
Wild CAT Ecology Course
Master the science of wild cat ecology from species biology to landscape-scale conservation planning. This course equips you with field survey techniques, population modeling skills, and conflict mitigation strategies used by working wildlife professionals. Whether you're entering the field or advancing your career, you'll gain the technical depth to make a real impact for wild cats worldwide.
What you will learn:
You will build a foundation in wild cat biology, covering taxonomy, morphology, and physiology of all 37 species. Then learn systematic field surveys: camera trapping, sign surveys, acoustic detection, and individual identification. Apply quantitative population models, including mark-recapture and spatially explicit capture‑recapture, to produce reliable data. The course covers human‑wildlife conflict analysis and coexistence tools such as predator‑proof enclosures and community monitoring. You will also study conservation planning, protected‑area design, landscape connectivity modeling, and advanced GIS. Supplementary modules address wildlife genetics, veterinary protocols, policy frameworks, and project management skills.
How you study in practice Wild CAT Ecology Course
How you practice Wild CAT Ecology Course
For companies that want to train their team
With Dedika for Business, the course includes exercises and examples tailored to your own business and the way your company needs.
Course content
8 Chapters • 39 LessonsDuration between 4 and 360 hours (you decide)
Chapter 1HideHide detailsSee detailsIntroduction to Wild Cat Biology
Introduction to Wild Cat Biology
Lesson 1 • Physiology and Metabolic Processes
Explains digestive, reproductive, and thermoregulatory physiology unique to felids. Provides biological context for understanding energy budgets and habitat needs.
Lesson 2 • Taxonomy and Evolutionary History
Covers Felidae family classification, phylogenetic relationships, and speciation events. Establishes the taxonomic framework used throughout the course.
Lesson 3 • Species Diversity and Global Distribution
Surveys the 37 recognized wild cat species across continents and biomes. Prepares students to connect species identity with habitat and behavior chapters.
Lesson 4 • Morphology and Physical Adaptations
Examines skeletal structure, musculature, and sensory organs adapted for predation. Links physical traits to ecological roles covered in later chapters.
Chapter 2HideHide detailsSee detailsWild Cat Habitat and Ecology
Wild Cat Habitat and Ecology
Lesson 1 • Ecological Niche and Guild Interactions
Analyzes niche partitioning among sympatric felids and interactions with other carnivores. Prepares students for multi-species monitoring frameworks.
Lesson 2 • Microhabitat Use and Shelter Selection
Examines den site selection, resting cover, and microhabitat preferences. Informs field survey placement and camera trap positioning techniques.
Lesson 3 • Habitat Types and Structural Requirements
Identifies forest, grassland, arid, and montane habitats used by wild cats. Connects structural features like cover density to predator ambush strategies.
Lesson 4 • Home Range and Territory Dynamics
Explains how cats establish, defend, and adjust territories relative to resources. Builds spatial reasoning needed for field survey design.
Lesson 5 • Prey Base and Trophic Relationships
Describes prey selection, predator-prey dynamics, and trophic cascades. Establishes ecological context for population monitoring covered later.
Chapter 3HideHide detailsSee detailsWild Cat Behavior and Social Structure
Wild Cat Behavior and Social Structure
Lesson 1 • Parental Care and Cub Development
Traces developmental stages from birth through independence in wild cats. Supports age-class identification used in population surveys.
Lesson 2 • Hunting Strategies and Predatory Behavior
Details stalking, ambush, coursing, and cooperative hunting techniques. Connects predatory behavior to habitat structure and prey type.
Lesson 3 • Activity Patterns and Diel Rhythms
Examines nocturnal, crepuscular, and diurnal activity cycles across species. Informs optimal timing for field surveys and camera trap deployment.
Lesson 4 • Communication and Scent Marking
Covers vocal, visual, and chemical communication channels used by felids. Provides interpretive tools for sign surveys and behavioral observation.
Lesson 5 • Social Organization and Mating Systems
Compares solitary, pair-bonded, and coalition social structures across species. Establishes behavioral baselines for population demographic analysis.
Chapter 4HideHide detailsSee detailsField Survey Methods and Data Collection
Field Survey Methods and Data Collection
Lesson 1 • Field Data Recording and Quality Control
Establishes standardized data sheets, GPS waypoint logging, and field QC protocols. Ensures data integrity for statistical analysis in subsequent chapters.
Lesson 2 • Individual Identification Techniques
Explains coat pattern matching, ear notch cataloging, and whisker spot mapping. Enables mark-recapture population estimates covered in the next chapter.
Lesson 3 • Sign Surveys and Track Identification
Teaches identification of tracks, scat, scrapes, and kills as species-presence indicators. Grounds students in low-tech detection before electronic methods.
Lesson 4 • Acoustic and Olfactory Detection Methods
Introduces passive acoustic monitoring and lure-based detection for elusive species. Expands detection toolkit beyond visual and photographic methods.
