Career Details
15-2051.02 - Clinical Data Managers
Apply knowledge of health care and database management to analyze clinical data, and to identify and report trends.
Key Facts

Tasks

Core
- Read technical literature and participate in continuing education or professional associations to maintain awareness of current database technology and best practices.
- Prepare appropriate formatting to data sets as requested.
- Evaluate processes and technologies, and suggest revisions to increase productivity and efficiency.
- Develop technical specifications for data management programming and communicate needs to information technology staff.
- Contribute to the compilation, organization, and production of protocols, clinical study reports, regulatory submissions, or other controlled documentation.
- Write work instruction manuals, data capture guidelines, or standard operating procedures.
- Track the flow of work forms, including in-house data flow or electronic forms transfer.
- Train staff on technical procedures or software program usage.
- Supervise the work of data management project staff.
- Prepare data analysis listings and activity, performance, or progress reports.
- Perform quality control audits to ensure accuracy, completeness, or proper usage of clinical systems and data.
- Monitor work productivity or quality to ensure compliance with standard operating procedures.
- Generate data queries, based on validation checks or errors and omissions identified during data entry, to resolve identified problems.
- Design and validate clinical databases, including designing or testing logic checks.
- Confer with end users to define or implement clinical system requirements such as data release formats, delivery schedules, and testing protocols.
- Analyze clinical data using appropriate statistical tools.
- Process clinical data, including receipt, entry, verification, or filing of information.
- Develop project-specific data management plans that address areas such as coding, reporting, or transfer of data, database locks, and work flow processes.
- Design forms for receiving, processing, or tracking data.
Supplemental
- Provide support and information to functional areas such as marketing, clinical monitoring, and medical affairs.
- Develop or select specific software programs for various research scenarios.
Knowledge

- 82%Knowledge of the structure and content of the English language including the meaning and spelling of words, rules of composition, and grammar.
- 79%Knowledge of circuit boards, processors, chips, electronic equipment, and computer hardware and software, including applications and programming.
- 74%Knowledge of principles and processes for providing customer and personal services. This includes customer needs assessment, meeting quality standards for services, and evaluation of customer satisfaction.
- 64%Knowledge of arithmetic, algebra, geometry, calculus, statistics, and their applications.
- 61%Knowledge of the information and techniques needed to diagnose and treat human injuries, diseases, and deformities. This includes symptoms, treatment alternatives, drug properties and interactions, and preventive health-care measures.
- 59%Knowledge of business and management principles involved in strategic planning, resource allocation, human resources modeling, leadership technique, production methods, and coordination of people and resources.
- 55%Knowledge of administrative and clerical procedures and systems such as word processing, managing files and records, stenography and transcription, designing forms, and other office procedures and terminology.
- 55%Knowledge of principles and methods for curriculum and training design, teaching and instruction for individuals and groups, and the measurement of training effects.
- 55%Knowledge of plant and animal organisms, their tissues, cells, functions, interdependencies, and interactions with each other and the environment.
- 51%Knowledge of laws, legal codes, court procedures, precedents, government regulations, executive orders, agency rules, and the democratic political process.
Tools

- Handheld computers
- Laptop computers
- Smartphones
Technology

- 5AM Glassbox Translational Research
- Autocoders
- ClearTrial
- Clinical trial management software
- Drug coding software
- DZS Software Solutions ClinPlus
- ePharmaSolutions eMVR
- Fortress Medical Clindex
- InforSense InforSense
- Invivo Data EPX ePRO Management System
- KIKA Veracity
- Merge Healthcare eTrials
- Microsoft AccessHOT
- Microsoft SQL ServerHOT
- OpenClinica
- Oracle Clinical
- Oracle SQL Loader
- Patient tracking software
- PercipEnz Technologies OnCore-Clinical Research Management OnCore-CRM
- Phase Forward Clintrial
- PPD eLoader
- Relational database management softwareHOT
- Relational database software
- SAP BusinessObjects Crystal Reports
- SAP Crystal ReportsHOT
- Sierra Scientific Software CRIS
- StudyManager Sponsor Edition
- SyMetric Sciences SyMetric
- Teradata DatabaseHOT
- TOPAZ Enterprise Software Suite
- Allscripts
- Electronic data capture EDC software
- Epic SystemsHOT
- IBM SPSS StatisticsHOT
- MEDITECH softwareHOT
- Oracle Remote Data Capture
- SASHOT
- SAS JMP
- C#HOT
- C++HOT
- Extensible markup language XMLHOT
- GoHOT
- Microsoft Visual BasicHOT
- Oracle JavaHOT
- CitrixHOT
- Microsoft ExcelHOT
- Microsoft PowerPointHOT
- Microsoft VisioHOT
- Microsoft WordHOT
- Word processing software
- Microsoft OfficeHOT
- Microsoft ProjectHOT
- Project management software
Certifications

Licensing

Related Programs

Clicking on the Degree programs in the list below will take you away from the Careers page.
