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1.
BMC Complement Med Ther ; 23(1): 334, 2023 Sep 21.
Artigo em Inglês | MEDLINE | ID: mdl-37735652

RESUMO

BACKGROUND: Tui Na (Chinese massage) is a relatively simple, inexpensive, and non-invasive intervention, and has been used to treat stroke patients for many years in China. Tui Na acts on specific parts of the body which are called meridians and acupoints to achieve the role of treating diseases. Yet the underlying neural mechanism associated with Tui Na is not clear due to the lack of detection methods. OBJECTIVE: Functional near-infrared spectroscopy (fNIRS) was used to explore the changes of sensorimotor cortical neural activity in patients with upper limb motor dysfunction of stroke and healthy control groups during Tui Na Hegu Point. METHODS: Ten patients with unilateral upper limb motor dysfunction after stroke and eight healthy subjects received Tui Na. fNIRS was used to record the hemodynamic data in the sensorimotor cortex and the changes in blood flow were calculated based on oxygenated hemoglobin (Oxy-Hb), the task session involved repetitive Tui Na on Hegu acupoint, using a block design [six cycles: rest (20 seconds); Tui Na (20 seconds); rest (30 seconds)]. The changes in neural activity in sensorimotor cortex could be inferred according to the principle of neurovascular coupling, and the number of activated channels in the bilateral hemisphere was used to calculate the lateralization index. RESULT: 1. For hemodynamic response induced by Hegu acupoint Tui Na, a dominant increase in the contralesional primary sensorimotor cortex during Hegu point Tui Na of the less affected arm in stroke patients was observed, as well as that in healthy controls, while this contralateral pattern was absent during Hegu point Tui Na of the affected arm in stroke patients. 2. Concerning the lateralization index in stroke patients, a significant difference was observed between lateralization index values for the affected arm and the less affected arm (P < 0.05). Wilcoxon tests showed a significant difference between lateralization index values for the affected arm in stroke patients and lateralization index values for the dominant upper limb in healthy controls (P < 0.05), and no significant difference between lateralization index values for the less affected arm in stroke patients and that in healthy controls (P = 0.36). CONCLUSION: The combination of Tui Na and fNIRS has the potential to reflect the functional status of sensorimotor neural circuits. The changes of neuroactivity in the sensorimotor cortex when Tui Na Hegu acupoint indicate that there is a certain correlation between acupoints in traditional Chinese medicine and neural circuits.


Assuntos
Terapia por Acupuntura , Massagem , Medicina Tradicional Chinesa , Transtornos Motores , Córtex Sensório-Motor , Acidente Vascular Cerebral , Humanos , Pontos de Acupuntura , População do Leste Asiático , Córtex Sensório-Motor/diagnóstico por imagem , Córtex Sensório-Motor/fisiopatologia , Acidente Vascular Cerebral/complicações , Acidente Vascular Cerebral/terapia , Terapia por Acupuntura/métodos , Medicina Tradicional Chinesa/métodos , Extremidade Superior/inervação , Extremidade Superior/fisiopatologia , Transtornos Motores/etiologia , Transtornos Motores/fisiopatologia , Transtornos Motores/reabilitação , Reabilitação do Acidente Vascular Cerebral/métodos , Meridianos , Vias Neurais/diagnóstico por imagem , Vias Neurais/fisiopatologia , Espectroscopia de Luz Próxima ao Infravermelho
2.
Neural Regen Res ; 18(5): 1062-1066, 2023 May.
Artigo em Inglês | MEDLINE | ID: mdl-36254994

RESUMO

Multi-target neural circuit-magnetic stimulation has been clinically shown to improve rehabilitation of lower limb motor function after spinal cord injury. However, the precise underlying mechanism remains unclear. In this study, we performed double-target neural circuit-magnetic stimulation on the left motor cortex and bilateral L5 nerve root for 3 successive weeks in a rat model of incomplete spinal cord injury caused by compression at T10. Results showed that in the injured spinal cord, the expression of the astrocyte marker glial fibrillary acidic protein and inflammatory factors interleukin 1ß, interleukin-6, and tumor necrosis factor-α had decreased, whereas that of neuronal survival marker microtubule-associated protein 2 and synaptic plasticity markers postsynaptic densification protein 95 and synaptophysin protein had increased. Additionally, neural signaling of the descending corticospinal tract was markedly improved and rat locomotor function recovered significantly. These findings suggest that double-target neural circuit-magnetic stimulation improves rat motor function by attenuating astrocyte activation, thus providing a theoretical basis for application of double-target neural circuit-magnetic stimulation in the clinical treatment of spinal cord injury.

