Health Assessment Techniques

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  • View profile for Aqsa Shaheryar Janjua

    “Movement Matters | 🇵🇰 AHPC REGISTERED PHYSICAL THERAPIST”|| DPT’ 23

    2,091 followers

    🩻 1. Normal Shoulder X-ray Findings A normal shoulder X-ray should show: 🔹Glenohumeral joint congruency → the humeral head sits perfectly centered in the glenoid 🔹Uniform joint space → no narrowing or widening 🔹Smooth cortical outlines → no breaks or irregularities 🔹No fracture or dislocation 🔹Normal AC (acromioclavicular) joint alignment 🔹Soft tissues appear normal 💫 Clinically: Even with a normal X-ray, patients may still have soft tissue issues (e.g., rotator cuff tendinopathy), which X-rays cannot detect well. 📸 2. Standard Views Shown 1️⃣AP View (Anteroposterior) → general overview of joint, bones 2️⃣Scapular Y View → best for detecting dislocations 🦴In practice, these views help confirm alignment and rule out major trauma. 3. Normal Radiographic Landmarks You should always identify: ✅Clavicle ✅Acromion ✅Coracoid process ✅Glenoid cavity ✅Humeral head & shaft ✅Greater & lesser tuberosities ✅AC joint ✅Glenohumeral joint ➡️These landmarks guide orientation and help detect subtle abnormalities. ⚠️ 4. Abnormal Shoulder Findings 🔸 Fractures Breaks in clavicle, humerus, scapula, or glenoid Look for: ➡️Cortical disruption ➡️Step deformity ➡️Displacement ✨ Common sites: surgical neck, greater tuberosity 🔸 Dislocation ➡️Anterior dislocation (most common) ➡️Humeral head moves anterior & inferior to glenoid ➡️“Empty glenoid” appearance ☀️Important: Always check for associated fractures 🔸 AC Joint Injury 1️⃣Widened AC joint space 2️⃣Elevated clavicle 3️⃣Increased coracoclavicular distance ❄️Often graded using Rockwood classification 🔸 Rotator Cuff Arthropathy 1️⃣Superior migration of humeral head 2️⃣Reduced subacromial space 3️⃣Degenerative changes ☑️Indicates chronic rotator cuff tear 🔸 Calcific Tendinitis 1️⃣Calcium deposits in rotator cuff (usually supraspinatus) 2️⃣Appears as dense white spots near greater tuberosity ☑️ Can be very painful despite small findings 🔸 Osteoarthritis 1️⃣Joint space narrowing 2️⃣Osteophytes (bone spurs) 3️⃣Subchondral sclerosis & cysts 👉 Seen in chronic degeneration 🔸 Impingement Syndrome 1️⃣Subacromial space < 7 mm 2️⃣Hooked acromion 3️⃣Greater tuberosity sclerosis 👉 Leads to rotator cuff irritation 🔸 Hill-Sachs Lesion 1️⃣Compression defect on posterolateral humeral head 2️⃣Occurs after anterior dislocation 🔸 Bankart Lesion (Bony) 1️⃣Injury to anterior glenoid rim 2️⃣Seen in recurrent dislocations 🔸 Biceps Tendon Pathology 1️⃣Widened bicipital groove 2️⃣Calcification or displacement ➡️ 5. Systematic Assessment Approach 💫Soft Tissue Calcifications Look for calcium in tendons or bursa 💫Alignment Humeral head centered? 💫AC joint aligned? 💫Bone Quality Signs of osteoporosis or lesions 💫Soft Tissue Swelling or gas (infection) 💫Special Views ✅AP → general ✅Y view → dislocation ✅Axillary → anterior/posterior instability ✅AC joint view → ligament injury #Physiotherapy #ShoulderRehab #MSK #Rehabilitation #XRayInterpretation #PhysicalTherapy #Healthcare

  • View profile for Niek Vink

    Sonographer (Cert.),Bsc. Physiotherapy (n.p.), Msc. Clinical Health Science, teacher & public speaker.

