Ultrasound & Radiology Mastery Program

Ultrasound & Radiology Mastery Program

Sale price  Rs. 299.00 Regular price  Rs. 999.00
Skip to product information
Ultrasound & Radiology Mastery Program

Ultrasound & Radiology Mastery Program

Sale price  Rs. 299.00 Regular price  Rs. 999.00

ULTRASOUND & ECHOCARDIOGRAPHY MASTERY PROGRAM

Master the probe. Master the diagnosis.

The most comprehensive ultrasound and echocardiography training available online — covering every major clinical specialty from first principles to advanced diagnostic and interventional technique.

20 structured modules. 300+ HD video lectures. Lifetime access, on any device, at your own pace.

Whether you're a medical student about to start clinical rotations, an intern trying to scan with confidence at the bedside, a postgraduate entrance aspirant who needs to stop guessing on image-based questions, or a practicing clinician expanding into echocardiography or guided procedures — this program is built to meet you exactly where you are, and take you all the way to expert-level competence.

WHO THIS COURSE IS FOR

This program is designed for a wide range of learners across the clinical journey.

Medical students entering clinical rotations who need real bedside skills, not just textbook theory.

Interns building diagnostic confidence at the point of care, often for the first time.

Postgraduate entrance aspirants who need to master image-based questions — one of the most consistently underprepared-for question types in competitive exams.

Junior and senior residents across internal medicine, surgery, emergency medicine, obstetrics, cardiology, and radiology, who need scanning and interpretation skills their residency alone doesn't fully teach.

Nurses and sonographers working in imaging or critical care environments who want protocol-driven, exam-ready scanning skills.

Practicing clinicians looking to expand into advanced echocardiography, TEE, or ultrasound-guided procedures.

Whether you're picking up a probe for the very first time or you're an experienced clinician sharpening a specific subspecialty skill, the course structure meets you at your current level and builds forward from there.

WHY THIS COURSE — AND NOT ANOTHER ONE

Most ultrasound courses cover one area well and leave you to piece the rest together yourself — an abdominal course here, a POCUS crash course there, a separate paid resource for echo. You end up with fragments, not a system.

This program was built differently. It's structured as a single, continuous pathway — from the physics of how ultrasound actually works, through every major organ system, into advanced echocardiography, TEE, strain imaging, and guided procedures. You always know exactly what to learn next. Nothing is scattered, nothing is guesswork.

It is, in effect, a full ultrasound and echocardiography education compressed into one program — the kind of depth that would otherwise require stitching together five or six separate paid courses.

FULL CURRICULUM

Module 1 — Foundations of Ultrasound

Every expert sonographer begins with a thorough understanding of how ultrasound works at a physical level. This module builds the complete theoretical and practical foundation required for clinical scanning: the physics of sound wave propagation through tissue, frequency and wavelength relationships, acoustic impedance and reflection, attenuation and depth penetration, probe types and their clinical applications, piezoelectric crystal function, and transducer selection for different body regions.

You'll also learn B-mode and M-mode imaging, harmonic imaging, and the image optimization techniques that separate a clear diagnostic scan from a frustrating one — gain, depth, focal zone, and time-gain compensation. The module closes with systematic probe orientation, image plane conventions, and artifact recognition, including shadowing, enhancement, reverberation, and mirror-image artifacts.

Module 2 — Scanning Technique & Image Orientation

This module bridges theory and clinical practice. You'll learn how to hold and maneuver a transducer with precision, including the four fundamental probe movements — sliding, rocking, fanning, and rotating — along with patient positioning for each body region and documentation standards for diagnostic reporting.

Standard imaging planes across abdominal, cardiac, vascular, and pelvic regions are demonstrated step by step. The module also addresses the practical challenges that actually show up in clinical practice — scanning through obesity, bowel gas interference, and limited acoustic windows — the skills that separate a competent sonographer from an excellent one.

Module 3 — Echocardiography Core

A complete introduction to cardiac ultrasound for clinicians at every level. This module establishes the standard transthoracic echocardiographic (TTE) windows — parasternal long axis, parasternal short axis, apical two-chamber, apical four-chamber, apical five-chamber, subcostal, and suprasternal views.

You'll learn to identify all four cardiac chambers, the interventricular septum, the papillary muscles, the cardiac valves, the pericardium, and the great vessels in each standard view, along with a clear, systematic approach to assessing left ventricular size, wall thickness, and global function. Introductory Doppler principles — colour flow mapping, pulsed-wave Doppler, and continuous-wave Doppler — are introduced in full clinical context.

