Objective To evaluate whether right neurotomy of the seventh cervical nerve (C7) at the intervertebral foramen plus intensive speech and language therapy (SLT) improves language function compared intensive SLT alone in patients with chronic aphasia after stroke. Design Multicentre, assessor blinded, randomised controlled trial. Setting Four centres in mainland China. Participants 50 adults aged 40-65 years with aphasia for more than one year after a single left hemispheric stroke. Interventions Participants were randomised 1:1 to receive either C7 neurotomy plus three weeks of intensive SLT or three weeks of intensive SLT only, stratified by treatment centre. Main outcome measures The primary outcome was change in score on the 60 item Boston naming test (BNT, scores 0-60, with higher scores indicating better naming function) from baseline to one week after C7 neurotomy plus intensive SLT for three weeks or intensive SLT for three weeks after deferral for one week (control group). Secondary outcomes included change in severity of aphasia using the aphasia quotient, calculated using the western aphasia battery, and patient reported outcomes on quality of life and depression after stroke. Results From 25 July 2022 to 31 July 2023, 322 out of 1086 patients received a diagnosis of post-stroke aphasia and were screened for eligibility. 50 eligible participants were randomly assigned to treatment groups (25 in each). Mean increase in BNT score was 11.16 points in the neurotomy plus SLT group and 2.72 points in the control group at one month (difference 8.51 points, 95% confidence interval (CI) 5.31 to 11.71, P<0.001). The between group difference in BNT score remained stable at six months (difference 8.26 points, 4.16 to 12.35, P<0.001). In addition, the aphasia quotient improved significantly in the neurotomy plus SLT group versus control group (difference at one month 7.06 points, 4.41 to 9.72, P<0.001), as did patient reported activities of daily living and post-stroke depression. No treatment related severe adverse events were reported. Conclusions C7 neurotomy plus three weeks of intensive SLT was associated with a greater improvement in language function compared with three weeks of intensive SLT alone over a period of six months. No severe adverse events or long term troublesome symptoms or functional loss were reported. Trial registration Chinese Clinical Trial Register ChiCTR2200057180.
PurposeRight obstetric brachial plexus injuries (OBPI) often lead to left-handedness before limb function is restored post-surgery. A pertinent question arises about promoting a transition from left to right-handedness. We hypothesized that, with the decrease in neuroplasticity, handedness switching is not only difficult, but also reduces handedness-speech lateralization, impaired motor adaptability, and compromised language proficiency.MethodsWe retrospectively analyzed clinical data from January 1996 to January 2012 at our hospital. Participants were divided into intervention or control groups based on handedness switching. We compared handedness and computed lateral quotient (LQ) and lateralization index (LI) for handedness-speech center. Additionally, we assessed dominant hand’s writing speed, language function, and IQ. Associations between absolute LI and LQ values, writing speed, language scores, and IQ were examined.ResultsNineteen extended Erb’s palsy participants were enrolled, eight in the intervention group, and 11 in the control. No right-handed individuals were found in either cohort. The intervention group had significantly lower LQ and LI values, and fewer achieved normal writing speed. Yet, no notable disparities in language scores or IQ emerged. Notably, we established correlations between motor finesse, handedness degree, and handedness-speech lateralization.ConclusionFor right extended Erb’s palsy, shifting handedness is nearly unfeasible, and such an endeavor could trigger a reduction in handedness-speech lateralization magnitude and diminished motor finesse.
In March 1973, the Department of Hand Surgery and Oral Surgery of Huashan Hospital Affiliated to Shanghai First Medical College (now Huashan Hospital Affiliated to Fudan University) jointly carried out the first case of free flap transfer in China. In the past 50 years, Chinese colleagues have been constantly exploring and innovating in the field of microsurgery, and have made great progress, always leading the world. On the occasion of the 50th anniversary celebration, it would like to pay tribute to the predecessors who made contributions to Chinese microsurgery, and also encourage the colleagues in microsurgery to take Professor Yang Dongyue as an example, forge ahead, scale brave heights, and make new contributions to the healthcare of mankind.