    17,137 followers

    The role of probe pressure in shoulder ultrasound: a small action with big impact 💥 Probe pressure is an often underestimated but critical part of a high-quality shoulder ultrasound exam. Used correctly, it can reveal pathology; used incorrectly, it can hide it. When applying probe pressure is useful: 👉🏻 Suspected rotator cuff tears: Gentle pressure can help accentuate partial- or full-thickness tears (see clip). 👉🏻 Sonopalpation: Probe pressure over a thickened AC joint capsule that reproduces the patient’s typical pain helps directly correlate ultrasound findings with symptoms. 👉🏻  Differentiating fluid from solid tissue or a cyst: Effusions or bursal fluid will deform or displace with pressure; solid tissue or a cyst will not. 👉🏻  Dynamic assessment: Subtle delamination or bursal-sided irregularities may become more apparent under controlled compression. When too much pressure is a problem: ❌  Small effusions: Minimal joint or bursal fluid can be completely compressed away. ❌  Painful shoulders: High pressure increases patient discomfort, limits cooperation, and may reduce the quality of dynamic assessment. ❌  Power Doppler assessment: Excess pressure can obliterate low-flow signals, falsely suggesting absence of hyperemia. Practical take-home points: ✅ Start with minimal pressure to detect fluid and hyperemia. ✅ Gradually increase pressure in a controlled way when assessing tendon integrity. ✅ Always adjust pressure to the clinical question and patient tolerance. ✅ If something “disappears” with pressure, that finding itself is diagnostic. Bottom line Probe pressure is not just about image quality—it is a diagnostic tool. Knowing when to press and when not to is essential for accurate shoulder ultrasound interpretation. #ultrasound #ultrasonography #sonography #radiology #MSKUS #echografie #radiologie

  • View profile for Dr Zeeshan Arif (PT)

    Licensed Physical Therapist | AHPC | MSK | NMPT | Dry Needling | BLS | Cupping | Kinesiology | Research Enthusiast

    2,664 followers

    Mastering the Shoulder Exam: A Comprehensive Guide for Clinicians & Students! The shoulder joint is a marvel of mobility, but its complexity often makes diagnosis challenging. A systematic approach is key to uncovering the root cause of pain and dysfunction. Here's a breakdown of the essential steps for a thorough shoulder examination, as depicted in this excellent visual guide: 1. Step 1: Inspection - Look for skin changes, muscle atrophy (e.g., infraspinatus atrophy), and bony abnormalities. - Always compare both shoulders for symmetry. 2. Step 2: Palpation (ABCS Mnemonic) - Acromioclavicular Joint - Biceps Tendon (long head origin at supraglenoid tubercle, short head at coracoid process) - Coracoid Process - Subacromial Space 3. Step 3: Range of Motion & Strength (S.I.T.S. Muscles) - Assess Supraspinatus (Abduction: Drop Arm, Empty Can tests) - Infraspinatus (External Rotation) - Teres Minor (External Rotation) - Subscapularis (Internal Rotation: Gerber Lift Off test) - Remember to compare sides! 4. Step 4: Provocative Tests (B.I.A.S. Mnemonic) - Biceps: Yergason's, Speed's (for biceps tendinopathy) - Impingement: Neer's, Hawkins (for subacromial impingement) - Acromioclavicular: Scarf Test, Cross Arm (for AC joint pathology) - Stability: Apprehension, Load & Shift, O'Brien (for glenohumeral instability) This structured approach ensures no critical detail is missed, leading to more accurate diagnoses and effective treatment plans. What are your go-to tips for a comprehensive shoulder exam? Share your insights below! #ShoulderExam #PhysicalTherapy #Orthopedics #ClinicalSkills #MedicalEducation #Anatomy #Musculoskeletal

  • View profile for Abdalrahman Attia

    Founder of Physical Therapy E-Learning/Physical Therapy Journalist 🎤/Medical Copywriter/Experienced for over 10 Years in Physiotherapy /Private Clinic Owner and Manager/Interested In Medical Digital Marketing.

