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Klumpke's Palsy Treatment Doctors in Ghaziabad

Whether it's a dull ache, a sharp catch, or pain that keeps coming back — we find the root cause of your Klumpke's Palsy and fix it, at a clinic near you or at home.

Precision Care, Proven Recovery
ACCURATE DIAGNOSIS
ROOT CAUSE ASSESSMENT
COMPREHENSIVE RECOVERY PLAN
MILESTONE TRACKING
GOALS ACHIEVED
STAYING ACTIVE
See how it works ↓
Move pain-free Avoid drugs & surgery
5.0 / 5 · 20 Google reviews Verified on Google

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Understanding your klumpke's palsy

Does this sound like you?

Common triggers include muscle strain, joint stiffness, poor posture and long desk hours. If two or more of these fit, a physiotherapy assessment can identify exactly what's driving it.

  • A dull ache or sharp, burning klumpke's palsy that keeps returning
  • Discomfort that worsens with movement, lifting or long sitting hours
  • Morning stiffness that eases as you move
  • Pain that limits work, sport or everyday activities
  • Recurring episodes that keep coming back

Most klumpke's palsy improves without surgery or long-term medication — the key is finding the cause first.

⚠ When to seek urgent medical care

Klumpke's Palsy rarely signals something serious, but see a doctor immediately if it comes with:

  • Fever, unexplained weight loss, or a history of cancer
  • Numbness or weakness that keeps getting worse
  • Loss of bladder or bowel control
  • Pain after a major fall or accident

Our physios screen for these red flags at every first assessment and refer you to the right doctor if needed.

Assessment-led treatment

How we treat klumpke's palsy

We start with an AI-based assessment to find the root cause — then follow a clear, four-phase plan.

Phase 1

Ease the pain

Hands-on therapy and advanced modalities to calm pain and inflammation fast.

Phase 2

Restore movement

Mobility work and posture correction so everyday movement feels normal again.

Phase 3

Build strength

Targeted strengthening that protects you — in-clinic or in our physio gym.

Phase 4

Return to activity

Back to work, sport and life — with a home program that prevents relapse.

Your physiotherapist, with Fizo IQ™

Every recovery, planned and proven

One patient record, stage by stage: your physiotherapist pinpoints the diagnosis, finds the root cause and builds your in-clinic plan — while Fizo IQ™, our AI decision-support engine, tracks every milestone until your goals are met and you leave with an exercise plan to stay active.

Physio Expert @CB with Fizo IQ™ — recovery engine
TRACKING
ACCURATE DIAGNOSIS
L4–L5 disc bulge · nerve-root irritation, pinpointed at the first movement assessment
ROOT CAUSE ASSESSMENT
Poor sitting posture, weak core–hip chain · quietly loading that disc
COMPREHENSIVE RECOVERY PLAN
24 clinic sessions · manual therapy + spinal decompression · guided exercise therapy, reviewed weekly
MILESTONE TRACKING
Sitting pain-free ✓ · stairs ✓ · next: the morning 5 km walk
GOALS ACHIEVED
Pain 7 → 3 in six weeks · back to daily life, moving freely
STAYING ACTIVE
A personalized exercise plan, yours to keep · so the pain doesn't come back
Example recovery journey · every plan is built around you
Meet your care team

Licensed experts who treat hundreds like you every month

Every CB physio is a qualified BPT/MPT clinician. You don't need to choose one — our lead physiotherapist reviews your case and assigns the specialist best suited to treat it.

Dr. Puneet Kumar, physiotherapist in Ghaziabad Verified

Dr. Puneet Kumar

Physiotherapist · MPT (Orthopaedics)

5.0 (1)
Ghaziabad
6 yrs experience
Ortho Spine Sports Physiotherapy Center
Not sure who to see? You don't have to decide. Our lead physiotherapist reviews every case and assigns the physio best suited to it — based on your condition and availability.
Patient stories

Klumpke's Palsy recoveries, verified on Google

Rated 5.0 / 5 across 20 verified patient reviews in Ghaziabad.

Verified

“मुझे फिजियोथेरेपी करवानी है होम सर्विस आपके पास अवेलेबल है”

SK
Sumit Kumar Verified patient · Treated at CB · 5 months ago
Verified

“VERY Best physiotherapist and good experience”

AU
Arun Upadhyay Verified patient · Treated at CB
Verified

“I recently had the pleasure of receiving physiotherapy treatment from Dr. Asif, and I cannot praise his skills and dedication enough. As a physiotherapist, he possesses a unique blend of expertise, compassion, and professionalism that sets him apart from others in his field.”