Introduction Aphasia affects many stroke survivors; therefore, effective treatments are urgently needed. Preliminary clinical findings have suggested an association between contralateral C7–C7 cross nerve transfer and recovery from chronic aphasia. Randomised controlled trials supporting the efficacy of C7 neurotomy (NC7) are lacking. This study will explore the efficacy of NC7 at the intervertebral foramen for improving chronic poststroke aphasia. Methods and analysis This study protocol reports a multicentre, randomised, assessor-blinded active-controlled trial. A total of 50 patients with chronic poststroke aphasia for over 1 year and with a aphasia quotient calculated by Western Aphasia Battery Aphasia Quotient (WAB-AQ) score below 93.8 will be recruited. Participants will be randomly assigned to 1 of 2 groups (25 individuals each) to receive NC7 plus intensive speech and language therapy (iSLT), or iSLT alone programme. The primary outcome is the change in Boston Naming Test score from baseline to the first follow-up after NC7 plus 3 weeks of iSLT or iSLT alone. The secondary outcomes include the changes in the WAB-AQ, Communication Activities of Daily Living-3, International Classification of Functioning, Disability and Health (ICF) speech language function, Barthel Index, Stroke Aphasic Depression Questionnaire-hospital version and sensorimotor assessments. The study will also collect functional imaging outcomes of naming and semantic violation tasks through functional MRI and electroencephalogram to evaluate the intervention-induced neuroplasticity. Ethics and dissemination This study was approved by the institutional review boards of Huashan Hospital, Fudan University, and all participating institutions. The study findings will be disseminated through peer-reviewed publications and conference presentations. Trial registration number ChiCTR2200057180.
In obstetric brachial plexus palsy (OBPP), the operative time window for nerve reconstruction of the intrinsic muscles of the hand (IMH) is much shorter than that of biceps. The reason is that the atrophy of IMH becomes irreversible more quickly than that of biceps. A previous study confirmed that the motor endplates of denervated intrinsic muscles of the forepaw (IMF) were destabilized, while those of denervated biceps remained intact. However, the specific molecular mechanism of regulating the self-repair of motor endplates is still unknown. In this study, we use a rat model of OBPP with right C5-C6 rupture plus C7-C8-T1 avulsion and left side as a control. Bilateral IMF and biceps are harvested at 5 weeks postinjury to assess relative protein and mRNA expression. We also use L6 skeletal myoblasts to verify the effects of signaling pathways regulating acetylcholine receptor (AChR) protein synthesis in vitro. The results show that in the OBPP rat model, the protein and mRNA expression levels of NRG-1/ErbB4 and phosphorylation of Akt/mTOR/p70S6K are lower in denervated IMF than in denervated biceps. In L6 myoblasts stimulated with NRG-1, overexpression and knockdown of ErbB4 lead to upregulation and downregulation of AChR subunit protein synthesis and Akt/mTOR/p70S6K phosphorylation, respectively. Inhibition of mTOR abolishes protein synthesis of AChR subunits elevated by NRG-1/ErbB4. Our findings suggest that in the OBPP rat model, lower expression of AChR subunits in the motor endplates of denervated IMF is associated with downregulation of NRG-1/ErbB4 and phosphorylation of Akt/mTOR/p70S6K. NRG-1/ErbB4 can promote protein synthesis of the AChR subunits in L6 myoblasts via phosphorylation of Akt/mTOR/p70S6K.
Summary: Background: A previous randomized controlled trial showed contralateral seventh cervical nerve (CC7) cross transfer to be safe and effective in restoring the arm function of spastic arm paralysis patients in a specified population. Guidance on indications, safety and expected long-term improvements of the surgery are needed for clinical practice. Methods: This is a retrospective, multicenter, propensity score-matched cohort study. All patients registered between 2013 and 2019 with unilateral spastic arm paralysis over 1 year who were registered at one of five centers in China and South Korea were included. Patients received CC7 cross transfer or rehabilitation treatment in each center. Primary outcome was the change in the upper-extremity Fugl–Meyer (UEFM) score from baseline to 2-year follow-up; larger increase indicated better functional improvements. Findings: The analysis included 425 eligible patients. After propensity score matching, 336 patients who were 1:1 matched into surgery and rehabilitation groups. Compared to previous trial, patient population was expanded on age (< 12 and > 45 years old), duration of disease (< 5 years) and severity of paralysis (severe disabled patients with UEFM < 20 points). In matched patients, the overall increases of UEFM score from preoperative evaluation to 2-year follow-up were 15.14 in the surgery group and 2.35 in the rehabilitation group (difference, 12.79; 95% CI: 12.02–13.56, p < 0.001). This increase was 16.58 at 3-year and 18.42 at 5-year follow-up compared with the surgery group baseline. Subgroup analysis revealed substantial increase on UEFM score in each subgroup of age, duration of disease, severity of paralysis and cause of injury. No severe complication or disabling sequela were reported in the surgery group. Interpretation: This study showed that CC7 cross transfer can provide effective, safe and stable functional improvements in long-term follow-up, and provided evidences for expanding the indications of the surgery to a wider population of patients with hemiplegia.
