-15%`The 12-Inch Large Goniometer is a clinical measurement tool designed for assessing joint angles and range of motion (ROM) during physical examination, physiotherapy and rehabilitation. Its longer 12-inch arms make it particularly convenient when assessing larger joints and body segments, including the knee, hip and shoulder. The goniometer uses two arms connected by a central pivot, allowing alignment with anatomical landmarks during joint movement. Clearly marked angular graduations enable the examiner to measure and document joint position and range of motion. Repeated measurements can be used by healthcare professionals to document changes in joint mobility and monitor rehabilitation progress when performed using a consistent measurement technique. KEY FEATURES: • Large 12-inch goniometer • Designed for joint-angle measurement • Suitable for range-of-motion (ROM) assessment • Two-arm design with central pivot • Clearly marked angular scale • Lightweight and portable • Reusable clinical assessment tool • Particularly convenient for larger joints • Suitable for clinical practice and medical training COMMON APPLICATIONS: • Joint range-of-motion assessment • Physiotherapy evaluation • Rehabilitation monitoring • Orthopaedic assessment • Musculoskeletal examination • Sports rehabilitation • Documentation of joint mobility • Clinical skills training COMMONLY ASSESSED JOINTS INCLUDE: • Knee • Hip • Shoulder • Elbow • Ankle • Other appropriate joints IDEAL FOR: • Physiotherapists • Occupational therapists • Orthopaedic practitioners • Rehabilitation professionals • Sports medicine practitioners • Hospitals and clinics • Medical and physiotherapy students • Training institutions PACKAGE CONTENTS: • 1 × 12-Inch Large Goniometer GENERAL USE: Position the centre of the goniometer over the appropriate joint axis and align the stationary and moving arms with the relevant anatomical landmarks. Move or position the joint as required and read the resulting angle from the graduated scale. Consistent patient positioning, anatomical landmark identification and measurement technique are important when comparing serial range-of-motion measurements.`
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