
High-Angle and Confined Space Rescue Course
Master the technical skills required to operate safely in high-angle and confined space rescue environments. This course takes you from foundational rope systems and hazard recognition through full integrated rescue scenarios. Train to the standards that protect your team, your patient, and yourself on every operation.
What you will learn:
You will learn to identify and control hazards in permit-required confined spaces and on vertical terrain, then build the rope systems and anchor configurations needed to move patients safely. The course covers knot proficiency, load calculations, mechanical advantage raising systems, and controlled lowering operations. You will also master atmospheric monitoring, lockout procedures, and non-entry retrieval systems. Integrated multi-hazard scenarios test your ability to coordinate teams, manage communications, and execute extractions under realistic pressure. By the end, you will meet operational competency benchmarks across both high-angle and confined space rescue disciplines.
How you study in practice High-Angle and Confined Space Rescue Course
How you practice High-Angle and Confined Space Rescue Course
For companies looking to train their teams
With Dedika for businesses, the course includes exercises and examples tailored to your own business and the way your company needs.
Course Content
8 Chapters • 41 LessonsDuration between 4 and 360 hours (you decide)
Chapter 1HideHide detailsSee detailsFoundations of Rescue Operations
Foundations of Rescue Operations
Lesson 1 • Rescue Mission and Responder Roles
Defines rescue as a discipline and maps team roles to operational functions. Grounds students in accountability structures before any technical training begins.
Lesson 2 • Regulatory and Standards Framework
Surveys applicable occupational safety standards and consensus rescue guidelines. Connects compliance requirements to field decision-making throughout the course.
Lesson 3 • Medical and Legal Considerations
Addresses responder authority, patient consent, and scope-of-care boundaries. Establishes the ethical and legal context for all patient-contact activities.
Lesson 4 • Personal Protective Equipment Selection
Covers PPE categories required for high-angle and confined space environments. Students match PPE to hazard profiles identified during size-up.
Lesson 5 • Risk Assessment and Scene Size-Up
Introduces systematic hazard identification and risk-benefit analysis. Students apply a repeatable size-up model used in every subsequent rescue scenario.
Chapter 2HideHide detailsSee detailsRope Systems and Hardware Fundamentals
Rope Systems and Hardware Fundamentals
Lesson 1 • Hardware Identification and Function
Introduces carabiners, descenders, ascenders, pulleys, and anchor plates. Students identify each device's load rating, gate type, and intended function.
Lesson 2 • Inspection, Retirement, and Storage
Establishes pre-use inspection protocols and retirement criteria for rope and hardware. Proper storage practices prevent degradation between deployments.
Lesson 3 • Webbing, Slings, and Accessory Cord
Covers flat webbing, tubular webbing, and accessory cord used in anchors and patient packaging. Students distinguish appropriate applications for each material.
Lesson 4 • Rope Construction and Classification
Examines fiber types, construction methods, and performance ratings for rescue rope. Students select appropriate rope for given load and environmental conditions.
Lesson 5 • Load Calculations and Safety Factors
Introduces force, load, and safety-factor math applied to rescue systems. Students calculate system loads and verify compliance with minimum safety factors.
Chapter 3HideHide detailsSee detailsKnots, Hitches, and Rigging Connections
Knots, Hitches, and Rigging Connections
Lesson 1 • Hitches and Friction Applications
Introduces Munter, Prusik, Klemheist, and Bachmann hitches for belay and progress capture. Students select the correct hitch based on rope diameter and load direction.
Lesson 2 • Foundation Knots for Rescue
Covers figure-eight family, bowline, and overhand knots used as primary load-bearing connections. Each knot is practiced to proficiency before advancing.
Lesson 3 • Knot Proficiency Under Operational Conditions
Applies knot skills in low-light, gloved, and time-limited scenarios. Builds the muscle memory required for reliable performance during actual rescues.
Lesson 4 • Bends and Joining Techniques
Covers double fisherman, flat overhand bend, and water knot for joining ropes and webbing. Students identify failure modes and inspection points for each bend.
Lesson 5 • Knot Theory and Strength Reduction
Explains how knots reduce rope strength and how knot efficiency affects system safety factors. Students apply this knowledge when selecting knots for specific loads.
Chapter 4HideHide detailsSee detailsAnchor Systems and Load Distribution
Anchor Systems and Load Distribution
Lesson 1 • Anchor Principles and Criteria
Defines SERENE-A and similar anchor evaluation frameworks. Students apply criteria to assess any anchor before committing a load to the system.
Lesson 2 • Anchor System Evaluation and Backup
Establishes a systematic check process for completed anchor systems before loading. Students identify deficiencies and apply corrective rigging before operations begin.
Lesson 3 • Artificial Anchor Devices
Introduces bolts, pickets, deadman anchors, and portable anchor plates. Students install and test artificial anchors in soil, concrete, and structural substrates.
Lesson 4 • Natural and Structural Anchors
Covers trees, boulders, vehicles, and structural members as anchor points. Students assess suitability and apply appropriate rigging to each anchor type.