Amputated hand,and paralyzed hand,are diseases not on the conventional list of the hand surgery world,but now have gradu-ally become the new direction for hand surgeons.A good example is the advancements in treating amputations after traumatic injury of the upper limb.Targeted muscle reinnervation combined with a highly functional bionic arm can greatly compensate for the miss-ing part of the amputated arm[1],which in general satisfies the need for strength and dexterity in daily life.According to the clas-sic cortical homunculus first drawn by Penfield,the hand area occupied nearly-one-third of the sensorimotor cortex[2].Thus,interventions with the hands enable the modulation of brain func-tion,providing a solution for brain disorders through skillful uti-lization of brain plasticity.
BACKGROUND: In patients with C7-T1 brachial plexus avulsions, complete loss of hand function is commonly seen. However, the reconstruction of hand function is difficult. OBJECTIVE: To report the outcomes of hand function recovery after combined nerve and tendon transfers in C7-T1 brachial plexus injury. METHODS: From 2012 to 2019, 8 patients with C7-T1 brachial plexus injury underwent combined nerve and tendon transfers for hand function restoration, which included the following: (1) the pronator teres motor branch to the anterior interosseous nerve and brachialis motor branch to the flexor digitorum superficialis branch for finger flexion, (2) the supinator motor branch to the posterior interosseous nerve for finger extension, (3) the brachioradialis tendon transfer for thumb opposition, and (4) the radial branch of the superficial radial nerve to the sensory branch of the ulnar nerve for sensory reconstruction. Patients were evaluated for functional improvement of finger flexion, finger extension, thumb opposition, and sensory recovery. RESULTS: No clinical donor deficits were observed. Seven of eight patients recovered finger and thumb flexion (4 patients scored British Medical Research Council grade M4 and 3 scored M3). The average grip strength was 3.4 kg. All patients regained finger extension (4 scored M4 and 4 scored M3), thumb opposition, and protective sensation on the ulnar hand. Patients were able to use their reconstructed hands in daily lives. CONCLUSION: Combined nerve and tendon transfers are reliable and effective. This strategy could be an option for hand function reconstruction after C7-T1 brachial plexus injury.
Brachial plexus (BP) root injury often results in disability of the upper extremities. Improvements in high-frequency ultrasonography have enabled the visualization of BP nerve roots. This study was aimed at quantifying the diagnostic accuracy of ultrasonography in BP root injury at different stages post-trauma. A consecutive series of 170 patients with BP root injury between 2015 and 2019 were studied retrospectively and divided into three groups on the basis of time between injury and ultrasound examination (<= 1 mo, 1-3 mo, >3 mo). Diagnosis of complete BP root injury under ultrasound was determined using a pre-defined criterion, including pseudomeningocele, retraction and rupture. Diagnostic accuracy was calculated based on surgical findings and intra-operative electrophysiological tests. Rates of detection of the cervical (C5-C8) and thoracic (T1) nerve roots under ultrasound were 99.4%, 99.4%, 99.4%, 95.9% and 79.4%, respectively. The sensitivity for complete BP root injury was 0.74, and the specificity was 0.91. No significant differences in sensitivity or specificity were observed across time stages. Ultrasound exhibited substantial consistency with surgical findings (k = 0.70) for complete BP root injury at any stage post-injury. Ultrasound can be an optional method of diagnosis of complete BP root injury at an early stage post-injury. (C) 2022 World Federation for Ultrasound in Medicine & Biology. All rights reserved.