Module 4 — Echocardiography: Valvular Heart Disease

Valvular pathology is one of the most clinically important and exam-relevant areas of echocardiography, and this module provides a detailed, structured approach to all four cardiac valves.

For the aortic valve, you'll learn to assess morphology, identify bicuspid valve anatomy, and grade aortic stenosis using mean gradient, peak velocity, and valve area calculation, along with recognizing aortic regurgitation severity. For the mitral valve, the module covers mitral stenosis grading by planimetry and pressure half-time, mitral regurgitation quantification including vena contracta and the PISA method, and mitral valve prolapse identification. Tricuspid valve assessment covers regurgitation severity and right heart pressure estimation, with pulmonary valve evaluation also included.

A dedicated section covers prosthetic valve types — mechanical and bioprosthetic — with normal versus pathological Doppler profiles and how to recognize prosthetic valve dysfunction and paravalvular leak.

Module 5 — Echo: Pericardium, Right Heart & Aorta

This module addresses three areas frequently underassessed in clinical practice.

The pericardial section covers normal pericardial anatomy, pericardial effusion grading, tamponade physiology and its echocardiographic signs — including right atrial and right ventricular collapse and respiratory variation in Doppler — plus constrictive pericarditis versus restrictive cardiomyopathy differentiation.

The right heart section covers tricuspid annular plane systolic excursion (TAPSE), right ventricular fractional area change, and pulmonary artery pressure estimation from the tricuspid regurgitation jet velocity.

The aortic section covers aortic root dimensions, ascending aorta assessment, and recognition of aortic dilatation, dissection flaps, and intramural haematoma patterns.

Module 6 — Advanced Echo Techniques

This module covers the higher-level tools that characterize expert echocardiographic practice. Diastolic function assessment is taught in full — E/A ratio, deceleration time, tissue Doppler E′ velocity, E/E′ ratio, left atrial volume index, and tricuspid regurgitation velocity — structured according to current grading algorithms for diastolic dysfunction.

You'll also cover contrast echocardiography principles and clinical indications, including left ventricular opacification and myocardial perfusion imaging, plus cardiac resynchronization therapy (CRT) assessment — dyssynchrony evaluation and response prediction. Three-dimensional echocardiography concepts and clinical applications round out the module for learners advancing into subspecialty practice.

Module 7 — Transesophageal Echocardiography (TEE)

23 structured video lectures covering the full scope of transesophageal echocardiography — one of the most advanced cardiac imaging modalities in clinical medicine.

You'll start with indications, contraindications, patient preparation, sedation, and probe insertion technique, followed by imaging fundamentals — probe mechanics, standard imaging planes at 0°, 45°, 90°, and 135°, and a systematic examination protocol.

From there, the module covers source-of-embolism workup (left atrial appendage assessment, patent foramen ovale, atrial septal defect, aortic atheroma), arterial shunt assessment and bubble study interpretation, full thoracic aorta evaluation and dissection classification, and endocarditis — vegetations, abscess formation, valvular destruction, and why TEE outperforms TTE here.

Advanced sections cover detailed mitral valve apparatus anatomy and Carpentier classification for surgical planning, TEE use in the ICU and post-cardiac surgery for hemodynamic monitoring, differentiation of thrombus, myxoma, papillary fibroelastoma, and vegetations, and TEE-guided monitoring of structural interventions including TAVI, MitraClip, and closure devices.

Module 8 — Point-of-Care Ultrasound (POCUS)

9 focused clinical videos covering rapid bedside assessment across all major organ systems: cardiac POCUS (global function, effusion, tamponade screening), lung ultrasound (pleural effusion, pneumothorax, B-lines and interstitial syndrome, consolidation), obstetric POCUS (first trimester viability, fetal cardiac activity, pregnancy-related emergencies), renal assessment (hydronephrosis, renal calculi, bladder), biliary tract (gallstones, gallbladder wall assessment, biliary dilatation), abdominal aortic aneurysm rapid screening, MSK ultrasound (joint effusion, soft tissue, fracture detection) across two parts, and DVT compression ultrasound.

Module 9 — Emergency & Trauma Ultrasound

Two complete tracks for emergency clinicians.

The beginner track (12 videos) covers an introduction to clinical ultrasound in emergency medicine, physics for emergency practitioners, instrumentation and image retrieval, abdominal and retroperitoneal assessment, abdominal aortic pathology, biliary and renal ultrasound, ultrasound-guided procedures, female pelvic anatomy and gynecologic pathology, first trimester pregnancy assessment, and trauma ultrasound with the FAST examination.

The advanced emergency track covers aortic valve pathology, Doppler physics in clinical context, DVT assessment and compression protocol, left and right ventricular evaluation in the emergency patient, heart valve pathology recognition, pulmonary ultrasound in respiratory failure, and resuscitation ultrasound during cardiac arrest and shock.