The Bachelor of Professional Studies (BPS) in Cybersecurity degree program provides combines highly technical, hands-on curriculum in labs and virtual environments with invaluable collaboration with government agencies, private companies and the military experts fighting every day on cyberspace’s front lines.
The Computer Information Systems (CIS) degree at JMU prepares students for professional careers that require both the business knowledge and the technical skills to help clients design, build and deliver competitive computer-based solutions. Computer and information systems managers play a vital role in the technological direction of their organizations and must stay abreast of the latest technology to ensure the organization does not lag behind its competitors.
JMU's CIS program was recognized as one of the top ten undergraduate information technology programs in the United States (TechRepublic, 2008) and is part of the nationally recognized JMU College of Business. Professors in the program use a variety of teaching methods including projects, cases and business simulations to prepare graduates with strong technical, analytical, and problem-solving skills; effective communication and presentation skills; hands-on experience; and the ability to work effectively in individual and team-oriented environments.
Several features of JMU's CIS program are distinctive:
- Outstanding placement of graduates: the JMU CIS program is viewed as a prime recruiting school by many leading employers throughout the mid-Atlantic region.
- Course work in a variety of specialties.
- Business intelligence
- Business process management
- Computer forensics
- Computer security management
- Information technology consulting
- Information technology project management
- Excellent opportunities for internships and job-related work experience through JMU's Handshake program and an active JMU CIS alumni network of over 3,100 graduates.
- Active student chapter of the Association of Information Technology Professionals (AITP): Students regularly compete in the National Collegiate Conference, network with industry professionals, engage in service-learning projects, and expand their leadership skills by serving as chapter leaders.
The major puts students in the middle of the exploding information revolution where they study technological advances such as object-oriented software, communication networks, multimedia systems, information security and artificial intelligence. Students will learn about computing technologies used by today’s professionals and how to use these technologies to solve real-world problems. Students will learn to analyze problems, design solutions, implement solutions using multiple computing technologies, test and install those solutions, and communicate those solutions to others in written and verbal presentations.
The Bachelor of Science degree in Information Technology focuses on highly relevant skills in cybersecurity, computer networking, and end-user design and development. The Information Technology degree goes beyond the science behind computers, teaching students how to design, develop, test and maintain solutions in a wide range of computing and networking application areas.
Information Technology studies are integrated to provide students with the knowledge and skills to meet the computer technology needs of business, government, healthcare, education and other organizations. In addition to core competencies in programming and networking, security and privacy, and other application-focused computing fields, the Information Technology major features a junior-level project to address a community need. Also, students in the Information Technology major are required to complete a two-semester senior capstone project, allowing them to apply the range of their abilities in a real-world context. Students in the Information Technology major are also required to select 9 credit hours of IT senior class electives from various fields such as cyber-security, web/mobile development and computer networking.
As a Mathematics major, students will gain an increased understanding and appreciation for math as a universal language. Students can expect to use and build on skills such as thinking critically, formulating and solving problems and communicating solutions. Students will increase their ability to prove theorems, understand complex structure, and apply mathematics and statistics in many real-world settings. The program students choose will make it possible for them to acquire strong preparation for graduate work or for professional applications in mathematics and statistics, teaching, natural and social sciences or other technical areas.