Lesson 5 • Camera Trap Survey Design
Covers camera placement, spacing, trigger settings, and deployment duration. Directly enables individual identification and occupancy estimation.
Chapter 5HideHide detailsSee detailsPopulation Estimation and Monitoring
Population Estimation and Monitoring
Lesson 1 • Occupancy Modeling Fundamentals
Introduces detection probability, site covariates, and single-season occupancy models. Provides the statistical foundation for all monitoring frameworks in this chapter.
Lesson 2 • Population Trend Analysis
Applies index-based and model-based methods to detect population change over time. Connects monitoring outputs to conservation decision thresholds.
Lesson 3 • Spatially Explicit Capture-Recapture
Extends mark-recapture to estimate density using spatial detection data. Addresses movement and home range overlap in camera trap arrays.
Lesson 4 • Demographic Parameter Estimation
Estimates survival, recruitment, and sex ratios from field data. Provides inputs for population viability analysis introduced in later chapters.
Lesson 5 • Mark-Recapture Population Estimation
Covers closed and open population models using photo-ID and capture data. Builds directly on individual identification skills from the previous chapter.
Chapter 6HideHide detailsSee detailsThreats, Human-Wildlife Conflict, and Coexistence
Threats, Human-Wildlife Conflict, and Coexistence
Lesson 1 • Compensation and Incentive Schemes
Reviews livestock compensation programs, insurance models, and payment for coexistence. Links economic incentives to long-term tolerance of wild cats.
Lesson 2 • Habitat Loss and Fragmentation
Quantifies deforestation, land conversion, and edge effects on wild cat populations. Establishes threat context for conservation planning chapters.
Lesson 3 • Livestock Depredation and Conflict Dynamics
Examines predation on livestock, conflict hotspot mapping, and socioeconomic drivers. Grounds coexistence strategy design in empirical conflict data.
Lesson 4 • Coexistence Tools and Mitigation Measures
Evaluates predator-proof enclosures, livestock guardian animals, and early warning systems. Provides practical intervention options for field practitioners.
Lesson 5 • Poaching, Trade, and Persecution
Analyzes illegal wildlife trade, retaliatory killing, and trophy hunting pressures. Connects threat magnitude to population viability outcomes.
Chapter 7HideHide detailsSee detailsConservation Planning and Protected Area Management
Conservation Planning and Protected Area Management
Lesson 1 • Protected Area Design and Evaluation
Covers reserve size, shape, buffer zones, and management effectiveness evaluation. Connects spatial planning principles to wild cat home range requirements.
Lesson 2 • Landscape Connectivity and Corridor Planning
Designs wildlife corridors using least-cost path modeling and resistance surfaces. Addresses fragmentation threats identified in the previous chapter.
Lesson 3 • Monitoring, Adaptive Management, and Reporting
Establishes feedback loops between monitoring data and management decisions. Produces structured reporting outputs required by conservation programs.
Lesson 4 • Conservation Status Assessment
Applies threat category criteria and population viability analysis to assess species status. Provides the evaluative framework for prioritizing conservation actions.
Lesson 5 • Stakeholder Engagement and Governance
Integrates community, government, and private sector roles into conservation governance. Ensures management plans are socially viable and institutionally supported.
Chapter 8HideHide detailsSee detailsAdvanced Research Methods and Applied Projects
Advanced Research Methods and Applied Projects
Lesson 1 • Research Communication and Publication
Structures findings into peer-reviewed manuscripts, technical reports, and stakeholder briefs. Completes the research cycle from data collection to knowledge dissemination.
Lesson 2 • Research Question and Hypothesis Design
Formulates testable hypotheses grounded in ecological theory and conservation need. Anchors all subsequent methodological choices to a clear research objective.
Lesson 3 • Telemetry and GPS Collar Data Analysis
Processes GPS fix data to derive movement paths, kernel density home ranges, and step selection functions. Integrates movement ecology into conservation planning outputs.
Lesson 4 • Advanced Statistical Analysis
Applies mixed-effects models, Bayesian inference, and multivariate techniques to felid data. Elevates analytical rigor beyond introductory population estimation methods.
Lesson 5 • Integrated Multi-Method Study Design
Combines camera trapping, telemetry, sign surveys, and genetic sampling into one design. Maximizes data richness while managing logistical and budget constraints.
Your valid completion certificate
This course is for you:
Biology graduates: seeking specialized skills to enter carnivore conservation careers.
Field technicians: ready to deepen expertise beyond standard wildlife survey protocols.
Conservation NGO staff: needing technical grounding to lead felid monitoring programs.
Wildlife photographers: wanting ecological context to support advocacy and storytelling work.
Zoology students: looking to align academic training with real-world research demands.
Career changers: transitioning from environmental consulting into dedicated wildlife conservation roles.
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