:45p (Credits: 3.0); Ballentine Hall (BH) 305;
                                 Computer Laboratory, Fri 9:30a - 10:45a; Jordan Hall (JH) 248
Instructors:    Volker Brendel (205C Simon Hall; Tel.: 855-7074); Assistant Instructor: Murat Öztürk
Email:     VB, vbrendel@indiana.edu; MÖ, muroztur@iu.edu
WWW:     http://brendelgroup.org/
Office Hours:     Mon, Wed after class and by appointment.
Grades:    will be determined as described below.
Schedule:     http://brendelgroup.org/teaching/I519F16schedule.php
Computing Resources:     You will have access to networked computer terminals during laboratory classes and will need such basic access outside of the classroom for assignments. An initial goal of the course will be to instruct you in setting up a laptop for class work and bioinformatics work in general.


btn_printerFriendly.gif version of this syllabus

Synopsis

Biology has become one of the primary application domains of computer science and informatics approaches. The term "Bioinformatics" covers a wide spectrum of data management and processing associated with large-scale, high-throughput biological data generation. This class will focus on biomolecular sequence data (DNA and protein) that underpin much of modern biology, including for example genetics; ecology, evolution, and population biology; and structural biology. Applications in medicine and biotechnology are changing our societies and world. Many of the data analysis problems in the field have been mapped to tractable mathematical models amenable to algorithmic solutions. The course will cover fundamental models and algorithms in bioinformatics, with emphasis on the general principles involved in the modeling and algorithmic approaches.

The course should be of interest to you if one or more of the following apply to you: (1) You are curious and would like to learn about a "hot topic"; (2) You want to expand your range of options for post-graduate school; (3) You want to become or stay relevant in life science research in academia or industry; (4) You are considering a high-paying job in the biotechnology sector.


Prerequisites

This class is directed primarily at first and second year graduate students in Computer Science and Informatics or Biology, although students of Mathematics, Statistics, and other fields may also find the course accessible and of interest. Although there are no formal prerequisites for the course, some basic calculus and statistics knowledge will be necessary and will be reviewed as required by students' background. Relevant biological concepts will be introduced as needed.

Some classes will be taught as a computer lab. Students will need to be or become familiar with basic computer operational skills, including some programming (scripting) language knowledge. Class messages and materials, including assignments, will be shared through our Canvas site in addition to these web pages, and students are required to regularly check these relevant communication channels.

IU is committed to Creating a Positive Environment for teaching and learning. If you have any concerns or suggestions, please let the instructor know.


Learning Goals

The course seeks to provide students with a solid foundation for understanding models and algorithms in bioinformatics and to impart the basic practical skills to work on bioinformatics projects.


Assignments

The class material will be organized into topics (chapters), each occupying several class periods and laboratory sessions. Relevant reading material will be assigned for homework study. Additional assignments will involve computational work. There will be a total of four written tests (quizzes) spread throughout the term, which are designed to provide feedback on progress towards the state learning goals. Each quiz will count a maximum of 20 points towards the grade in the class (see next section).


Grading

Grades will be based on a 100-point scale, derived as the total of the three best scores from the four quizzes and the final examination (which will count 40 points). Absences during quizzes or the final will be counted as zeros.


Text book

The class is based on a draft textbook "Fundamental Models and Algorithms in Bioinformatics", V. Brendel (Indiana University) & K. Dorman (Iowa State University). Excerpts of the draft will be made available to the students as PDFs. For practical bioinformatics skills we strongly recommend "Bioinformatics Data Skills" by Vince Buffalo (O'Reilly); topics and examples from this book will be explored in the Computer Laboratory part of the course.