Description
+ Include: videos + file sub vtt, size: GB
+ Target Audience: Dermatologists, Plastic Surgeons, Aesthetic Medicine Physicians, and Maxillofacial Surgeons
+ Sample video: contact me for sample video
+ Information:
The “Perioral and Lip Aesthetics: Rejuvenation, Neuromodulation and Fillers” course offers a comprehensive approach to perioral rejuvenation, spanning seven lessons and lasting 1 hour and 47 minutes. Moving beyond treating individual wrinkles, it details how to achieve predictable, natural-looking results by understanding facial aging, muscle dynamics, lip architecture, individual morphotypes, and the properties of injectable materials. The program connects anatomical assessments with age- and morphotype-specific treatment strategies utilizing neuromodulators and dermal fillers.
Learning Objectives
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Analyze perioral aging and smile evaluation, including anatomy, muscle dynamics, and clinical assessment.
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Evaluate lip architecture and smile harmonization based on facial ratios, perioral lines, and established treatment protocols.
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Understand the foundations of neuromodulation, including mechanisms of action, facial morphotypes, and structural changes associated with aging.
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Apply age- and gender-specific protocols, encompassing treatment strategies and dosing considerations from the 20s through 60+.
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Implement morphotype-based treatment planning through upper- and lower-face case studies and a structured consultation workflow.
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Understand multi-layered facial aging mechanics, detailing the role of bone, fat, muscle, and skin in age-related changes.
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Evaluate dermal filler science, including material types, rheology, and various hyaluronic acid formulations.
Target Audience
This course is designed for aesthetic practitioners, dermatologists, plastic surgeons, and medical professionals looking to enhance their skills in non-surgical perioral rejuvenation.
Best for Dermatologists, Plastic Surgeons, Aesthetic Medicine Physicians, and Maxillofacial Surgeons.
Topics
Lesson 1. Perioral Aging & Smile Evaluation: Anatomy, Muscle Dynamics & Assessment
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Parameters of an attractive smile: modern clinical approaches to smile enhancement
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Structural characteristics of facial aging in the perioral region
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Pathophysiology and progressive stages of the smile aging process
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Applied muscular anatomy relevant to lower-face and perioral rejuvenation
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Comprehensive smile assessment: clinical evaluation framework and diagnostics
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Skin quality assessment in the lower third of the face
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Target indications for perioral rejuvenation procedures
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Clinical case studies and treatment plan analysis
Lesson 2. Lip Architecture & Smile Harmonization: Ratios, Perioral Lines & Protocols
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Primary objectives and aesthetic goals of lip enhancement
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Ideal lip ratios and anatomical proportions across diverse patient profiles
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Treating downturned oral commissures: age-related etiology and correction techniques
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Perioral wrinkles: etiology and non-surgical treatment options
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Gummy smile management: identifying underlying causes and applying targeted protocols
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Chin and smile harmony: structural assessment and rejuvenation techniques
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Jawline support: anatomical contribution to perioral framing and lower-third definition
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Combination treatment case study
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Developing individualized, patient-centric treatment plans
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Evidence-based analysis: key findings from recent systematic reviews
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Aligning patient expectations with realistic, long-term clinical outcomes
Lesson 3. Neuromodulation Foundations: Mechanisms, Morphotypes & Structural Aging
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Clinical necessity for individualized botulinum toxin therapy
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Botulinum Toxin Type A: pharmacodynamics and mechanism of action
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Multilayered impact of facial aging on skin, fat pads, and dynamic muscle tone
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Structural analysis: characteristics of the youthful vs. aging face
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Classification and analysis of morphological facial types
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How face shape, structural mass, and muscle dynamics alter treatment strategies
Lesson 4. Age-Specific Protocols & Gender-Specific Dosing (20s to 60+)
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Neuromodulation strategies across distinct age cohorts
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Patients in their 20s: preventative dosing and micro-toxin objectives
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Patients aged 30–45: managing dynamic rhytids and early tissue changes
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Patients aged 45–60: age-related structural skin shifts and supportive dosing
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Patients over 60: managing tissue laxity, resting rhytids, and hypertonicity
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Male vs. female facial anatomy: structural differences, muscle mass, and dosing adjustments
Lesson 5. Morphotype-Based Upper/Lower-Face Case Studies & Consultation Workflow
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Forehead morphological variations and tailored injection mapping
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Glabellar muscle complex: hypertonicity patterns and dosing distribution
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Periorbital (crow’s feet) management: youth vs. mature protocols and risk mitigation
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Lower-face morphological characteristics and dynamic muscle balance
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Clinical case analysis: 4 step-by-step morphology-based treatment breakdowns
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Identification and prevention of common injection errors and complications
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Standardized clinical consultation algorithm and assessment workflow
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Key clinical pearls and evidence-based reference review
Lesson 6. Multi-Layered Facial Aging Mechanics: Bone, Fat, Muscle & Skin
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Introduction to facial aesthetics and fundamental concepts
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Pathophysiology of the multi-layered facial aging process
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Age-related skin changes: elastosis, structural rhytids, and sleep compression lines
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The Glogau wrinkle scale: classification and clinical application
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Adipose dynamics: superficial vs. deep cheek fat compartment changes
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Structural comparison: young vs. aging facial characteristics
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Muscle hypertonicity and retaining ligament laxity in aging
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Craniofacial bone resorption: orbital rim, nasal aperture, and lower-face remodeling
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Traditional vs. modern concepts of facial aging with clinical case examples
Lesson 7. Dermal Filler Science: Material Types, Rheology & Hyaluronic Acid Formulations
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Facial aesthetics theory: Golden Ratio, Triangle of Beauty, and the Pyramid of Aging
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History and evolution of dermal fillers in aesthetic medicine
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Resorbable vs. non-resorbable fillers: safety profiles and approved materials
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Calcium Hydroxylapatite (CaHA / Radiesse): characteristics, indications, and mechanisms
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Poly-L-Lactic Acid (PLLA / Sculptra): characteristics, biostimulation, and usage
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Hyaluronic Acid (HA): synthesis, properties, and synthetic vs. animal-derived forms
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Dermal filler rheology explained: elastic modulus, viscosity, and cohesivity
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Variables affecting filler performance: cross-linking technology, concentration, and particle size
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Classification of HA fillers and detailed overview of the Juvéderm Vycross range (Voluma, Volift, Volbella)





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