The previous three decades have witnessed a prosperity of contralateral C7 nerve (CC7) transfer in the treatment of upper-extremity paralysis induced by both brachial plexus avulsion injury and central hemiplegia. From the initial subcutaneous route to the pre-spinal route and the newly-established post-spinal route, this surgical operation underwent a series of innovations and refinements, with the aim of shortening the regeneration distance and even achieving direct neurorrhaphy. Apart from surgical efforts for better peripheral nerve regeneration, brain involvement in functional improvements after CC7 transfer also stimulated scientific interest. This review summarizes recent advances of CC7 transfer in the treatment of upper-extremity paralysis of both peripheral and central causes, which covers the neuroanatomical basis, the evolution of surgical approach, and central mechanisms. In addition, motor cortex stimulation is discussed as a viable rehabilitation treatment in boosting functional recovery after CC7 transfer. This knowledge will be beneficial towards improving clinical effects of CC7 transfer.
Introduction: C7 nerve transfer alone can improve upper limb motor function and partial spasticity. Selective posterior rhizotomy (SPR) of the cervical nerve alone can comprehensively improve spasticity but without neuromotor regeneration. We propose a novel possible improvement of contralateral C7 (CC7) nerve transfer through the posterior vertebral approach, which was combined with SPR of the affected cervical nerve. Patient Concerns: A 33-year-old male patient presented with cerebral hemorrhage of the left basal ganglia, paralysis of the right limbs, and hypesthesia 8 months earlier. The dysfunction of the affected hand was already present at admission. The patient reported a previous history of hypertension for several years and oral antihypertensive drugs, and blood pressure was controlled within a normal range. Diagnosis: Central upper limb spastic paralysis. The muscle strength of the right lower limb was grade IV. The Fugl-Meyer score of the right upper limb was 7 points, and the modified Ashworth score was 10. Interventions: The patient underwent CC7 transfer and SPR. Outcomes: The patient successfully underwent CC7 transfer and SPR without complications. On the day after surgery, the left upper limb motions were normal. The Fugl-Meyer score was 9, and the modified Ashworth score of the right upper limb was 2. Conclusions: CC7 nerve transfer through the posterior vertebral approach combined with SPR of the affected cervical nerve can possibly improve the surgical outcomes of selected patients with upper limb motor dysfunction and partial spasticity. This method has not been reported in the literature before, and additional studies are necessary.
Abstract Objective This study aimed to explore a shorter and safer contralateral C7 transposition pathway for the treatment of central upper limb paralysis. Methods From July 2018 to March 2019, 10 patients with central upper limb paralysis underwent posterior cervical 7 nerve transposition. The age of these patients ranged within 31–58 years old (average: 44 years old). These patients comprised of eight male patients and two female patients. Nine patients had cerebral hemorrhage, and one patient had a cerebral infarction. Furthermore, nine patients presented with spastic paralysis of the upper limbs and one patient presented with nonspastic paralysis. The duration of plegia before the operation ranged from 6 to 60 months (average: 26 months). The surgical procedure included transposition of the contralateral cervical 7 nerve root via a posterior vertebral approach under general anesthesia, and the distal part of the contralateral cervical 7 nerve was anastomosed with the proximal part of the ipsilateral cervical 7 nerve. Results The length of the contralateral cervical 7 nerve was 5.16 ± 0.21 cm, which was directly anastomosed with the ipsilateral cervical 7 nerve. Neither case needed nerve transplantation. Most patients had temporary numbness in their healthy fingers, which all disappeared within three months. Up to now, the follow‐up results are as follows: The spasticity of the affected upper limbs in five patients is lower than that before the operation, the pain and temperature sensation of the affected upper limbs in six patients are better than before the operation. Conclusion The distance of nerve transposition can be shortened by a posterior vertebral approach operation, where the contralateral C7 nerve can be anastomosed directly with the ipsilateral C7 nerve which may be effective for nerve regeneration and functional recovery. However, this conclusion still needs further research and verification.
BACKGROUND:Contralateral C7 nerve transfer is widely applied for the treatment of brachial plexus injuries or central paralysis of the upper extremities. The surgical approach has evolved from the precervical subcutaneous route to the prespinal route, which is currently the most commonly used one. We report a patient with central paralysis of the right upper extremity treated with contralateral C7 nerve transfer via the posterior spinal route.CASE DESCRIPTION:A 59-year-old female patient was admitted on 3 July, 2018 with right hemiplegia. The muscle strength of the right lower and upper extremities was grade 4 and 0, respectively. On the basis of magnetic resonance imaging, she was diagnosed with central paralysis of the right upper extremity. Considering the short length of the patient's healthy C7 nerve, contralateral C7 nerve transfer via the posterior spinal route was performed. No intraoperative complication was encountered. The patient reported slight numbness of the volar side of the left thumb, middle finger, and index finger after surgery. The patient showed a right shrug movement 1.5 months after surgery.CONCLUSION:We propose carrying out contralateral C7 nerve transfer via the posterior spinal route because of the shorter distance, no need for nerve transplantation, and low occurrence of the complications encountered with the prespinal route (such as vertebral artery injuries, esophageal fistula, and upper extremity pain when swallowing).
Objective To investigate the significance of decompression of optic nerve in the rehabilitation of traumatic optic neuropathy following head trauma.Method Surgical treatment was performed on 16 patients suffered from traumatic neuropathy following head trauma.Fragments ,hematoma,necrotic brain tissue resulting from fracture of orbital bone were removed and frontal and orbital fracture or malposition corrected by craniotomy through valve of frontal bone in 15 patients.Optic canal was probed and sheath of optic nerve was cut open for decompression of optic nerve.Frontotemporal wound was made in 1 case with superior orbital fissure syndrome and decompression of optic canal and abrasion of superior orbital fissure were performed through outer side of orbital point.Result Surgical treatment was effective in 12 cases(75% ),exophthalmus in 2 cases was corrected.Conclusion Decompression of optic nerve through frontal bone or frontotemporal is effective in enhancing visual acuity in patients with traumatic optic neuropathy following head trauma.