患者 男,36岁,于就诊4个月前因左腕部电锯伤在当地医院行急诊手术,术中发现尺神经断裂并行神经修复术.术后自觉运动感觉无任何进步,至门诊检查发现左手爪形手畸形,背侧骨间肌萎缩明显,但反复行感觉检查后仍自述环、小指掌侧感觉存在.患者自评DASH(the Disabilities of the Arm,Shoulder,and Hand)评分为9.2分,视觉模拟评分(visual analog scale,VAS)为4分.因就诊医院无肌电图及神经B超,故建议患者至上级医院做进一步尺神经损伤定位及定性检查.B超结果提示:左腕部尺神经完全断裂表现.随后患者进行二期手术,并行腓肠神经移植尺神经修复术(图1,2).
腕关节相关疾病的诊治与肢体残障后功能重建是手外科学科发展中的两大重要组成部分。随着社会经济的发展,腕关节疾病的诊治从一开始的外固定等保守治疗发展到开放手术,目前逐渐向精准化和微创化方面发展。肢体功能重建领域相关技术从肢(指)体再植、再造发展到周围神经损伤后的修复和重建,拓展到中枢损伤肢体偏瘫后功能重建的综合诊治等方面。以复旦大学附属华山医院手外科为代表的医疗团队在不同的时期均对这两大方向开展过一些创新性的研究工作,对推动手外科事业发展和学科建设做出了积极的贡献。近年来,组织工程学、信息科学、人工智能等相关学科的发展日新月异,结合3D打印、智能假肢、脑机接口等新兴技术开展的相应跨界合作研究已取得了初步的成果。本文对腕关节与肢体功能重建相关技术在手外科学中的研究进展和发展趋势进行综述。
OBJECTIVE:Injuries to the upper and middle trunks of brachial plexus result in dysfunction of radial nerves in newborns but do not in adults. We hypothesized that the radial nerve had a lower proportion of myelinated nerve fibers (MNFs) from the lower trunk in newborns than in adults, and in newborns those MNFs were less developed than MNFs in the radial nerve from the middle and upper trunks. METHODS:We dissected bilateral brachial plexus of six newborn and six adult cadavers. The radial nerve and its fascicles were separated proximally to posterior divisions of the upper, middle and lower trunks, and fascicles of the radial nerve were harvested from three trunks to calculate respective percentage of MNFs accounting for the total number of MNFs in the radial nerve. We determined diameters of axons and g-ratios of MNFs in the radial nerve from three trunks. RESULTS:Compared with adults, the percentage of MNFs in the radial nerve from the lower trunk was lower (p < 0.05), from the middle trunk higher (p < 0.05) and from the upper trunk similar (p > 0.05) in newborns, though MNF counts from three trunks were higher in newborns, respectively (p < 0.01, all). In newborns, MNFs in the radial nerve from the lower trunk had smaller axonal diameters and higher g-ratios than those from the middle and upper trunks (p < 0.017, all), while in adults there were no such differences. CONCLUSIONS:Lower proportion of MNFs in the radial nerve from the lower trunk in newborns than in adults, and in newborns immaturity of MNFs from the lower trunk relative to MNFs from the middle and upper trunks may be the major morphological basis of difference in clinical appearances of radial nerve palsy caused by injuries to C5-C6-C7 between newborns and adults.
Abstract Backgrounds Contralateral cervical seventh (C7) nerve transfer aids motor and sensory recovery in total brachial plexus avulsion injuries (TBPI), but synchronous sensation often persists postoperatively. The mechanism underlying synchronous sensory phenomena remain largely unknown. Objective To investigate the role of central plasticity in sensory recovery after contralateral C7 nerve transfer. Methods Sixteen right TBPI patients who received contralateral C7 nerve transfer for more than 2 years were included. Sensory evaluations included Semmes–Weinstein monofilament assessment (SWM), synchronous sensation test, and sensory evoked action potential (SNAP) test. Smaller value in the SWM assessment and larger amplitude of SNAP indicates better tactile sensory. Functional magnetic resonance imaging was performed while stimulations delivered to each hand separately in block‐design trials for central plasticity analysis. Results The SWM value of the injured right hand was increased compared with the healthy left side (difference: 1.76, 95% confidence interval: 1.37–2.15, p < .001), and all 16 patients developed synchronous sensation. In functional magnetic resonance imaging analysis, sensory representative areas of the injured right hand were located in its ipsilateral S1, and 23.4% of this area overlapped with the representative area of the left hand. The ratio of overlap for each patient was significantly correlated with SWM value and SNAP amplitude of the right hand. Conclusion The tactile sensory functioning of the injured hand was dominated by its ipsilateral SI in long‐term observation, and its representative area largely overlapped with the representative area of the intact hand, which possibly reflected a key mechanism of synchronous sensation in patients with TBPI after contralateral C7 transfer.
