Dr. Siddharth Bansal

Orthopedic Surgery

Dr. Siddharth Bansal

Certified Specialist

Associate Consultant – Orthopedic Surgery

Aakash Healthcare Super Speciality Hospital, DwarkaNew Delhi
11+ yearsExperience
MBBSEducation
Aakash Healthcare Super Speciality HospitalHospitals
New DelhiAddress

About Dr. Siddharth Bansal

Dr. Siddharth Bansal is an orthopedic surgeon with over a decade of clinical experience in managing fractures, joint disorders and degenerative bone conditions.

His practice focuses on evidence-based orthopedic care including trauma surgery, arthritis management and joint replacement procedures, with an emphasis on restoring mobility and reducing long-term disability.

Qualification

MBBS

Completed undergraduate medical education from a recognized medical institution with foundational training in clinical medicine and surgery

DNB (Orthopedics)

Postgraduate specialization in orthopedics with structured training in trauma care, fracture management and joint-related disorders

Clinical Training

Extensive hands-on experience in managing emergency orthopedic cases, inpatient care and surgical planning

Core Skills

Proficient in fracture fixation, joint disorder management and perioperative orthopedic care

Registration

Registered with Delhi Medical Council (DMC) and adheres to standard clinical practice guidelines

Areas of Expertise

Trauma & Fractures

Management of simple to complex fractures using both surgical and non-surgical approaches depending on injury pattern

Joint Disorders

Diagnosis and treatment of knee, hip and shoulder conditions including pain, stiffness and reduced mobility

Arthritis Care

Non-operative and surgical management of osteoarthritis and other degenerative joint diseases

Joint Replacement

Involvement in knee and hip replacement procedures with focus on functional recovery and patient safety

Orthopedic Consultation

Evaluation of musculoskeletal complaints with structured treatment planning and follow-up care

Why Choose Dr. Siddharth Bansal?

Evidence-Based Care

Follows standard orthopedic protocols and clinical guidelines for diagnosis and treatment planning

Balanced Approach

Prioritises conservative management where appropriate before recommending surgical intervention

Trauma Experience

Regularly involved in handling emergency and planned orthopedic cases within hospital settings

Functional Recovery Focus

Treatment aimed at restoring mobility, stability and daily activity levels for patients

Clear Patient Communication

Provides realistic expectations regarding treatment outcomes, recovery time and rehabilitation needs

Achievements & Recognitions

Clinical Practice

Active involvement in orthopedic surgical and non-surgical patient care at a tertiary care hospital

Case Management

Experience in managing a wide range of orthopedic conditions including trauma and degenerative diseases

Continuous Learning

Regular participation in orthopedic academic sessions, CMEs and clinical discussions

Hospital-Based Experience

Worked in structured hospital environments with multidisciplinary care exposure

Patient Care

Focus on safe, ethical and guideline-based orthopedic treatment delivery

Professional Memberships

Orthopedic Associations

Associated with recognized orthopedic professional bodies and academic groups

DMC

Registered with Delhi Medical Council as a licensed medical practitioner

Trust & Editorial Policy

This content adheres to the CureU Editorial Guidelines, ensuring evidence-based accuracy and regular updates.

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    Treatments under Orthopedic Surgery

    Congenital Limb Defects Correction Surgery

    Orthopedic Surgery

    Congenital Limb Defects Correction Surgery

    Congenital limb defects are developmental abnormalities present at birth that affect the shape, length, alignment, or function of the upper or lower limbs. The severity may range from mild deformities to complex skeletal deficiencies that interfere with walking, grasping, balance, or overall limb function. Surgical treatment is carefully individualized based on the child’s age, bone development, growth potential, and functional limitations. Procedures may include deformity correction, bone reconstruction, tendon balancing, limb lengthening, joint stabilization, digit separation, prosthetic preparation, or advanced reconstructive orthopedic surgery. Pediatric orthopedic specialists often use staged treatment approaches to support proper skeletal growth and minimize future complications. The primary goal is to improve independence, physical function, and long term musculoskeletal development while preserving as much natural limb function as possible.

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    Revision Single Knee Replacement

    Orthopedic Surgery

    Revision Single Knee Replacement

    Revision single knee replacement is a complex surgical procedure indicated when a primary knee replacement no longer functions effectively due to wear, loosening, infection, or mechanical failure. Unlike primary knee replacement, revision surgery requires careful planning, advanced surgical techniques, and customized implants to address bone loss, scar tissue, and instability. The surgeon removes the damaged or failed prosthesis, prepares the bone surfaces, and implants a new, often more durable prosthetic joint designed to restore proper alignment and function. This procedure is typically more technically demanding and may take longer than the initial surgery, but it plays a critical role in relieving persistent pain and restoring joint performance. With appropriate rehabilitation and follow-up care, most patients experience significant improvement in mobility and quality of life.

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    ACL Reconstruction

    Orthopedic Surgery

    ACL Reconstruction

    ACL Reconstruction is a surgical procedure to repair and reconstruct the ligament in the center point of the knee. Specifically, the Anterior Cruciate Ligament (ACL) links the shin bone to the thigh bone. This procedure is typically followed after the ACL is torn, which mostly results from sports injuries or trauma. -br ACL Reconstruction in India is designed to graft a replacement of the ACL located in the knee, which helps to restore mobility and function after an injury. Additionally, an arthroscopic procedure ensures the preservation of the ligaments or the removal of the ligament after the injury. Furthermore, instead of removing the ligament, ACL Repair is also an option.