    7,164 followers

    Recommended Clinical Tests for the Evaluation of Rotator Cuff Disease A, The positive result of the painful arc test, a pain provocation test, is characteristic shoulder pain during abduction of the arm between 60° and 120°, suggesting a subacromial impingement syndrome or rotator cuff disorder due to compression of the rotator cuff muscles and subacromial bursa between the humeral head, acromion, or coracoid process. B, Strength tests assess muscle function of a specific rotator cuff muscle, producing weakness, pain, or both, especially when the patient has a partial rotator cuff tear. During such tests, the patient either moves the arm toward a certain position or maintains a certain position of the arm or shoulder against gravity. The internal rotation lag test evaluates the subscapularis muscle. The external rotation lag test assesses both the supraspinatus and infraspinatus muscles. The drop arm test assesses the integrity of the supraspinatus muscle. A positive test result is an immediate drop of the arm accompanied by pain. C, The external rotation resistance test is a composite test of the infraspinatus muscle. The test is positive when the patient experiences either pain or weakness during the maneuver.

  • View profile for Faizan Khan (PT)

    Attending Integral Institutes Medical Science And Research Lucknow. Physiotherapy Intern | BPT Graduate | Dedicated to Evidence-Based Rehabilitation & Improving Patient Mobility.. Neo Super Speciality Hospital Noida

    3,971 followers

    🟣 Common Shoulder Tests ➟ These orthopedic shoulder tests are commonly used to assess possible labral injuries, shoulder instability, and rotator cuff dysfunction. ➟ The shoulder labrum is a ring of cartilage that helps stabilize the shoulder joint. ➟ Damage to the labrum may cause: ⚠️ Shoulder pain ⚠️ Clicking or catching sensations ⚠️ Weakness ⚠️ Instability ⚠️ Reduced athletic performance ━━━━━━━━━━━━━━━ 🟣 Biceps Load Test II ➟ This test helps evaluate possible superior labral (SLAP) tears. 🧠 How It Works ➟ The shoulder is placed in: • Abduction • External rotation • Elbow flexion ➟ The patient resists force while the examiner applies pressure. ⚠️ Positive Findings ➟ Increased shoulder pain ➟ Deep joint discomfort ➟ Pain during resisted contraction ━━━━━━━━━━━━━━━ 🟣 Pain Provocation Test of Mimori ➟ This test evaluates irritation of the shoulder labrum. 🧠 How It Works ➟ The examiner rotates the forearm from: • Supination → pronation while the shoulder remains abducted and externally rotated. ⚠️ Positive Findings ➟ Increased pain during movement ➟ Pain reduction in one forearm position compared to another ➟ Deep shoulder discomfort ━━━━━━━━━━━━━━━ 🟣 Internal Rotation Resistance Strength Test (Test of Zaslav) ➟ This test assesses labral injury and shoulder stability. 🧠 How It Works ➟ The patient resists both: • External rotation • Internal rotation while the examiner applies force. ⚠️ Positive Findings ➟ Pain ➟ Clicking sensations ➟ Weakness ➟ Feeling of “catching” in the shoulder ━━━━━━━━━━━━━━━ 🟣 Common Signs & Symptoms of Labral Injury ➟ Deep shoulder pain ➟ Clicking or popping ➟ Catching sensation ➟ Weakness with overhead activity ➟ Shoulder instability ➟ Pain during throwing or lifting ➟ Reduced range of motion ━━━━━━━━━━━━━━━ 🟣 Common Causes & Triggers ➟ Repetitive overhead sports Throwing athletes and swimmers are commonly affected. ➟ Heavy lifting Repeated shoulder loading may strain the labrum. ➟ Shoulder dislocation or instability Trauma may damage the cartilage ring. ➟ Falls or sudden traction injuries Sudden pulling forces may injure the biceps-labral complex. ➟ Poor shoulder mechanics Weak rotator cuff and scapular instability may increase stress on the joint. ━━━━━━━━━━━━━━━ 🟣 Management & Treatment ➟ Activity modification Avoid painful overhead activities temporarily. ➟ Physiotherapy Strengthening the rotator cuff and scapular stabilizers may improve shoulder stability. ➟ Mobility exercises Guided stretching may improve shoulder mechanics. ➟ Pain management Anti-inflammatory treatment may help reduce irritation. ➟ Rehabilitation programs Progressive strengthening and neuromuscular training may improve recovery. ➟ Surgery In severe or persistent labral tears, arthroscopic repair may sometimes be required. ━━━━━━━━━━━━━━━

