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Updated: Mar 8, 2026

A Neuronal Apoptosis Model induced by Spinal Cord Compression in Rat
Published on: June 29, 2021
Stretching of roots contributes to the pathophysiology of radiculopathies
Jean-Marie Berthelot1, Jean-Denis Laredo2, Christelle Darrieutort-Laffite1
1Rheumatology Unit, Nantes University Hospital, CHU de Nantes, 1, place Alexis-Ricordeau, 44093 Nantes cedex 01, France.
Purpose:
To perform a synthesis of articles addressing the role of stretching on roots in the pathophysiology of radiculopathy.
Methods:
Review of relevant articles on this topic available in the PubMed database.
Results:
An intraoperative microscopy study of patients with sciatica showed that in all patients the hernia was adherent to the dura mater of nerve roots. During the SLR (Lasègue's) test, the limitation of nerve root movement occurs by periradicular adhesive tissue, and temporary ischemic changes in the nerve root induced by the root stretching cause transient conduction disturbances. Spinal roots are more frail than peripheral nerves, and other mechanical stresses than root compression can also induce radiculopathy, especially if they also impair intraradicular blood flow, or the function of the arachnoid villi intimately related to radicular veins. For instance arachnoiditis, the lack of peridural fat around the thecal sac, and epidural fibrosis following surgery, can all promote sciatica, especially in patients whose sciatic trunks also stick to piriformis or internus obturator muscles. Indeed, stretching of roots is greatly increased by adherence at two levels.
Conclusions:
As excessive traction of nerve roots is not shown by imaging, many physicians have unlearned to think in terms of microscopic and physiologic changes, although nerve root compression in the lumbar MRI is lacking in more than 10% of patients with sciatica. It should be reminded that, while compression of a spinal nerve root implies stretching of this root, the reverse is not true: stretching of some roots can occur without any visible compression.
Insights
Nerve root stretching, not just compression, can cause radiculopathy and sciatica. Adhesions and mechanical stresses impair nerve function, even without visible compression on imaging.
Area of Science:
- Neurology
- Orthopedics
- Neurosurgery
Background:
- Radiculopathy, commonly known as sciatica, is often attributed to nerve root compression.
- However, the role of mechanical stress, particularly stretching, in nerve root pathophysiology is increasingly recognized.
Purpose of the Study:
- To synthesize existing literature on the impact of nerve root stretching in the pathophysiology of radiculopathy.
- To highlight the mechanisms by which stretching contributes to radicular symptoms.
Main Methods:
- A comprehensive review of articles was conducted using the PubMed database.
- Focus was placed on studies investigating the role of stretching and adhesions in radiculopathy.
Main Results:
- Intraoperative studies reveal nerve root adherence to the dura mater in sciatica patients.
- The straight leg raise (SLR) test limitation is caused by adhesive tissue, leading to nerve root movement restriction.
- Stretching-induced ischemia and mechanical stress can cause transient conduction disturbances, mimicking compression symptoms.
Conclusions:
- Nerve root stretching, independent of compression, can induce radiculopathy.
- Adhesive periradicular tissue, arachnoiditis, and epidural fibrosis significantly increase root stretching.
- Physicians should consider microscopic and physiological changes, as imaging may not reveal all causes of sciatica, particularly stretching without visible compression.
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