Medical Imaging Systems: Advanced

Medical Imaging Systems: Advanced

Medical Imaging — Applied Modality Engineering, QA, and Regulatory Framework

Medical Imaging Systems: Advanced

Move from modality fundamentals to applied imaging engineering — CT reconstruction, MRI pulse sequences, ultrasound architecture, AAPM-referenced QA protocols, IEC 60601-2 application, and AI in image reconstruction under the FDA AI/ML framework.

BME-620-AAdvanced32 hoursCertificate of Completion

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Medical Imaging Systems
FormatProfessional Certificate Course
LevelAdvanced
Duration32 hours
LanguageEnglish
CertificateCertificate of Completion — Aleph University
Full course trackIntroductory (16 h) + Advanced (32 h) = 48 hours
Prerequisite / Recommended Preparation

Recommended prerequisite: completion of the Introductory level for this training, or relevant professional experience subject to Aleph University review.

Overview

The Advanced level of the Aleph Medical Imaging Systems course track is for professionals who already know the modality landscape and need to develop the applied engineering, QA, and regulatory skills the imaging industry expects: working CT reconstruction reasoning (filtered back-projection versus iterative reconstruction; dose engineering), MRI pulse-sequence design and the safety zones, ultrasound transducer-array architecture and Doppler at applied depth, nuclear-medicine and PET reconstruction, applied quality-assurance protocols referenced to AAPM Task Group 100 (risk-based QA) and Task Group 142 (linear-accelerator QA), applied IEC 60601-2 collateral-standard work by modality, applied FDA 21 CFR Subchapter J performance-standard reasoning, and the application of AI-driven image reconstruction and analysis under the FDA AI/ML Predetermined Change Control Plan (PCCP) Final Guidance (December 2024).

This 32-hour Professional Certificate Course builds directly on the 16-hour Introductory level (`BME-620-I`). It does not repeat the modality overview material. Where the Introductory level introduces CT and MRI at the level of physical principles, the Advanced level reasons through the engineering decisions that distinguish a clinical CT system from another and that drive dose-versus-image-quality trade-offs in a clinical protocol. Where the Introductory level introduces AAPM and IEC 60601-2 at orientation depth, the Advanced level authors an applied QA protocol referenced to a specific Task Group and analyzes the IEC 60601-2-XX collateral standard for a chosen modality. The course culminates in a cross-modal course exercise — a clinical case in which the participant compares two or more modality choices, applies ALARA, references the relevant IEC and AAPM documents, and proposes a regulatory pathway under FDA 510(k).

What you will learn
Reason through CT reconstruction (filtered back-projection versus iterative reconstruction) and the dose-versus-image-quality trade-offs for clinical protocols.
Apply MRI pulse-sequence design (spin-echo, gradient-echo, echo-planar imaging) and the safety-zone framework to a clinical scenario.
Apply ultrasound transducer-array architecture, B-mode, and Doppler (color, spectral, power) reasoning to a clinical use case.
Apply nuclear-medicine and PET reconstruction reasoning, including PET/CT and PET/MRI hybrid considerations and dosimetry.
Author an applied quality-assurance protocol referenced to AAPM Task Group 100 (risk-based QA) or Task Group 142, with daily, monthly, and annual tests defined.
Analyze the IEC 60601-2-XX collateral standard (60601-2-44 for CT, 60601-2-33 for MRI, 60601-2-37 for ultrasound, 60601-2-43 for interventional fluoroscopy) for a chosen modality and identify the particular-requirements that apply.
Apply 21 CFR Subchapter J performance-standard reasoning to a radiation-emitting product.
Apply the FDA AI/ML PCCP Final Guidance (December 2024) to an AI-enabled image-reconstruction or image-analysis algorithm.
Produce a cross-modal capstone course exercise — a clinical-case modality and regulatory analysis — as a portfolio-grade course artifact.
course topics & modules
Professional relevance

Graduates of the Advanced course are positioned for applied work at imaging-OEM manufacturers (designing and validating CT, MRI, ultrasound, PET, and hybrid systems), at clinical medical-physics programs (responsible for departmental QA), at AI-imaging companies (responsible for FDA AI/ML compliance for reconstruction and analysis algorithms), and at regulatory-affairs consultancies (supporting imaging-device 510(k) and De Novo submissions). The cross-modal capstone exercise is a portfolio-grade artifact that demonstrates working command of the modalities, the QA discipline, and the regulatory framing the field expects.

Certificate of Completion

Participants who meet the course completion requirements receive a Certificate of Completion issued by Aleph University.

Completion of both the Introductory and Advanced levels may be reviewed by Aleph University for potential recognition within an applicable graduate pathway, subject to institutional review and applicable academic policies. Recognition is not automatic and is not guaranteed.
Frequently asked questions
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