  • View profile for Justas Muzikevcius

    Physiotherapist | Passionate About Teaching & Inspiring Others

    5,136 followers

    Subacromial Pain (SAP) AKA RCRS or Notoriously called shoulder impingement   Call it what you want it (maybe not the latter..)   This is how to get a solid diagnosis   Pathophysiology & Biomechanics   Subacromial pain (SAP) refers to pain in the shoulder region, specifically beneath the acromion, which is the bony prominence at the top of the shoulder blade. The exact cause of subacromial pain is often unclear and could be related to the ligaments, tendons, or the joint capsule in the area 📊 Gold-Standard Diagnostic Method: MRI & Ultrasound However, clinical tests can provide a strong presumptive diagnosis. 1️⃣ Neer’s Test (Passive Elevation in Internal Rotation) Procedure: Forced flexion with internal rotation (IR); pain indicates irritation. Evidence: Sensitivity: 79%, Specificity: 53% (Hegedus et al., 2012). A negative test helps rule it out, but positive should be confirmed with other tests. 2️⃣ Hawkins-Kennedy Test Procedure: 90° shoulder flexion, internal rotation; pain indicates irritation. Evidence: Sensitivity: 80%, Specificity: 56% (Michener et al., 2009). Used as part of an SAP test cluster. 3️⃣ Painful Arc Test Procedure: Active abduction; pain between 70°–120° suggests SAP. Evidence: Sensitivity: 53–81%, Specificity: 55–84% (Park et al., 2005). Best used with Hawkins-Kennedy & Neer’s tests. SAP Test Cluster (Park et al., 2005) ✔️ Hawkins-Kennedy + Painful Arc + Infraspinatus Weakness ✔️ 3/3 Positive = 95% Probability of SAP --- This is a snippet of my weekly newsletter where I break down sports medicine research & provide clinical tips Learn More --> https://lnkd.in/eeqWt2TF Study:  Yang, S., Kim, T.U., Kim, D.H. and Chang, M.C., 2021. Understanding the physical examination of the shoulder: a narrative review. Annals of palliative medicine, 10(2), pp.2293303-2292303.

  • View profile for Andre Mansano, MD TSA, P.h.D., FIPP, CIPS

    Interventional Pain Physician at Hospital Israelita Albert Einstein

    4,890 followers

    Sacroiliac joint (SIJ) complex pain is not rare, and we are probably missing it. New consensus guidelines estimate that it accounts for roughly 15–30% of chronic low back pain below L5, including many patients labelled as having “failed back surgery.” The international working group reviewed the best available evidence on how to diagnose and treat SIJ complex pain. They emphasise that the joint is a complex structure in which pain may arise from intra-articular sources, the surrounding dorsal ligaments, or both, which helps explain why clinical presentation is often confusing. Clinically, a combination of history and targeted provocative tests can raise or lower the suspicion for SIJ pain, but physical examination alone is not enough. Clusters of three or more positive tests improve sensitivity, while negative tests are more useful to rule the diagnosis out than positive tests are to confirm it. Imaging has limited value for mechanical, non-inflammatory SIJ pain and cannot reliably distinguish intra- from extra-articular sources. For now, image-guided diagnostic injections with local anaesthetic remain the reference standard, despite their own false-positive and false-negative issues. On the treatment side, the guidelines highlight that steroid injections, both intra-articular and extra-articular, can offer short-term relief in well-selected patients, with slightly stronger evidence for extra-articular injections. There is weak evidence supporting prolotherapy and platelet-rich plasma. The most robust data are for sacral lateral branch radiofrequency ablation (RFA), which can provide pain relief for six months or longer when appropriate prognostic blocks are used. Minimally invasive SIJ fusion may help a subset of carefully selected patients who fail conservative care, but the overall evidence remains weak. In practice, SIJ complex pain should be managed with an interdisciplinary, multimodal approach that includes education, rehabilitation, optimisation of psychosocial factors, pharmacologic therapy and stepwise interventional options instead of going directly to surgery. This helps avoid unnecessary procedures and focus resources where they are most likely to help. My own takeaway is that SIJ complex pain is often under-recognised, over-treated with non-specific interventions, and under-treated with targeted ones. Structured clinical assessment together with image-guided diagnostic injections should guide us towards more precise therapies, reserving RFA or fusion for truly appropriate cases. In selected patients, regenerative techniques such as platelet-rich plasma and stem cell–based approaches may be considered as adjuncts, but always with careful discussion about the still-limited evidence and the need for ongoing research. Reference McCormick ZL, Hurley RW, Anitescu M, et al. Consensus practice guidelines on sacroiliac joint complex pain from a multispecialty, international working group. Reg Anesth Pain Med. 2025;0:1–80.