Module 10 — Abdominal Ultrasound

The most detailed abdominal sonography training in the program — 40+ videos across two tracks.

The core organ series covers abdominal scanning overview, ultrasound basics and normal anatomy landmarks, liver sonography across 4 parts (size, echotexture, fatty liver, cirrhosis, hepatic masses including haemangioma, focal nodular hyperplasia, hepatocellular carcinoma, and metastases, plus hepatic vasculature), gallbladder assessment (gallstones, sludge, polyps, cholecystitis, wall thickening, biliary tree dilatation), kidney sonography (size, cortical thickness, corticomedullary differentiation, hydronephrosis grading, calculi, cysts, and solid masses), adrenal gland sonography, pancreas assessment (echo texture, pancreatitis, duct dilatation, masses), great vessel assessment, and pelvis evaluation covering the urinary tract, bladder, ureters, and prostate.

The extra content series (13 supplementary videos) adds first and second trimester pregnancy sonography, intrauterine assessment, ectopic pregnancy recognition and management, and advanced abdominal scanning technique refinement.

Module 11 — Vascular Ultrasound

Dedicated vascular sonography covering the full spectrum of peripheral and central vascular assessment: systematic lower and upper limb venous mapping, DVT compression protocol, colour Doppler waveform interpretation, venous insufficiency assessment, arterial duplex scanning for peripheral arterial disease, carotid and vertebral artery examination, renal artery Doppler, and mesenteric vascular scanning.

Spectral waveform analysis is taught in depth, including resistive index calculation, triphasic versus monophasic waveform recognition, and stenosis grading.

Module 12 — Carotid Ultrasound

A complete, structured carotid imaging course delivered across 23 video lectures and 5 detailed PDF reference chapters.

The PDF chapters cover the fundamentals of carotid imaging, imaging essentials and equipment, technique and protocol for imaging carotid vessels, pathology recognition and reporting, and therapy planning and management overview.

The 23-lecture video series opens with course orientation, stroke pathophysiology, carotid anatomy, and ultrasound-anatomy correlation, then moves through scanning principles, instrumentation, and scanning technique across two dedicated sessions. The remaining lectures cover advanced carotid imaging — plaque characterization, stenosis grading using NASCET criteria, colour Doppler waveform analysis, velocity ratios, near-occlusion recognition, post-intervention assessment, and reporting standards.

Module 13 — OB-GYN Ultrasound

Two complementary sub-modules covering obstetric and gynecologic ultrasound from first principles to clinical pathology.

The introductory OB-GYN track (6 videos) covers female pelvic anatomy through a sonographic lens, anatomy of the female reproductive system, the history of gynecologic ultrasound, menstrual cycle physiology correlated with ultrasound appearances, standard gynecologic scanning protocols (transabdominal and transvaginal), and ultrasound basics specific to OB-GYN.

The gynecology clinical module (5 videos) covers ultrasound of the reproductive and urinary tract in women, IUD localisation (normal position, malposition, and perforation assessment), and the most common gynecologic pathologies across two parts — fibroids, polyps, and endometrial pathology, followed by ovarian cysts, dermoids, endometriomas, and malignancy features.

Module 14 — Pediatric Ultrasound

An 11-video dedicated pediatric sonography course covering the unique challenges, anatomy, and pathology of imaging neonates, infants, and children — from equipment and child-specific approach, ultrasound physics in the pediatric context, and instrumentation for small patients, through vascular access guidance, trauma and retroperitoneal ultrasound, and normal pediatric organ sizes and pathology.

Clinically focused sessions cover appendicitis and intussusception recognition, soft tissue and MSK ultrasound in children, basic cardiac ultrasound and congenital heart disease screening views, pulmonary ultrasound in neonates and children, and critical care ultrasound for pediatric patients.

Module 15 — MSK Ultrasound & Guided Injections

The most practical MSK module in the program — combining a comprehensive anatomy and pathology atlas with a full video course on ultrasound-guided injection technique.

The downloadable atlas covers lower extremity anatomy and pathology (ankle, hip, knee), upper extremity anatomy and pathology (elbow, shoulder, wrist), and standardized protocol positions for both regions, plus 3 introductory reference guides to MSK ultrasound.

The 7-module injection course covers indications, equipment, and safety for guided procedures, in-plane versus out-of-plane technique and needle visualization principles, upper limb injections (shoulder joint, subacromial bursa, AC joint, biceps tendon sheath, elbow, wrist, and finger joints), hip and lower limb injections (hip joint, greater trochanteric bursa, iliopsoas tendon sheath), knee assessment and injections (including Baker's cyst aspiration), foot and ankle injections (tibiotalar joint, subtalar joint, plantar fascia, Morton's neuroma), and a closing session on advanced techniques, difficult anatomy, and complication avoidance.