Lesson 5 • Multi-Point Anchor Configurations
Builds equalized and pre-equalized anchor systems using multiple points. Students compare load distribution across configurations and select the best option.
Chapter 5HideHide detailsSee detailsHigh-Angle Lowering and Raising Systems
High-Angle Lowering and Raising Systems
Lesson 1 • Converting Between Lowering and Raising
Teaches the rigging transitions required to switch from lowering to raising mid-operation. Students execute conversions safely without releasing load control.
Lesson 2 • Mechanical Advantage Raising Systems
Introduces 3:1, 4:1, and compound mechanical-advantage systems for raising loads. Students calculate theoretical mechanical advantage and account for friction losses.
Lesson 3 • Belay Systems and Redundancy
Establishes independent belay lines and progress-capture devices as safety backups. Students operate a two-line system with coordinated main and belay teams.
Lesson 4 • Lowering System Components and Setup
Covers brake-bar racks, figure-eight plates, and MPDs configured for controlled lowering. Students build and operate a lowering system from anchor to edge.
Lesson 5 • Operational Communication and Commands
Standardizes voice and signal commands for lowering and raising operations. Students practice command sequences until communication is automatic and error-free.
Lesson 6 • Edge Management and Rope Protection
Addresses rope abrasion, edge rollers, and edge pads to protect rope integrity. Students rig edge protection appropriate to terrain and rope angle.
Chapter 6HideHide detailsSee detailsConfined Space Hazard Recognition and Entry
Confined Space Hazard Recognition and Entry
Lesson 1 • Confined Space Classification
Distinguishes permit-required from non-permit confined spaces using regulatory criteria. Students classify spaces encountered in industrial, municipal, and construction settings.
Lesson 2 • Lockout and Energy Isolation
Covers identification and control of mechanical, electrical, hydraulic, and pneumatic energy sources. Students apply lockout procedures before entry into energy-controlled spaces.
Lesson 3 • Permit System and Entry Procedures
Walks through the confined space entry permit process from hazard identification to entry authorization. Students complete and verify permits before any simulated entry.
Lesson 4 • Atmospheric Hazards and Monitoring
Covers oxygen deficiency, flammable gases, and toxic contaminants found in confined spaces. Students calibrate and operate multi-gas monitors for pre-entry and continuous monitoring.
Lesson 5 • Ventilation Strategies
Introduces forced-air, exhaust, and combination ventilation methods for confined spaces. Students select and position ventilation equipment to achieve safe atmospheric conditions.
Chapter 7HideHide detailsSee detailsConfined Space Rescue Techniques
Confined Space Rescue Techniques
Lesson 1 • Victim Assessment in Confined Spaces
Adapts patient assessment to the physical and atmospheric constraints of confined spaces. Students prioritize life threats and packaging decisions based on space geometry.
Lesson 2 • Patient Packaging for Extraction
Covers SKED, Saver, and flexible litter systems suited to confined space geometry. Students package a victim for vertical, horizontal, and angled extraction paths.
Lesson 3 • Extraction Operations and Debrief
Integrates retrieval rigging, team communication, and patient packaging into full extraction scenarios. Post-scenario debriefs identify system and communication failures.
Lesson 4 • Non-Entry Retrieval Systems
Covers tripod, davit, and winch-based retrieval systems for vertical confined space extraction. Students rig and operate retrieval systems without entering the space.
Lesson 5 • Entry Rescue Team Configuration
Defines roles and equipment requirements for teams that must enter to reach a victim. Students assign roles and verify equipment before simulated entry rescue.
Chapter 8HideHide detailsSee detailsIntegrated Rescue Scenarios and Competency
Integrated Rescue Scenarios and Competency
Lesson 1 • Scenario Design and Evaluation Criteria
Explains how integrated scenarios are structured and how performance is evaluated. Students understand the competency benchmarks required for course completion.
Lesson 2 • High-Angle Rescue Scenario Execution
Students lead and execute a full high-angle rescue from size-up through patient handoff. Evaluators assess anchor construction, system rigging, and team communication.
Lesson 3 • Confined Space Rescue Scenario Execution
Students manage a permit-required confined space rescue from entry permit to victim extraction. Atmospheric monitoring, team roles, and extraction rigging are all evaluated.
Lesson 4 • Combined High-Angle and Confined Space Scenario
Presents a scenario requiring simultaneous management of vertical terrain and confined space hazards. Students allocate resources and coordinate sub-teams across both disciplines.
Lesson 5 • Competency Remediation and Reassessment
Provides structured remediation for students who do not meet performance benchmarks. Targeted practice and reassessment ensure all students exit at operational competency.
Your valid completion certificate
This course is for you:
Firefighters: seeking formal technical rescue credentials beyond standard department training.
Industrial safety officers: responsible for confined space programs at high-hazard facilities.
Search and rescue volunteers: ready to move from basic to technical rescue operations.
Utility workers: regularly exposed to vertical terrain and permit-required confined spaces.
Emergency medical technicians: expanding scope to support technical rescue team deployments.
Career changers: entering industrial safety or emergency services from unrelated backgrounds.
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