SK
Shawaiz Khan Verified patient · Treated at CB · 3 months ago
Verified

“I recently had the privilege of being treated by Dr. Asif Alam, and I cannot speak highly enough of his exceptional care and expertise as a physiotherapist. His ability to diagnose and explain the root causes of my issues was truly impressive. He provided me with a clear understanding of my condition His hands-on techniques were precise and effective, providing me with immediate relief and tangible results. He continuously monitored my progress and adjusted the treatment plan accordingly, ensuring that I was on track to a full recovery.”

KN
Krishna N12 Verified patient · Treated at CB · 3 months ago
Verified

“I have no words to express how good Dr. Asif was for post-knee rehabilitation. Every session I had was excellent. Day by day, I'm improving. I can walk without support. Thanks so much! All praise for you!🙏”

RB
Rajiv Bhatia Verified patient · Treated at CB · 3 months ago
Verified

“Thank you, Dr. shally for your outstanding service!👍🏼”

AB
Aakash Bansal Verified patient · Treated at CB · 4 months ago
Good to know

Klumpke's Palsy, answered

Klumpke's palsy is a form of brachial plexus injury that primarily affects the lower roots of the brachial plexus (C8 and T1). This condition leads to weakness or paralysis of the muscles in the forearm and hand.
The signs and symptoms of Klumpke's palsy may vary from patient to patient, these may include:

1: Muscle Weakness or Paralysis: Particularly in the forearm and hand muscles.
2: Claw Hand Deformity: Due to paralysis of the intrinsic muscles of the hand, leading to hyperextension at the metacarpophalangeal joints and flexion at the interphalangeal joints.
3: Loss of Sensation: In the medial aspect of the forearm and hand.
4: Horner's Syndrome (in some cases): This may include ptosis (drooping eyelid), miosis (constricted pupil), and anhidrosis (loss of sweating) on the affected side of the face if the sympathetic fibers are involved.
Klumpke's palsy can be caused by many reasons, a few of them are:

1: Birth Trauma: Excessive pulling on the infant's shoulder during delivery, especially in breech presentations.
2: Trauma: Direct injury or severe traction to the arm, such as in car accidents or falls.
3: Tumors: Compression from tumors in the neck or chest.
4: Inflammatory Conditions: Such as brachial plexitis.


Pathology

1: Nerve Root Avulsion or Stretching: Damage to the lower brachial plexus nerves (C8 and T1), which may be avulsed (pulled out from the spinal cord), stretched, or otherwise damaged.
2: Disruption of Nerve Function: This leads to loss of motor and sensory function in the muscles and skin innervated by these nerves.
3: Muscle Atrophy: Over time, the muscles innervated by the affected nerves may atrophy due to lack of stimulation.
4: Scarring and Fibrosis: Chronic injury may lead to scar tissue formation, further impeding nerve function and regeneration.
Diagnosing Klumpke's palsy involves a combination of clinical examination, imaging studies, and electrophysiological tests. Here are the primary techniques used:

Physical Examination:
Assessing muscle strength, sensation, and reflexes in the affected arm and hand. Looking for characteristic signs such as claw hand deformity and any signs of Horner's syndrome.

Magnetic Resonance Imaging (MRI):
MRI provides detailed images of the brachial plexus to detect nerve root avulsions, tumors, or other structural abnormalities.

Computed Tomography (CT) Myelography:
CT is useful in cases where MRI is inconclusive, especially for identifying nerve root avulsions.

Ultrasound:
Ultrasound can be used to visualize the brachial plexus, though it is less detailed than MRI.

Electromyography (EMG):
EMG measures the electrical activity of muscles and can help determine the extent and location of nerve damage.

Nerve Conduction Studies (NCS):
NCV helps to assess the speed and strength of electrical signals traveling through the nerves, helping to pinpoint the location and extent of nerve damage.

X-Rays:
X-rays are useful for detecting associated fractures or dislocations that might contribute to nerve damage.

Blood Tests:
Blood test helps to rule out any underlying conditions that might contribute to nerve damage, such as diabetes or inflammatory diseases.
Medication: Nonsteroidal Anti-Inflammatory Drugs (NSAIDs, Analgesics, Opioids, Anticonvulsants, Corticosteroids, Muscle Relaxants, etc.
(Note: Medication should not be taken without the doctor's prescription.)