There will also be opportunities for students to experience the challenge and rewards of faculty-mentored research. Students are strongly encouraged to participate in the numerous undergraduate research opportunities as well as individual and small group projects available in the department. Opportunities exist through the Center for Mathematical Modeling, the Office of Statistical Services, honors theses, and independent studies with individual faculty mentors.
As a quantitative finance major (QFIN), your course of study will result in a B.S. degree with minors in economics and math (or a double major with math) rather than a B.B.A.
This major is a highly structured program and you must begin your mathematics courses in your freshman year in order to progress through the major in a timely manner. The required major coursework provides you with the foundation and tools for a variety of financial situations and problem solving, while electives permit you to emphasize economics, mathematics, statistics or finance.
The Statistics major is designed for students who have an interest in the mathematics of statistics or plan to go to graduate school in statistics. Students choose one of two tracks: applied statistics and mathematical statistics. This major emphasizes probability and the theory of statistics and provides opportunities for additional study in applied and theoretical statistics as well as mathematics. Students are encouraged to take elective courses offered by the department that will prepare them for graduate studies.
If students are interested in the applications of statistics and they are planning to seek employment upon graduation as a practicing statistician, they are advised to choose the applied statistics track. Emphasis in this track is on the applications of statistics to various fields of study. Students will take courses on the design and analysis of experiments, regression analysis and sample surveys, as well as other courses in applied and theoretical statistics, probability and mathematics. Students who choose the applied statistics track are encouraged to take as many elective courses as possible in applied fields of their choice.
As a Mathematics major, students will gain an increased understanding and appreciation for math as a universal language. Students can expect to use and build on skills such as thinking critically, formulating and solving problems and communicating solutions. Students will increase their ability to prove theorems, understand complex structure, and apply mathematics and statistics in many real-world settings. The program students choose will make it possible for them to acquire strong preparation for graduate work or for professional applications in mathematics and statistics, teaching, natural and social sciences or other technical areas.
There will also be opportunities for students to experience the challenge and rewards of faculty-mentored research. Students are strongly encouraged to participate in the numerous undergraduate research opportunities as well as individual and small group projects available in the department. Opportunities exist through the Center for Mathematical Modeling, the Office of Statistical Services, honors theses, and independent studies with individual faculty mentors.
Purpose: The curriculum is designed primarily for students who wish to transfer to a four-year college or university to complete a baccalaureate degree in computer science. The curriculum emphasizes the study of the science of computing and the use of computing in a scientific setting.
Purpose: This curriculum is designed to prepare individuals to work with young children in safe and healthy environments that are supportive of children's individual physical, cognitive, and social-emotional development. Job opportunities include employment as assistant teachers, teachers, group leaders, or family child care providers in programs for young children.
Purpose This curriculum is designed for students seeking licensure in 6-12 social studies education. This curriculum prepares students to transfer to any four-year college or university teacher preparation program. Courses in this degree are designed to satisfy some of the endorsement and professional course requirements of a Virginia teaching license. In EDU 200, students will identify the endorsement (content) courses they need to earn a teaching license. Students should meet with a Teacher Education faculty member or Education Field Placement Coordinator and Advising Specialist to select the correct courses for their area of licensure. EDU 200 and EDU 204 both require 20-hour field placements in a K-12 public school. Students will be required to complete a background check before being placed in the schools. Students with criminal records should consult with the Teacher Education Field Placement Coordinator before enrolling in the courses. Students are strongly encouraged to take the VCLA after completing ENG 111, ENG 112, Eng-literature course, and CST 100 or CST 110.
Purpose This curriculum is designed for students seeking licensure in either PreK-3rd Grade or PreK-6th Grade. Upon completion of endorsement courses, students should take the Praxis II: Elementary Education Multiple Subjects. This curriculum prepares students to transfer to any four-year college or university teacher preparation program. Courses in this degree are designed to satisfy some of the endorsement and professional course requirements of a Virginia teaching license. In EDU 200, students will identify the endorsement (content) courses they need to earn a teaching license. Students should meet with a Teacher Education faculty member or Education Field Placement Coordinator and Advising Specialist to select the correct courses for their area of licensure. EDU 200 and EDU 204 both require 20-hour field placements in a K-12 public school. Students will be required to complete a background check before being placed in the schools. Students with criminal records should consult with the Teacher Education Field Placement Coordinator before enrolling in the courses. Students are strongly encouraged to take the VCLA after completing ENG 111, ENG 112, Eng-literature course, and CST 100 or 110.