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    Patellofemoral Replacement

    Orthopedic Surgery

    Patellofemoral Replacement

    Patellofemoral replacement is an advanced, bone-preserving orthopedic procedure designed for patients suffering from anterior knee pain due to cartilage degeneration behind the kneecap. Unlike total knee replacement, this surgery replaces only the patellofemoral compartment, allowing for more natural knee mechanics and faster recovery. The procedure involves reshaping the underside of the patella and the corresponding groove of the femur, followed by placement of smooth prosthetic surfaces that enable friction-free movement. It is commonly recommended for younger or active patients whose arthritis is confined to this compartment. With improved implant design and surgical precision, modern patellofemoral replacement offers durable pain relief, improved mobility, and high patient satisfaction when carefully selected based on clinical evaluation and imaging findings.

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    Lateral Retinacular Release Surgery

    Orthopedic Surgery

    Lateral Retinacular Release Surgery

    Lateral retinacular release is an advanced arthroscopic knee procedure designed to correct abnormal tension within the lateral soft tissue structures of the patella. In certain patients, tight lateral tissues pull the kneecap outward, leading to pain, inflammation, cartilage wear, and instability within the patellofemoral joint. During the procedure, orthopedic surgeons carefully release or divide the tight lateral retinaculum using minimally invasive arthroscopic instruments. This helps rebalance forces acting on the kneecap and allows smoother movement within the femoral groove. The surgery may be performed alone or combined with other patellar stabilization procedures depending on the severity of instability and associated cartilage damage. Modern arthroscopic techniques help minimize tissue trauma, reduce postoperative discomfort, and support faster rehabilitation. Comprehensive physiotherapy after surgery plays a crucial role in strengthening the knee, improving alignment, and restoring functional mobility.

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    Birmingham Hip Resurfacing Surgery

    Orthopedic Surgery

    Birmingham Hip Resurfacing Surgery

    Birmingham Hip Resurfacing, commonly known as BHR surgery, is a specialized orthopedic joint preservation procedure used to treat advanced hip arthritis, osteoarthritis, avascular necrosis, and certain degenerative hip conditions. During the operation, the damaged cartilage and bone surfaces of the femoral head are carefully reshaped and covered with a smooth metal cap while the hip socket receives a matching metal component. Unlike conventional hip replacement surgery that removes a large portion of the femur, hip resurfacing conserves more healthy bone tissue and maintains closer to natural hip biomechanics. This approach can offer improved stability, lower risk of dislocation, and better performance during high activity levels for selected patients. The procedure is commonly recommended for younger and physically active individuals with strong bone quality who wish to maintain mobility and delay future revision surgeries. Advances in implant technology, surgical planning, and rehabilitation protocols have significantly improved recovery outcomes and long term functional performance following Birmingham Hip Resurfacing surgery.

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    Elbow Arthroscopy

    Orthopedic Surgery

    Elbow Arthroscopy

    Elbow arthroscopy is an advanced orthopedic procedure commonly performed to manage joint stiffness, cartilage damage, loose bodies, inflammation, and sports-related injuries. Using specialized instruments and high-definition imaging, surgeons can remove damaged tissue, smooth cartilage surfaces, release contractures, and address joint impingement. The minimally invasive nature of this procedure results in smaller scars, lower complication rates, and faster recovery, making it a preferred option for both athletes and non-athletes experiencing persistent elbow problems.

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    Partial Hip Replacement Surgery

    Orthopedic Surgery

    Partial Hip Replacement Surgery

    Partial hip replacement surgery is a specialized joint reconstruction procedure primarily used for treating fractures of the femoral neck, severe localized hip damage, or selected degenerative conditions affecting the upper portion of the hip joint. During the operation, the damaged femoral head is removed and replaced with a prosthetic implant while the natural acetabulum or hip socket remains intact. This approach differs from total hip replacement, where both sides of the joint are replaced. Hemiarthroplasty is frequently recommended for elderly patients with displaced hip fractures because it allows earlier mobilization, reduced pain, and improved recovery compared to fracture fixation alone in selected cases. Depending on the patient’s condition and bone quality, surgeons may use cemented or uncemented implants for optimal stability. Modern orthopedic protocols combined with minimally invasive approaches, early physiotherapy, and postoperative rehabilitation help patients regain independence, improve balance, and reduce the risk of prolonged immobility related complications.

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    Cemented Total Hip Replacement

    Orthopedic Surgery

    Cemented Total Hip Replacement

    Cemented Total Hip Replacement is a well established joint replacement procedure in which both the damaged femoral head and the hip socket are replaced with artificial prosthetic components fixed using medical grade bone cement. This specialized cement creates a secure bond between the implant and the surrounding bone, allowing stable fixation immediately after surgery. The procedure is particularly beneficial for older adults, patients with osteoporosis, or individuals with reduced bone density where uncemented implants may not achieve optimal support. During surgery, the orthopedic surgeon removes damaged cartilage and arthritic bone surfaces before accurately positioning the prosthetic joint components. The use of bone cement helps distribute pressure evenly and improves implant fixation inside weakened bone structures. Advances in implant materials, minimally invasive surgical methods, infection control, and rehabilitation programs have improved recovery speed, reduced complications, and enhanced long term mobility and quality of life after cemented total hip replacement.

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