Module 16 — Right Heart Masterclass

A 16-video advanced module dedicated entirely to right heart assessment — one of the most clinically underappreciated and exam-relevant areas of echocardiography.

Topics include right heart anatomy and normal dimensions, arrhythmogenic right ventricular assessment, a 4-part systematic RV evaluation series (size, function, and wall motion), right heart physiology, pulmonary embolism (acute right heart strain and McConnell's sign), pulmonary hypertension across 3 parts (classification, Doppler estimation of pulmonary artery pressure, and monitoring), right heart in congenital heart disease, right heart volume assessment via IVC collapsibility, correlation with CT and MRI, and right ventricular infarction recognition in coronary artery disease.

Module 17 — Cardiac Filming & Pericardial Disease

17 videos covering three clinically important and often overlapping conditions.

Pericardial disease (5 videos): pericarditis, pericardial effusion grading, constrictive pericarditis echocardiographic criteria, tamponade physiology, and interventional guidance.

Restrictive cardiomyopathy (4 videos): differentiation from constrictive pericarditis, tissue Doppler criteria, biatrial enlargement patterns, and clinical case analysis.

Diastolic dysfunction (8 videos): a complete, step-by-step assessment from Grade 1 impaired relaxation through Grade 3 restrictive filling, covering every current grading parameter — E/A ratio, E′, E/E′, pulmonary venous flow, and left atrial volume index.

Module 18 — Speckle Tracking & Strain Imaging

Two complete sub-modules combining clinical application and academic depth — making this one of the most thorough strain imaging curriculums available in any online course.

The clinical masterclass (9 videos) covers the physiological basis of deformation imaging, methodology and normal reference values, equipment and image quality requirements, thick myocardium differentiation across 3 parts (hypertrophic cardiomyopathy, athlete's heart, infiltrative disease), dilated cardiomyopathy and global longitudinal strain, cardio-oncology monitoring across 3 parts, mechanical dyssynchrony for CRT planning, coronary artery disease and regional strain abnormalities across 2 parts, and stress echocardiography with strain.

The compendium reference track (12 videos) covers the fundamentals of strain and speckle tracking, the limitations of ejection fraction as a sole measure of function, deformation imaging acquisition protocols and quality standards, normal versus abnormal strain patterns, strain differentiation in LV hypertrophy, dilated cardiomyopathy application, cardio-oncology surveillance protocols, dyssynchrony assessment and reporting, strain-based ischaemia localisation in coronary artery disease, and strain application in valvular heart disease.

Module 19 — Cardiac Quantification

A dedicated module focused on the precise measurement and quantification of cardiac function — essential for both clinical reporting and postgraduate examination.

Chapter 1: Left ventricular hypertrophy — LV mass calculation, concentric versus eccentric hypertrophy, and clinical causes.

Chapter 2: Left ventricular size and mechanics — chamber dimensions, volumes, and ejection fraction methods including biplane Simpson's.

Chapter 3: Quantification and problems of LV function — the limitations of EF, when to use GLS, and integrated assessment.

Chapter 4: Speckle tracking findings in quantification — practical application of strain values in clinical reporting.

Chapter 6: The right ventricle — RV quantification parameters including TAPSE, RV FAC, S′, and 3D RV volumes.

Module 20 — Premium Bonus Content

An extensive library of additional advanced content included with the program.

The advanced echocardiography bonus series (20 lectures) covers contrast echocardiography across 2 parts, a complex multi-pathology case series with expert commentary, advanced mitral regurgitation assessment (quantification, surgical timing, follow-up), new frontiers in cardiac imaging across 3 parts, right heart biomechanics across 3 parts, advanced strain and speckle tracking cases, unsolved and complex echocardiography case discussions, rare and unusual cardiac findings, and echocardiography in broader clinical context.

You'll also get access to 20+ live webinar recordings, including cardiac and echocardiography webinars on current clinical topics, live case discussions with expert faculty, and interactive diagnostic reasoning sessions.

WHAT YOU GET

20 structured modules, 300+ HD video lectures

Downloadable anatomy atlases and scanning protocol reference packs

PDF reference chapters (carotid imaging, MSK, and more)

20+ live webinar and case-discussion recordings

Lifetime access — no expiry, on any device, at your own pace

Start scanning with confidence.

Add to Cart — Rs. 299

Lifetime access. Learn at your own pace, on any device.

You may also like