Purpose: This curriculum is designed for those who seek employment in the field of information technology, for those who are presently in that field and who wish to increase their knowledge and update their skills, and for those who must augment their abilities in other fields with knowledge and skills in information technology.
Credit for Prior Learning: Students in this program may be eligible for credit for prior learning. See an academic advisor or counselor for further information.
Purpose: This program prepares students for entry-level employment in data centers and related industries that require technicians/technologists trained in engineering technology, information technology, fiber optics, electronics, and data processing. Coursework will prepare students to earn the A+ Hardware, A+ Software, Network Troubleshooting, ETA FOI (Fiber Optic), and OSHA 10 industry credentials. Recommended prerequisites: There are no required prerequisites for this certificate. It is recommended that the student possess proficiency in high school English, high school algebra, and geometry and possess the ability to utilize hand tools and instrumentation.
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Credit for Prior Learning: Students in this program may be eligible for credit for prior learning. See an academic advisor or counselor for further information.
Purpose: This curriculum is designed for persons who plan to transfer to a four-year college or university to complete a baccalaureate degree program in information technology.
The curriculum is designed to provide an individual with a sufficient level of knowledge, understanding, and proficiency to perform the tasks associated with meeting a client's needs. These tasks can be performed by a trained, non-lawyer assistant working under the direction and supervision of a lawyer. A paralegal or legal assistant will have a basic understanding of the general processes of American law, along with the knowledge and proficiency required to perform specific tasks under the supervision of a lawyer in the fields of civil and criminal law. Occupational objectives include employment in corporate law firms, government agencies, and any of the varied law-related fields. Paralegals or legal assistants are prohibited by law from offering legal services directly to members of the public.
Advising Note: It is strongly recommended that students meet with an advisor before enrolling in classes or as early as possible in their first semester of enrollment.
Completion Requirements: To remain in the program, students must complete each of the legal specialty (LGL) courses in the program with a 'C' or higher. Students must complete LGL 110 Introduction to Law and the Paralegal Assistantduring their first semester of enrollment and complete the other legal specialty (LGL) courses in the order outlined. Course substitutions are made on a case-by-case basis. In all cases, the grade for substituted courses must be a 'C' or higher.
Special Approval Status: The Paralegal Studies Program is approved by the American Bar Association.
Transfer from Other Institutions: Students must complete 25 percent (17 credits) of their coursework at NOVA. Program guidelines require that at least 50 percent of legal specialty (LGL) credits be completed at NOVA. In addition, ABA guidelines require that at least 10 of those credits be taken in traditional (face-to-face) format. The Paralegal Studies Program accepts the transfer of legal specialty courses completed at other institutions as long as those institutions are regionally accredited and the program director determines that the course objectives and practical skills are comparable to the courses offered in NOVA's Paralegal Studies Program. In all cases, the grade for transfer courses must be a 'C' or higher.
Whether studied with professional goals in mind, to supplement the study of any other field, or just for interest’s sake, computer science offers a powerful way to approach many challenging problems. When combined with selected courses in mathematics and physics, the minor will help prepare the student for graduate work in computer science and related fields
Randolph College provides many ways to engage with mathematics. In addition to the rigorous training afforded by our regular course offerings, faculty frequently engage students in independent study based on student and faculty interests. Furthermore, Randolph College students have been very successful participating in various mathematics competitions against other undergraduate students in the United States. Furthermore, Randolph College Mathematics students have participated regularly in undergraduate research opportunities and internships.
The study of computer science offers students the opportunity to develop problem solving facility and helps develop skills which have broad utility in theory and application and are amongst the most sought-after by employers. The abstraction of real-world problems, the construction of algorithms to display and transform data, and the theory of computation are all central concerns of computer science. The minor in computer science can be effectively combined with any major. Whether studied with professional goals in mind, to supplement the study of any other field, or just for interest's sake, computer science offers a powerful way to approach many challenging problems. When combined with selected courses in mathematics and physics, the minor will help prepare the student for graduate work in computer science and related fields.