Surgery:
Surgical intervention may be considered if there is no significant improvement with conservative treatments like physiotherapy. Surgery for Klumpke's palsy, which affects the lower nerves of the brachial plexus, aims to restore function to the forearm and hand. Here are the key surgical options:

Nerve Grafting:
It is a process in which grafting of healthy nerves from another body part is done to bridge damaged nerve gaps, it helps restore nerve function.

Nerve Transfers:
Nerve transfer is done for rerouting a healthy, less critical nerve to the damaged nerve, it helps improve function and strength.

Neurolysis:
Neurolysis is a process of removing scar tissue and compressing the nerve, it helps relieve pain and improves function.

Tendon Transfers:
Moving tendons from functioning muscles to paralyzed ones helps enhance hand and arm function.

Muscle Transfers:
Transferring muscles with their nerve supply from another body part helps improve muscle strength and functionality.
Thermotherapy/ cryotherapy:
Heat and cold therapy help manage pain and inflammation.

Transcutaneous Electrical Nerve Stimulation (TENS):
Tens is used for pain relief. It delivers low-voltage electrical currents through the skin to stimulate nerves and reduce pain signals to the brain.

Neuromuscular Electrical Stimulation (NMES):
a) NMES is used to stimulate muscle contractions and improve muscle strength and function.
b) It delivers electrical impulses to motor nerves, causing muscles to contract. The electrodes are placed on the skin over the targeted muscles to facilitate contractions and promote muscle re-education.

Functional Electrical Stimulation (FES):
a) FES helps enhance functional movement by stimulating muscles during specific activities.
b) Mechanism: It delivers electrical impulses in a coordinated pattern to support voluntary movement and functional tasks. It is often used during activities like walking, grasping, or reaching to improve functional use of the affected limb.

Interferential Current Therapy (IFC):
IFT helps in pain relief and reduction of inflammation. It uses medium-frequency electrical currents that intersect below the skin to provide deeper tissue stimulation. The electrodes are positioned around the area of pain, with the currents intersecting at the target tissue.

Microcurrent Therapy:
Microcurrent therapy helps promote healing and reduce pain. It uses very low-level electrical currents to stimulate cellular repair and reduce inflammation. The electrodes are placed on the skin over the affected area.

Iontophoresis:
Iontophoresis helps deliver medication through the skin using electrical currents. It uses a small electric current to drive charged medication molecules through the skin to the underlying tissue. It helps for localized drug delivery, often to reduce inflammation or pain.

Galvanic Stimulation:
Galvanic stimulation helps promote blood flow and healing. It uses direct current to stimulate tissues and increase blood flow to the area. The electrodes are placed on the skin over the affected area.

Range of Motion Exercises:
a) Passive Range of Motion (PROM):
These exercises are performed with the help of the therapist to maintain joint flexibility and prevent stiffness when the patient cannot move the limb actively.
b) Active-Assisted Range of Motion (AAROM):
The patient attempts to move the affected limb with the help of the therapist or using the unaffected limb.
c) Active Range of Motion (AROM):
The patient moves the limb independently to improve joint mobility and muscle strength.

Strengthening Exercises:
a) Isometric Exercises:
These involve contracting the muscles without moving the joint, which helps to maintain muscle strength without putting strain on the injured nerves.
b) Resistance Training:
Gradually incorporate resistance bands or light weights to strengthen the muscles of the forearm and hand as nerve function improves.

Stretching Exercises:
a) Gentle Stretching:
To maintain flexibility in the muscles and tendons and to prevent contractures.
b) Specific Stretches:
Targeted at the muscles of the forearm and hand to maintain a full range of motion in the joints.

Functional Training:
a) Task-Oriented Exercises:
Focused on improving the ability to perform daily activities, such as grasping, holding, and manipulating objects.
b) Fine Motor Skills:
Exercises to improve dexterity and coordination in the fingers and hands.

Sensory Re-education:
a) Desensitization Techniques:
Using different textures and temperatures to help the nerves adapt to sensory input and reduce hypersensitivity.
b) Tactile Stimulation:
Activities that stimulate sensory feedback to improve sensation in the affected areas.

Splinting and Orthotics:
Splints: To support the wrist and hand in a functional position, prevent deformities, and improve alignment.
Dynamic Splints: Allowing for some movement while providing support to weak muscles.
Manual Therapy: Including gentle massage and mobilization techniques to reduce pain and improve circulation.
Patient education involves teaching proper techniques for exercises, safe ways to perform daily activities, and the importance of adherence to the therapy plan. The patient is advised to perform exercises at home to ensure continuity of care and progress. Recommendations are also given for modifications at home or work to facilitate ease of movement and reduce strain.
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