近年来腰骶丛神经损伤所致下肢功能障碍的发生率上升,但其表现多样、损伤机制复杂,诊断和治疗困难。目前对腰骶丛神经损伤所致下肢功能障碍的评估方法、手术指征、诊疗路径均存在争议。本文对近十年文献和本课题组的工作进行了全面回顾,从腰骶丛神经损伤的诊断、治疗和微创新技术方面进行总结综述,以提高对该疾病的认识,为进一步开展腰骶丛神经损伤相关的科学研究和临床应用提供参考。
游离足趾移植术于1966年由我国杨东岳首创,经过国内外广大学者50多年的潜心研究与广泛应用,经历了多个发展阶段,目前已成为最受欢迎的拇、手指缺损修复与再造的方法。本文从足趾移植重建拇、手指的发展历史,不同时期手术技术与观念的创新,目前存在的主要问题与研究现状等方面作一介绍。
PURPOSE:To evaluate whether gadolinium enhanced 3D SPACE STIR sequence technique increases the visualization of the lumbosacral plexus (LSP) and its small branches.METHODS:A retrospective study was performed on 24 patients who had underwent 3D SPACE STIR sequences scan with and without the administration of gadolinium contrast. In this study, we focused on the healthy sides of the LSP and its branches in each patient. The contrast ratio (CR), contrast-to-noise ratio (CNR) and signal-to-noise ratio (SNR) were objectively calculated by two experienced radiologists. The subjective visualization scores of the branches that were vitally important to therapeutic decision-making including femoral nerves, obturator nerves, lumbosacral trunks, superior gluteal and extra-pelvic sciatic nerves, were assessed using post-processing images.RESULTS:Of the 24 subjects, all LSP nerve roots, femoral nerves, lumbosacral trunks and sciatic nerves were illustrated on both contrast-enhanced and non-contrast images. The enhanced images were found to have higher nerve to vein CNRs compared to non-contrast images. Compared to non-contrast images, the CRs of nerves versus surrounding fat tissues, bones, veins and muscles were improved in contrast-enhanced images, while the SNRs were better but not significantly so. Targeted maximum intensity projection (MIP) nerves including femoral, obturator, superior gluteal and extra-pelvic sciatic nerves obtained significantly higher subjective scores when gadolinium was administered.CONCLUSIONS:The gadolinium enhanced 3D SPACE STIR sequence provided superior vascular suppression, resulting in increased conspicuity of LSP and its small branches. Altogether, this shows great potential for therapeutic decision-making in traumatic LSP lesions cases.
Wrist is one of the most frequently used joints in life and work. Wrist injury will seriously affect the ability of self-care, study, work, exercise and fitness. The wrist is small in size but complex in composition, so the bone and ligament structures are relatively fine. Traditional open surgery increases the risk of damage to these structures or their blood supply, and thus the recovery effect is limited. With the development of small arthroscopy-related instruments and techniques, minimally invasive surgery techniques such as ligament injury repair, reduction and fixation of intra-articular fractures, fixation of nonunion bone grafts, and reduction and fixation of complex fractures have emerged, which made the treatment of wrist and ligament injury minimally invasive. The application of the 3D printing guide technology and navigation technology modifies the traditional surgical techniques, as making the treatment of wrist bone and ligament injuries more minimally invasive and precise to reduce the degree and risk of iatrogenic injury and improve the curative effect. Wrist arthroscopy has become an indispensable tool in the surgical diagnosis and treatment of wrist and ligament injuries, and is an essential skill for hand surgeons. The authors introduce the progress of minimally invasive and precise surgical techniques of fracture fixation and ligament repair for wrist bone and ligament injuries, which provides a reference for clinical work.