Randolph College provides many ways to engage with mathematics. In addition to the rigorous training afforded by our regular course offerings, faculty frequently engage students in independent study based on student and faculty interests. Furthermore, Randolph College students have been very successful participating in various mathematics competitions against other undergraduate students in the United States. Furthermore, Randolph College Mathematics students have participated regularly in undergraduate research opportunities and internships.
The study of computer science offers students the opportunity to develop problem solving facility and helps develop skills which have broad utility in theory and application and are amongst the most sought-after by employers. The abstraction of real-world problems, the construction of algorithms to display and transform data, and the theory of computation are all central concerns of computer science. The minor in computer science can be effectively combined with any major. Whether studied with professional goals in mind, to supplement the study of any other field, or just for interest's sake, computer science offers a powerful way to approach many challenging problems. When combined with selected courses in mathematics and physics, the minor will help prepare the student for graduate work in computer science and related fields.
Randolph College provides many ways to engage with mathematics. In addition to the rigorous training afforded by our regular course offerings, faculty frequently engage students in independent study based on student and faculty interests. Furthermore, Randolph College students have been very successful participating in various mathematics competitions against other undergraduate students in the United States. Furthermore, Randolph College Mathematics students have participated regularly in undergraduate research opportunities and internships.
The study of computer science offers students the opportunity to develop problem solving facility and helps develop skills which have broad utility in theory and application and are amongst the most sought-after by employers. The abstraction of real-world problems, the construction of algorithms to display and transform data, and the theory of computation are all central concerns of computer science. The minor in computer science can be effectively combined with any major. Whether studied with professional goals in mind, to supplement the study of any other field, or just for interest's sake, computer science offers a powerful way to approach many challenging problems. When combined with selected courses in mathematics and physics, the minor will help prepare the student for graduate work in computer science and related fields.
Randolph College provides many ways to engage with mathematics. In addition to the rigorous training afforded by our regular course offerings, faculty frequently engage students in independent study based on student and faculty interests. Furthermore, Randolph College students have been very successful participating in various mathematics competitions against other undergraduate students in the United States. Furthermore, Randolph College Mathematics students have participated regularly in undergraduate research opportunities and internships.
The study of computer science offers students the opportunity to develop problem solving facility and helps develop skills which have broad utility in theory and application and are amongst the most sought-after by employers. The abstraction of real-world problems, the construction of algorithms to display and transform data, and the theory of computation are all central concerns of computer science. The minor in computer science can be effectively combined with any major. Whether studied with professional goals in mind, to supplement the study of any other field, or just for interest's sake, computer science offers a powerful way to approach many challenging problems. When combined with selected courses in mathematics and physics, the minor will help prepare the student for graduate work in computer science and related fields.
A major in business offers students the opportunity to explore theories and concepts from accounting, business, and economics. Students study in an active learning environment and begin to understand and appreciate the complex nature of business organizations through applied economic theory. A major in business prepares students for a career in all business environments and provides an excellent foundation for graduate studies in such fields as business and law. The major in business requires a common core of courses plus one of three concentrations: Finance, Management, or Marketing. All courses in the core and in each concentration must be completed with a grade of C- or better.
A major in business offers students the opportunity to explore theories and concepts from accounting, business, and economics. Students study in an active learning environment and begin to understand and appreciate the complex nature of business organizations through applied economic theory. A major in business prepares students for a career in all business environments and provides an excellent foundation for graduate studies in such fields as business and law. The major in business requires a common core of courses plus one of three concentrations: Finance, Management, or Marketing. All courses in the core and in each concentration must be completed with a grade of C- or better.
A major in business offers students the opportunity to explore theories and concepts from accounting, business, and economics. Students study in an active learning environment and begin to understand and appreciate the complex nature of business organizations through applied economic theory. A major in business prepares students for a career in all business environments and provides an excellent foundation for graduate studies in such fields as business and law. The major in business requires a common core of courses plus one of three concentrations: Finance, Management, or Marketing. All courses in the core and in each concentration must be completed with a grade of C- or better.
