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100+ Free UPMSP Artificial Limb & Organ Tech Practice Questions

Prepare for the Uttar Pradesh UPMSP Intermediate (Class 12) Artificial Limb and Organ Technique — Vocational Code 233 exam with instant access — no signup required.

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2026 Statistics

Key Facts: UPMSP Artificial Limb & Organ Tech Exam

3h 15m

Duration of UPMSP Class 12 Artificial Limb & Organ Technique examination

UPMSP Official Syllabus

100 Marks

Total paper weightage for Code 233 vocational paper

UP Board Examination Scheme

33%

Minimum passing mark required

UPMSP Regulations

100 MCQs

Practice questions provided in this comprehensive question bank

OpenExamPrep

Master UPMSP Class 12 Artificial Limb & Organ Technique (Code 233) with 100 verified MCQs covering Musculoskeletal Biomechanics, O&P Classification, Prosthetic Materials, Casting & Mold Prep, Fabrication & Alignment, and Rehabilitation Gait Training.

Sample UPMSP Artificial Limb & Organ Tech Practice Questions

Try these sample questions to test your UPMSP Artificial Limb & Organ Tech exam readiness. Each question includes a detailed explanation. Start the interactive quiz above for the full 100+ question experience with AI tutoring.

1Which bone serves as the main weight-bearing long bone of the lower leg located medially?
A.Tibia
B.Fibula
C.Femur
D.Radius
Explanation: The tibia is the larger and medially located bone of the lower leg that bears the majority of body weight transmitted from the femur to the foot.
2In human biomechanics, movement of a limb sideways away from the anatomical midline of the body is called:
A.Abduction
B.Adduction
C.Flexion
D.Extension
Explanation: Abduction is movement in the frontal plane away from the central midline of the body.
3Which anatomical plane divides the human body into anterior (front) and posterior (back) portions?
A.Coronal plane
B.Sagittal plane
C.Transverse plane
D.Axial plane
Explanation: The coronal (or frontal) plane passes vertically through the body, dividing it into front (anterior) and back (posterior) sections.
4The patella (kneecap) is anatomically classified as which type of bone?
A.Sesamoid bone
B.Flat bone
C.Irregular bone
D.Long bone
Explanation: The patella is the largest sesamoid bone in the body, embedded within the tendon of the quadriceps femoris muscle to increase lever arm efficiency.
5Which muscle group is primarily responsible for extending the knee joint during the stance phase of gait?
A.Quadriceps femoris
B.Hamstrings
C.Gastrocnemius
D.Tibialis anterior
Explanation: The quadriceps femoris (rectus femoris, vastus lateralis, vastus medialis, vastus intermedius) extends the knee and stabilizes it during loading response.
6During normal human gait at a standard walking cadence, what percentage of the total gait cycle is spent in the stance phase?
A.Approximately 60%
B.Approximately 40%
C.Approximately 80%
D.Approximately 20%
Explanation: In normal walking gait, stance phase accounts for roughly 60% of the gait cycle, while swing phase accounts for the remaining 40%.
7Which anatomical surface of the transtibial residual limb is pressure-tolerant and utilized for primary weight-bearing in a PTB socket?
A.Patellar tendon bar and medial tibial flare
B.Fibular head and distal tip of tibia
C.Tibial crest and distal fibula
D.Hamstring tendon insertions
Explanation: The patellar tendon bar, medial tibial flare, and pretibial muscle belly are pressure-tolerant zones capable of bearing axial loads in transtibial sockets.
8Which anatomical landmark on a below-knee residual limb is pressure-sensitive and requires relief in socket design?
A.Fibular head
B.Medial tibial flare
C.Patellar tendon
D.Pre-tibial muscle belly
Explanation: The fibular head has superficial peroneal nerve supply and prominent bone, making it extremely pressure-sensitive and requiring relief (relief pocket).
9Which subphase of the gait stance phase begins at initial heel contact and ends when the full plantar surface of the foot touches the ground?
A.Loading response
B.Mid-stance
C.Terminal stance
D.Pre-swing
Explanation: Loading response (foot flat phase) begins immediately after initial contact (heel strike) and continues until the contralateral foot leaves the ground.
10What is the primary biomechanical function of the gluteus medius muscle during single-limb support in gait?
A.Prevents contralateral pelvic drop
B.Flexes the hip joint during swing
C.Extends the knee during stance
D.Plantarflexes the ankle at push-off
Explanation: The gluteus medius abducts the stance hip to hold the pelvis level, preventing the contralateral side of the pelvis from dropping (Trendelenburg sign).

About the UPMSP Artificial Limb & Organ Tech Exam

The Uttar Pradesh UPMSP Intermediate (Class 12) Artificial Limb and Organ Technique (Code 233) examination is a specialized vocational subject under UP Board. It prepares students for technical careers in prosthetics and orthotics (P&O), covering musculoskeletal biomechanics, device classification, advanced materials (thermodynamics of plastics, carbon fiber composites), plaster casting, socket rectification, precision bench and dynamic alignment, and amputee gait rehabilitation.

Assessment

Theory and practical examination compulsory for Class 12 Vocational stream students specializing in Artificial Limb and Organ Technique under UP Board. Evaluates musculoskeletal anatomy, prosthetic and orthotic device classification, material science, impression taking, mold rectification, bench alignment, and patient rehabilitation.

