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One Case of Right Posterior Mediastinum Intraneural Hemangioma Misdiagnosed as Neurilemmoma
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作者 Xiaoxia Tan Ruifen Zhang Liangping Luo 《Journal of Biosciences and Medicines》 2024年第7期30-37,共8页
Although rare, intraneural hemangiomas should be considered in the differential diagnosis of peripheral nerve lesions. We report on a 59-year-old female patient, who was admitted to the hospital due to the discovery o... Although rare, intraneural hemangiomas should be considered in the differential diagnosis of peripheral nerve lesions. We report on a 59-year-old female patient, who was admitted to the hospital due to the discovery of bilateral breast masses for 3 months, there was no paresthesia or dyskinesia. The patient accidentally found a mass in the right upper mediastinum while completing a plain chest X-ray, initially suspected as a benign neurilemmoma on CT. Surgical resection and pathological analysis confirmed an intraneural hemangioma. Unexpectedly, the patient developed new-onset right upper limb numbness and paresthesia 3 months post-operatively, probably related to surgical nerve injury. This case underscores the importance of maintaining a broad differential for mediastinal masses, and the potential for iatrogenic neurological complications when managing these rare, yet vascular lesions. 展开更多
关键词 intraneural Hemangioma Mediastinal Tumors Spinal Nerve
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Intraneural ganglion cyst of the lumbosacral plexus mimicking L5 radiculopathy:A case report
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作者 Jun Gyu Lee Hyungsun Peo +1 位作者 Jang Hyuk Cho Du Hwan Kim 《World Journal of Clinical Cases》 SCIE 2021年第17期4433-4440,共8页
BACKGROUND Intraneural ganglion cysts are benign gelatinous masses that form within the epineurium of a peripheral nerve.Only few cases of intraneural ganglion cyst arising from the hip joint have been reported.CASE S... BACKGROUND Intraneural ganglion cysts are benign gelatinous masses that form within the epineurium of a peripheral nerve.Only few cases of intraneural ganglion cyst arising from the hip joint have been reported.CASE SUMMARY A previously healthy 65-year-old woman who had been experiencing left buttock pain radiating to the dorsum of the foot for 2 years visited our clinic.Prior to visiting the clinic,she underwent lumbar spine magnetic resonance imaging and received physiotherapy,pain killers,and epidural injections based on a presumptive diagnosis of spinal stenosis for 2 years in other hospitals.Repeat magnetic resonance imaging revealed joint connection of the articular branch of the hip joint and rostral extension of the cyst along the L5 spinal nerve near the L5-S1 neural foramen.The patient was diagnosed with intraneural ganglion cyst arising from the articular branch of the hip joint based on high-resolution magnetic resonance neurography.Using the arthroscopic approach,a cystic opening within the intra-articular space was detected,and cyst decompression was then performed.The pain in the left leg was significantly relieved during the 6-mo follow-up.CONCLUSION Although intraneural ganglion cysts arising from the hip joint are rare,they can cause typical radicular pain and mimic common L5 radiculopathy.Typical cyst ascent phenomenon starting from the termination of the articular branch on magnetic resonance imaging is a crucial finding indicative of intraneural ganglion cysts arising from the hip joint. 展开更多
关键词 intraneural ganglion cyst RADICULOPATHY LABRUM Hip joint Sciatic nerve Lumbosacral plexus Case report
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Effects of mechanical tension on intraneural blood circulation of the median nerve in rabbits
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作者 殷玉芹 刘正津 何光 《Journal of Medical Colleges of PLA(China)》 CAS 1996年第2期142-146,共5页
Simple stretching was applied to the median nerve of rabbits in vivo to study the relationship of different tension with the change of intraneural blood vessels. It was found that when the tension on the nerve was 42 ... Simple stretching was applied to the median nerve of rabbits in vivo to study the relationship of different tension with the change of intraneural blood vessels. It was found that when the tension on the nerve was 42 g, the intraneural blood backflow was blocked, while the arterioles entering the nerve trunk remained open; when the tension was increased to 93 g, the intraneural blood volume was decreased along with the increase of vascular permeability; and when the tension was further increased to 137 g, the intraneural blood supply was completely interrupted.The main injurious factors resulting in acute stretching injury of the peripheral nerves and the clinical significance of the changes of intraneural blood circulation were discussed. 展开更多
关键词 tension intraneural BLOOD CIRCULATION MEDIAN NERVE RABBITS
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Platelet-rich plasma,an adjuvant biological therapy to assist peripheral nerve repair 被引量:12
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作者 Mikel Sánchez Ane Garate +1 位作者 Diego Delgado Sabino Padilla 《Neural Regeneration Research》 SCIE CAS CSCD 2017年第1期47-52,共6页
Therapies such as direct tension-free microsurgical repair or transplantation of a nerve autograft,are nowadays used to treat traumatic peripheral nerve injuries(PNI),focused on the enhancement of the intrinsic rege... Therapies such as direct tension-free microsurgical repair or transplantation of a nerve autograft,are nowadays used to treat traumatic peripheral nerve injuries(PNI),focused on the enhancement of the intrinsic regenerative potential of injured axons.However,these therapies fail to recreate the suitable cellular and molecular microenvironment of peripheral nerve repair and in some cases,the functional recovery of nerve injuries is incomplete.Thus,new biomedical engineering strategies based on tissue engineering approaches through molecular intervention and scaffolding offer promising outcomes on the field.In this sense,evidence is accumulating in both,preclinical and clinical settings,indicating that platelet-rich plasma products,and fibrin scaffold obtained from this technology,hold an important therapeutic potential as a neuroprotective,neurogenic and neuroinflammatory therapeutic modulator system,as well as enhancing the sensory and motor functional nerve muscle unit recovery. 展开更多
关键词 peripheral nerve injuries(PNI) Schwann cells axons platelet-rich plasma biomolecules fibrin scaffold intraneural perineural microenvironment
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