Background Femoral nerve injury may occur in severe traffic accident injuries with pelvic fracture. Sural nerve grafts or ipsilateral obturator nerve transfer may be used to restore femoral nerve function. We report a new procedure transferring the contralateral obturator nerve to restore femoral nerve function.Case description A 30 year-old male suffering complete lumbar plexus rapture received a contralateral obturator nerve transfer in our hospital. At 2 years follow up he had gained Medical Research Council Grade 3 muscle strength in his 23th months follow-up, with normal gait, Lower Extremity Functional Scale score of 58.75% and Femoral Nerve Motor Function Scale score 61%.Conclusion The contralateral obturator nerve transfer is a reliable alternative if the nerve graft or ipsilateral obturator nerve cannot be performed.
In treating patients with obstetric brachial plexus palsy, we noticed that denervated intrinsic muscles of the hand become irreversibly atrophic at a faster than denervated biceps. In a rat model of obstetric brachial plexus palsy, denervated intrinsic musculature of the forepaw entered the irreversible atrophy far earlier than denervated biceps. In this study, isobaric tags for relative and absolute quantitation were examined in the intrinsic musculature of forepaw and biceps on denervated and normal sides at 3 and 5 weeks to identify dysregulated proteins. Enrichment of pathways mapped by those proteins was analyzed by Kyoto Encyclopedia of Genes and Genomes analysis. At 3 weeks, 119 dysregulated proteins in denervated intrinsic musculature of the forepaw were mapped to nine pathways for muscle regulation, while 67 dysregulated proteins were mapped to three such pathways at 5 weeks. At 3 weeks, 27 upregulated proteins were mapped to five pathways involving inflammation and apoptosis, while two upregulated proteins were mapped to one such pathway at 5 weeks. At 3 and 5 weeks, 53 proteins from pathways involving regrowth and differentiation were downregulated. At 3 weeks, 64 dysregulated proteins in denervated biceps were mapped to five pathways involving muscle regulation, while, five dysregulated proteins were mapped to three such pathways at 5 weeks. One protein mapped to inflammation and apoptotic pathways was upregulated from one pathway at 3 weeks, while three proteins were downregulated from two other pathways at 5 weeks. Four proteins mapped to regrowth and differentiation pathways were upregulated from three pathways at 3 weeks, while two proteins were downregulated in another pathway at 5 weeks. These results implicated inflammation and apoptosis as critical factors aggravating atrophy of denervated intrinsic muscles of the hand during obstetric brachial plexus palsy. All experimental procedures and protocols were approved by the Experimental Animal Ethics Committee of Fudan University, China (approval No. DF-325) in January 2015.
The time window for repair of the lower trunk is shorter than that of the upper trunk in patients with obstetric brachial plexus palsy. The denervated intrinsic muscles of the hand become irreversibly atrophic much faster than the denervated biceps. However, it is unclear whether the motor endplates of the denervated interosseous muscles degenerate more rapidly than those of the denervated biceps. In this study, we used a rat model of obstetric brachial plexus palsy of the right upper limb. C5–6 was lacerated distal to the intervertebral foramina, with concurrent avulsion of C7–8 and T1, with the left upper limb used as the control. Bilateral interossei and biceps were collected at 5 and 7 weeks. Immunofluorescence was used to assess the morphology of the motor endplates. Real-time quantitative polymerase chain reaction and western blot assay were used to assess mRNA and protein expression levels of acetylcholine receptor subunits (α, β and δ), rapsyn and β-catenin. Immunofluorescence microscopy showed that motor endplates in the denervated interossei were fragmented, while those in the denervated biceps were morphologically intact with little fragmentation. The number and area of motor endplates, relative to the control side, were significantly lower in the denervated interossei compared with the denervated biceps. mRNA and protein expression levels of acetylcholine receptor subunits (α, β and δ) were significantly lower, whereas β-catenin protein expression was higher, in the denervated interossei compared with the denervated biceps. The protein expression of rapsyn was higher in the denervated biceps than in the denervated interossei at 7 weeks. Our findings demonstrate that motor endplates of interossei are destabilized, whereas those of the biceps remain stable, in the rat model of obstetric brachial plexus palsy. All procedures were approved by the Experimental Animal Ethics Committee of Fudan University, China (approval No. DF-187) in January 2016.