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OCS7 – Bone, Cartilage, LE Muscle Anatomy & OMM | 90+ Verified Q&A | Histology, Growth Mechanisms, ME Technique | 2025/2026

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This document offers 90+ exam-level, clinically integrated questions with accurate answers for the OCS7 (Objective Clinical Skills – Week 10 Donor/Integrative/OMM) module at Medical University, tailored for the 2025/2026 academic year. It integrates bone and cartilage histology, lower extremity musculoskeletal anatomy, and OMM techniques, with a special focus on muscle energy (ME) applications and diagnostic skills required for osteopathic physical exams. Key topics include: Bone Structure & Cell Types: Includes microanatomy of compact and spongy bone, osteons, and the Haversian system, with identification and function of osteoblasts, osteocytes, and osteoclasts. Ossification & Bone Growth: Differentiates intramembranous vs endochondral ossification, growth plate histology (zones of proliferation, hypertrophy), and signaling via RankL pathway for osteoclast regulation. Cartilage Types & Growth: Distinguishes hyaline, elastic, and fibrocartilage by fiber content, cell arrangement, perichondrium presence, and function. Explains appositional vs interstitial growth via chondroblast activity and isogenous groups. Lower Extremity Muscles: Organized by compartments and function (hip flexors, extensors, gluteals, adductors, quadriceps, hamstrings, rotators). Students are expected to identify origin, insertion, nerve supply, and action of major muscles including psoas major, gluteus medius/minimus, obturators, and sartorius. OMM: Muscle Energy (ME) Technique: Comprehensive instruction on diagnosing and treating LE somatic dysfunctions (e.g., psoas imbalance, hip rotation restriction, fibular head dysfunctions), including safety protocols, force guidelines, and classification as active/direct technique. Knee Joint Mechanics: Concepts like the screw-home mechanism, fibular head motion, ligament palpation (MCL, LCL), IT band landmarks, and TART evaluation techniques for asymmetry and ROM are emphasized. Practical OMM Setups: Includes step-by-step ME protocols for hip, knee, and ankle—covering flexion/extension, internal/external rotation, and joint mobilization with clinical safety considerations (e.g., DVT, fractures, low vitality patients). This resource is perfect for: DO and MD students preparing for OMM labs, OSCEs, and systems exams PT, PA, and Sports Medicine students focusing on joint mechanics and functional movement Preclinical learners studying musculoskeletal histology, anatomy, and manual techniques Keywords: bone histology, osteoblasts, osteoclasts, cartilage types, endochondral ossification, muscle energy, OMM lower extremity, hip dysfunction, fibular head treatment, LE muscles, TART, RankL pathway, periosteum, hyaline cartilage, appositional growth, quadriceps anatomy, screw-home mechanism, ligament palpation

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OCS: Week 10 Donor, Integrative, OCS,
OMM, Illness Scripts 2025/2026 Exam
Questions and Answers | A+ Score
Assured



INT: Basic structure of bone - cortex & medulla - 🧠ANSWER ✔✔*pending


INT: Parts of a long bone - epiphysis, diaphysis, & metaphysics -

🧠ANSWER ✔✔pending***


INT: Structure of the cortex - the osteon & the Haversian systems -

🧠ANSWER ✔✔pending***


INT: Cells of bone: osteocytes, osteoblasts & osteoclasts - 🧠ANSWER ✔✔


INT: Intramembranous ossification - 🧠ANSWER ✔✔

, INT: Control of the osteoclast - RankL system - 🧠ANSWER ✔✔


INT: Differentiate the three major cartilage types (hyaline,elastic and

fibrocartilage) - 🧠ANSWER ✔✔


INT: Demonstrate cells and structures in cartilage(chondroblast,

chondrocyte, lacunae, matrix, etc.) - 🧠ANSWER ✔✔


INT: Differentiate appositional and interstitial growth. Demonstrate

evidence of each (isogenous groups,territorial matrix, perichondrium, etc.) -

🧠ANSWER ✔✔■appositional (add to existing cartilage)


→occurs at perichondrium

→where chondroblasts are




■interstitial (create in middle of tissue)

→isogenous groups (stained as multiple cells in group, indicative of

chondrocyte mitosis)

→territorial matrix

→inter-territorial matrix


INT: Describe endochondral ossification - 🧠ANSWER ✔✔

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