Application Systems Analyst/Programmer - Staff Specialist

University of Michigan
Ann Arbor, MI, United States
12 days ago
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Role details

Contract type
Temporary contract
Employment type
Full-time (> 32 hours)
Experience level
Expert
Experience required
5 years minimum
Working hours
Regular working hours
Job source

Tech stack

Clean Code Principles Java (Programming Language) JavaScript (Programming Language) 3D Visualization Application Programming Interfaces (APIs) Artificial Intelligence Applications Architecture Application Services Audit Trail User Authentication Automation of Tests Health Informatics
+59 more
C Sharp (Programming Language) Clinical Data Repository Clinical Terminology Servers Software Quality Code Review Information Systems Databases Computer Engineering Continuous Integration Data Validation Data Integrity Relational Databases Software Design Patterns Dicom Monitoring of Systems Imaging Technology Systems Analysis Spring Framework PostgreSQL Machine Learning Windows Presentation Foundation Microsoft SQL Server Object-Oriented Software Development Oracle (Applications) Windows PowerShell Software Architecture Role-Based Access Control Cloud Services Scientific Computating Secure Coding Software Engineering Software Requirements Analysis SQL Stored Procedures SQL Databases Systems Integration TypeScript User-Centered Design Web Applications Openapi Enterprise Software Applications ReactJS Fast Healthcare Interoperability Resources Large Language Models Spring-boot Electronic Medical Records Backend Gitlab Git AngularJS Solid Principles Kubernetes Information Technology Health Level Seven International Software Coding Restful APIs Data Inconsistencies Docker Vulnerability Analysis Glasgow Haskell Compiler

Job description

The Michigan Medicine Department of Radiation Oncology is seeking an experienced and motivated software engineering professional to build and maintain clinical applications that support safe and effective radiation therapy., Application Development and Maintenance (60%)

  • Participate in the full software development lifecycle, including requirements analysis, architecture, design, implementation, testing, deployment, documentation, production support, and maintenance.
  • Design, develop, and maintain enterprise applications using Java, Spring Boot, Spring Framework, and related technologies.
  • Develop modern web-based user interfaces using JavaScript or TypeScript frameworks such as Angular or React.
  • Build secure, scalable, maintainable, and well-documented REST APIs and backend services.
  • Develop applications and interfaces that support radiation therapy planning, treatment delivery, clinical workflow, reporting, visualization, and data validation.
  • Translate complex clinical and operational requirements into reliable, testable, and maintainable software solutions.
  • Diagnose production issues, integration failures, performance problems, and data inconsistencies through structured troubleshooting and root-cause analysis.
  • Modernize, migrate, or replace legacy and end-of-life applications while maintaining clinical functionality, data integrity, and continuity of operations.
  • Apply object-oriented programming, design patterns, SOLID principles, clean-code practices, secure coding, automated testing, and appropriate application architecture.

Clinical Informatics and Systems Integration (30%)

  • Collaborate with clinical and technical stakeholders to design and maintain informatics tools supporting Radiation Oncology protocols and workflows.
  • Develop workflow applications that automate clinical data processing, validation, communication, task management, notifications, and reporting.
  • Develop dashboards and web applications that provide authorized users with timely access to clinical radiotherapy data and operational metrics.
  • Integrate applications with treatment planning systems, oncology information systems, imaging systems, databases, electronic health record platforms, vendor APIs, and institutional services.
  • Design and maintain relational database structures, SQL queries, stored procedures, data-access components, interfaces, and data-transformation processes.
  • Support secure clinical data exchange, mapping, reconciliation, audit logging, authentication, authorization, and role-based access control.
  • Evaluate artificial intelligence, large language models, rule engines, cloud services, and other emerging technologies for appropriate use in clinical and operational workflows.

Software Quality and Documentation (10%)

  • Create and maintain software requirements, architecture, design, testing, validation, deployment, support, and troubleshooting documentation.
  • Develop unit, integration, API, system, regression, security, and user-acceptance testing appropriate to each application.
  • Participate in code reviews, architecture reviews, security reviews, testing reviews, and peer review of departmental applications.
  • Maintain traceability among requirements, implementation, testing, releases, and production changes.
  • Contribute to continuous improvement of coding standards, testing practices, CI/CD processes, monitoring, documentation, and software quality procedures., Michigan Medicine conducts background screening and pre-employment drug testing on job candidates upon acceptance of a contingent job offer and may use a third party administrator to conduct background screenings. Background screenings are performed in compliance with the Fair Credit Report Act. Pre-employment drug testing applies to all selected candidates, including new or additional faculty and staff appointments, as well as transfers from other U-M campuses.

Requirements

Prior healthcare or radiation oncology experience is welcome but not required. We are looking for a strong software engineer who is interested in learning the clinical domain and applying sound engineering practices to meaningful problems in patient care with a commitment to patient safety. We recognize that excellent candidates may not meet every preferred qualification. If this role interests you and your experience aligns with most of the required qualifications, we encourage you to apply., * Bachelor’s Degree in Computer Science, Software Engineering, Computer Engineering, Information Systems, or a related discipline, or an equivalent combination of education and professional experience.

  • Five or more years of professional software engineering, systems analysis, or enterprise application development experience.
  • Strong proficiency in at least one of the following:
  • Java and Spring/Spring Boot
  • C# and WPF
  • Experience developing, testing, deploying, and supporting production applications.
  • Experience with relational databases, SQL, APIs, or systems integration.
  • Knowledge of object-oriented design, software architecture, automated testing, Git, and secure coding.
  • Ability to create clear software requirements, design documentation, test plans, release notes, installation guides, and support procedures.
  • Ability to work independently and collaborate effectively with multidisciplinary clinical and technical teams.
  • Ability and willingness to learn radiation oncology workflows, healthcare technologies, clinical terminology, and emerging software development practices.

Desired Qualifications*

Experience in any of the following is helpful but not required:

  • Healthcare, medical imaging, scientific computing, or other complex software environments.
  • DICOM, DICOM-RT, DICOMweb, HL7, FHIR, or clinical system integration.
  • 3D visualization and medical image processing
  • Angular, React, REST APIs, OpenAPI, or asynchronous processing.
  • SQL Server, Oracle, PostgreSQL.
  • CI/CD, GitLab, Docker, Kubernetes, deployment to Hyperscaler platforms
  • PowerShell scripting, Haskell
  • EPIC, including certification courses
  • System monitoring, vulnerability scanning and remediation.
  • Medical device development, HIPAA, accessibility, or human-centered design.
  • AI, machine learning, large language models

About the company

Michigan Medicine improves the health of patients, populations and communities through excellence in education, patient care, community service, research and technology development, and through leadership activities in Michigan, nationally and internationally. Our mission is guided by our Strategic Principles and has three critical components; patient care, education and research that together enhance our contribution to society., Michigan Medicine is one of the largest health care complexes in the world and has been the site of many groundbreaking medical and technological advancements since the opening of the U-M Medical School in 1850. Michigan Medicine is comprised of over 30,000 employees and our vision is to attract, inspire, and develop outstanding people in medicine, sciences, and healthcare to become one of the world’s most distinguished academic health systems. In some way, great or small, every person here helps to advance this world-class institution. Work at Michigan Medicine and become a victor for the greater good.

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