Time Limit

3 hours 15 minutes (195 minutes)

Passing Score

Minimum 20 of 60 in each written paper, 33% in the 300-mark theory aggregate, and 50% (200 of 400) in the practical examination

Exam Fee

₹600.75 for institutional (regular) Intermediate candidates in the vocational class and ₹806 for private candidates for the 2026 examination. UPMSP charges one registration fee per candidate, not per subject paper. (Uttar Pradesh Madhyamik Shiksha Parishad (UPMSP))

UPMSP Artificial Limb & Organ Tech Exam Content Outline

17%

Human Musculoskeletal Anatomy & Biomechanics

Skeletal structures of lower and upper extremities, joint mechanics, muscle actions, ground reaction forces, center of gravity, normal gait cycle phases, and residual limb pressure tolerance.

17%

Orthotics & Prosthetics Classification

Definitions and distinctions of orthoses vs. prostheses, upper and lower limb amputation levels, orthotic terminology (FO, AFO, KAFO, HKAFO, TLSO, CTLSO), body-powered vs. myoelectric systems, and structural designs.

16%

Materials Used in Prosthetics & Orthotics

Physical properties of thermoplastics (polypropylene, HDPE), thermosetting resins (acrylic, polyester), reinforcement fibers (carbon fiber, Kevlar), metals (titanium, stainless steel), and cushion liners (Pelite, silicone, TPE).

17%

Measurement Taking, Casting & Mold Preparation

Clinical evaluation, anatomical landmark mapping with indelible pencil, plaster of Paris negative impression taking, positive plaster model pouring, rectifications (carving pressure-tolerant areas, building up relief for bony prominences), and CAD/CAM 3D scanning.

17%

Fabrication, Fitting & Alignment of Limbs

Socket design principles (PTB, TSB, Quadrilateral, Ischial Containment), suspension systems (pin-lock, suction, sleeve), prosthetic components (pylons, knees, feet), bench alignment, static standing alignment, and dynamic gait alignment.

16%

Rehabilitation & Patient Gait Training

Post-operative residual limb care (figure-of-eight wrapping, edema control), contracture prevention, phantom limb management, gait deviation identification (vaulting, whips, Trendelenburg lean, buckling), sock ply management, and rehabilitation team roles.

How to Pass the UPMSP Artificial Limb & Organ Tech Exam

What You Need to Know

  • Passing score: Minimum 20 of 60 in each written paper, 33% in the 300-mark theory aggregate, and 50% (200 of 400) in the practical examination
  • Assessment: Theory and practical examination compulsory for Class 12 Vocational stream students specializing in Artificial Limb and Organ Technique under UP Board. Evaluates musculoskeletal anatomy, prosthetic and orthotic device classification, material science, impression taking, mold rectification, bench alignment, and patient rehabilitation.
  • Time limit: 3 hours 15 minutes (195 minutes)
  • Exam fee: ₹600.75 for institutional (regular) Intermediate candidates in the vocational class and ₹806 for private candidates for the 2026 examination. UPMSP charges one registration fee per candidate, not per subject paper.

Keys to Passing

  • Complete 500+ practice questions
  • Score 80%+ consistently before scheduling
  • Focus on highest-weighted sections
  • Use our AI tutor for tough concepts

UPMSP Artificial Limb & Organ Tech Study Tips from Top Performers

1Master anatomical pressure-tolerant zones (patellar tendon, medial tibial flare) versus pressure-sensitive zones (fibular head, tibial crest) for socket design.
2Memorize standard orthotic acronyms (AFO, KAFO, HKAFO, TLSO, CTLSO) and amputation level definitions.
3Understand the material properties and working temperatures of thermoplastics (polypropylene at 160°C–180°C) versus thermosetting resins and composite fibers.
4Practice step-by-step plaster of Paris casting and positive mold rectifications (carving for weight bearing, building up for relief).
5Learn prosthetic alignment parameters including initial socket flexion (5° for transtibial) and TKA weight-line positioning.
6Study gait deviation troubleshooting to immediately identify causes of vaulting, prosthetic whips, lateral trunk lean, and knee buckling.

Frequently Asked Questions

What is UPMSP Code 233 Artificial Limb and Organ Technique?

Code 233 is a technical vocational subject for Class 12 students under Uttar Pradesh Madhyamik Shiksha Parishad (UPMSP), focusing on the theoretical principles, material science, fabrication techniques, and rehabilitation protocols for artificial limbs and orthotic devices.

What are the key technical areas evaluated in the Code 233 exam?

The paper covers six main units: Human Musculoskeletal Anatomy & Biomechanics, Orthotics & Prosthetics Classification, Materials Used in Prosthetics, Measurement & Mold Preparation, Fabrication & Alignment, and Rehabilitation & Gait Training.

What is the minimum passing score for UPMSP Code 233?

Candidates must achieve at least a 33% aggregate score in theory and practical components to pass the UP Board Class 12 examination.

What career pathways does Code 233 prepare students for?

It provides a strong foundation for diploma and degree studies in Prosthetics and Orthotics (BPO), rehabilitation engineering, medical device manufacturing, and technician roles in rehabilitation centers and orthopedic hospitals.

How does this practice question bank benefit candidates?

This 100-question practice set offers complete coverage of all 6 syllabus modules with clear explanations, wrong option analyses, and clinical exam tips to help students excel in UP Board examinations.