Economics is the study of scarcity, choice, and tradeoffs. Scarcity exists because productive resources are limited but human wants are unlimited. As a result, all societies, households, and firms must make choices and these choices inevitably involve tradeoffs. The major in economics develops the essential skills for understanding economic problems in many contexts. It prepares students for careers in all business environments and provides an excellent foundation for graduate studies in economics, business, public policy, and law. All courses in the major and minor must be completed with a grade of C- or better.
The major in applied mathematics combines classical study of mathematics with modern computational methods and applications to other disciplines. Students pursuing the major will develop multiple modes of evidence including proof, simulation, computation, and visualization, and they will apply their skills to real-world problems in courses taught by mathematics faculty and in a chosen cross-disciplinary area.
The computer science curriculum integrates theory and practice by including foundational topics that underpin the discipline and by emphasizing the value of abstraction and good engineering design in project development. Elective courses provide an opportunity for deeper study in areas of interest. An important part of the curriculum is the inclusion of professional practice activities such as research experience, teamwork, oral communication and technical writing, and project development. While being sensitive to changes in technology, the curriculum also seeks to prepare students for lifelong learning to enable them to meet future challenges.
A student expecting to major or minor in computer science should enroll in CSCI 111-CSCI 112 in the first year. If credit is given for one or both of these courses, then a student should enroll in CSCI 211 or CSCI 210. A student interested in future graduate studies should complete the two calculus sequences, MATH 131-MATH 132. A student interested in computer hardware is encouraged to select PHYS 210 to meet one of the collegiate science requirements.
Mathematics is the language of the sciences, and the analytical tool of many disciplines. In its own right, mathematics is one of the finest inventions of civilization, demanding both creativity and rigor. At Randolph-Macon College, the mathematics curriculum is designed to serve a broad variety of interests. Courses in calculus, statistics, modeling, finite mathematics, and logic are available to all students and provide one of the cornerstones of a liberal arts education.
Students pursuing the mathematics major or minor are expected to gain an appreciation of mathematical rigor, the process whereby propositions are logically deduced from general premises. Such study should enable students to apply greater clarity and precision of thought to their future endeavors and promote higher order thinking and habits of mind suitable for effective problem-solving. The curriculum includes courses in both theoretical and applied mathematics. Each student should be able to develop a course of study which will serve as the foundation for graduate work or for a career that requires well-developed analytical skills. A major in mathematics may lead to graduate study in many fields, e.g. mathematics, statistics, computer science, economics, or operations research. The program also provides excellent preparation for a career in law, medicine, business, or engineering.
Mathematics is the language of the sciences, and the analytical tool of many disciplines. In its own right, mathematics is one of the finest inventions of civilization, demanding both creativity and rigor. At Randolph-Macon College, the mathematics curriculum is designed to serve a broad variety of interests. Courses in calculus, statistics, modeling, finite mathematics, and logic are available to all students and provide one of the cornerstones of a liberal arts education.
Students pursuing the mathematics major or minor are expected to gain an appreciation of mathematical rigor, the process whereby propositions are logically deduced from general premises. Such study should enable students to apply greater clarity and precision of thought to their future endeavors and promote higher order thinking and habits of mind suitable for effective problem-solving. The curriculum includes courses in both theoretical and applied mathematics. Each student should be able to develop a course of study which will serve as the foundation for graduate work or for a career that requires well-developed analytical skills. A major in mathematics may lead to graduate study in many fields, e.g. mathematics, statistics, computer science, economics, or operations research. The program also provides excellent preparation for a career in law, medicine, business, or engineering.
Computer Science courses required for the Computer Science degree are available at the Chesapeake and Virginia Beach campuses.
Courses required for the Science degree are available on all four campuses.
The courses in this program prepare students for the examinations leading to industry certifications as a Cisco Certified Networking Associate (CCNA).
TCC is an Oracle Academic Initiative (OAI) Partner and an authorized Oracle training site. The courses in this program prepare students for the examinations leading to Oracle Certified Associate (OCA) and Oracle Certified Professional (OCP) industry certifications.