  • View profile for Dr.Hassan Sajjad Khan,PT,DPT,AHPC 🇵🇰,DHA 🇦🇪,MPPTA🇵🇰

    “Empowering Movement | Expert in Rehabilitation & Pain Management | Helping You Heal,One Step at a Time”

    2,038 followers

    "ROTATOR CUFF TENDINITIS: Pathophysiology,Physiotherapy Diagnostic tests,Physiotherapy treatment...." >Introduction.... Rotator cuff tendinitis, also known as rotator cuff tendinopathy or shoulder impingement syndrome (when associated with impingement), is a common cause of shoulder pain, especially in athletes and individuals engaged in repetitive overhead activities. It involves inflammation or degeneration of the rotator cuff tendons, most frequently affecting the supraspinatus tendon. >Pathophysiology.... The rotator cuff comprises four muscles:Supraspinatus,Infraspinatus,Teres minor, and Subscapularis. -Repetitive microtrauma: Overuse, particularly in overhead motions, can cause tendon irritation and inflammation. -Impingement: Compression of the supraspinatus tendon between the acromion and humeral head during arm elevation. -Age-related degeneration: degenerative changes, including decreased vascularity and collagen disorganization, leading to a higher risk of tendinopathy. >Clinical Presentation.... Patients typically present with: -Dull, aching pain localized to the lateral shoulder,Pain aggravated by overhead activities. -Night pain, particularly when lying on the affected side. -Decreased shoulder range of motion. -Weakness in abduction and external rotation. >Special Diagnostic Tests.... 1. Neer Impingement Test; Pain indicates supraspinatus or biceps tendon impingement. 2. Hawkins-Kennedy Test; Pain suggests subacromial impingement. 3. Empty Can(Jobe’s)Test; indicates supraspinatus involvement. 4. Drop Arm Test; 5. Painful Arc Test; Active abduction elicits pain between 60–120 degrees. Suggestive of subacromial impingement or rotator cuff irritation. >Physiotherapy Treatment.... Treatment typically progress through phases: •)Phase 1: Pain and Inflammation Management; -Rest and activity modification: Avoid overhead movements and heavy lifting. -Cryotherapy: Apply ice for 15–20 minutes, 3–4 times daily to reduce inflammation. -NSAIDs: Help control inflammation in acute stages. -Electrotherapy modalities: Ultrasound or TENS may reduce pain and promote healing. •)Phase 2: Range of Motion and Flexibility; -Gentle passive and active ROM exercises: Focus on restoring pain-free mobility. -Posterior capsule stretches (e.g cross-body adduction) -Pec minor and upper trapezius stretches to improve scapular kinematics •)Phase 3: Strengthening and Motor Control; -Isometric strengthening: -Progressive resistance exercises: ~Supraspinatus: Side-lying external rotation. ~Infraspinatus and teres minor: Theraband external rotation. ~Subscapularis: Internal rotation exercises. ~Scapular stabilizer training: Emphasize lower trapezius and serratus anterior. •)Phase 4: Functional and Sport-Specific Rehabilitation; -Plyometric and proprioceptive training: For athletes or high-demand individuals. -Neuromuscular control: Rhythmic stabilization drills, closed-chain exercises. -Gradual return to activity: Tailored to occupational or sporting needs.

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