3.
Neural Regen Res ; 18(2): 410-415, 2023 Feb.
Artigo em Inglês | MEDLINE | ID: mdl-35900438

RESUMO

Modified constraint-induced movement therapy (mCIMT) has shown beneficial effects on motor function improvement after brain injury, but the exact mechanism remains unclear. In this study, amplitude of low frequency fluctuation (ALFF) metrics measured by resting-state functional magnetic resonance imaging was obtained to investigate the efficacy and mechanism of mCIMT in a control cortical impact (CCI) rat model simulating traumatic brain injury. At 3 days after control cortical impact model establishment, we found that the mean ALFF (mALFF) signals were decreased in the left motor cortex, somatosensory cortex, insula cortex and the right motor cortex, and were increased in the right corpus callosum. After 3 weeks of an 8-hour daily mCIMT treatment, the mALFF values were significantly increased in the bilateral hemispheres compared with those at 3 days postoperatively. The mALFF signal values of left corpus callosum, left somatosensory cortex, right medial prefrontal cortex, right motor cortex, left postero dorsal hippocampus, left motor cortex, right corpus callosum, and right somatosensory cortex were increased in the mCIMT group compared with the control cortical impact group. Finally, we identified brain regions with significantly decreased mALFF values at 3 days postoperatively. Pearson correlation coefficients with the right forelimb sliding score indicated that the improvement in motor function of the affected upper limb was associated with an increase in mALFF values in these brain regions. Our findings suggest that functional cortical plasticity changes after brain injury, and that mCIMT is an effective method to improve affected upper limb motor function by promoting bilateral hemispheric cortical remodeling. mALFF values correlate with behavioral changes and can potentially be used as biomarkers to assess dynamic cortical plasticity after traumatic brain injury.

4.
Neural Regen Res ; 15(11): 2047-2056, 2020 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-32394960

RESUMO

Paired associative stimulation has been used in stroke patients as an innovative recovery treatment. However, the mechanisms underlying the therapeutic effectiveness of paired associative stimulation on neurological function remain unclear. In this study, rats were randomly divided into middle cerebral occlusion model (MCAO) and paired associated magnetic stimulation (PAMS) groups. The MCAO rat model was produced by middle cerebral artery embolization. The PAMS group received PAMS on days 3 to 20 post MCAO. The MCAO group received sham stimulation, three times every week. Within 18 days after ischemia, rats were subjected to behavioral experiments-the foot-fault test, the balance beam walking test, and the ladder walking test. Balance ability was improved on days 15 and 17, and the foot-fault rate was less in their affected limb on day 15 in the PAMS group compared with the MCAO group. Western blot assay showed that the expression levels of brain derived neurotrophic factor, glutamate receptor 2/3, postsynaptic density protein 95 and synapsin-1 were significantly increased in the PAMS group compared with the MCAO group in the ipsilateral sensorimotor cortex on day 21. Resting-state functional magnetic resonance imaging revealed that regional brain activities in the sensorimotor cortex were increased in the ipsilateral hemisphere, but decreased in the contralateral hemisphere on day 20. By finite element simulation, the electric field distribution showed a higher intensity, of approximately 0.4 A/m2, in the ischemic cortex compared with the contralateral cortex in the template. Together, our findings show that PAMS upregulates neuroplasticity-related proteins, increases regional brain activity, and promotes functional recovery in the affected sensorimotor cortex in the rat MCAO model. The experiments were approved by the Institutional Animal Care and Use Committee of Fudan University, China (approval No. 201802173S) on March 3, 2018.

5.
Artigo em Chinês | MEDLINE | ID: mdl-24195826

RESUMO

OBJECTIVE: To get the three-Dimensional imaging model of internal ear and middle ear using the Micro-CT equipment, and research the nondestructive imaging of mice acoustic capsule, and investigate the application of Micro-CT inmorphology of acoustic capsule. METHODS: The mice were executed to harvest the acoustic capsules. The acoustic capsules were fixed in trinitrophenol before scanning by Micro-CT .Using this equipment, we obtained a 3D model of reconstruction from 2D images. RESULTS: The 3D model of acoustic capsule and the model was extraordinary clear to show the eardrum, ossicles chain, vestibulum, semicircular canal, and cochlear. The 3D structure model was excellent for look through, and it was free to revolve in any axial direction on the platform of software Amira-5.4. CONCLUSIONS: By using Micro-CT equipment to research the nondestructive three-Dimensional imaging of acoustic capsule, the outside structures and internal details of the acoustic capsule can be observed at the same time. 3D structure model which was good for looking through. Using Micro-CT equipment is easy to operate and also can save a lot of samples, and the images have high resolution ratio. Micro-CT has good prospects for development.


Assuntos
Acústica , Imageamento Tridimensional/métodos , Animais , Cóclea , Processamento de Imagem Assistida por Computador , Camundongos , Pesquisa , Canais Semicirculares , Software , Microtomografia por Raio-X
6.
Zhonghua Yi Xue Za Zhi ; 92(48): 3442-4, 2012 Dec 25.
Artigo em Chinês | MEDLINE | ID: mdl-23327709

RESUMO

OBJECTIVE: To employ micro-CT equipment for nondestructive three-dimensional (3D) imaging of internal ear. METHODS: The guinea pigs were anesthetized by napental and bilateral cochleas harvested. Cochlea was fixed in glutaraldehyde before scanning of micro-CT. Two-dimensional (2D) images were acquired for a 3D model of reconstruction. RESULTS: The 2D images was distinct enough to visualize vestibular gallery, scala media, scala tympani, Reissner's membrane, velum, organ of Corti and spiral ganglion, etc. The 3D structure model was excellent for viewing and free to revolve in any axial direction. CONCLUSIONS: Micro-CT may allow nondestructive three-dimensional imaging of internal ear. As compared with the traditional method of morphology, this approach is able to save samples, easy to operate and has a high resolution. And it is more easily popularized than the synchrotron radiation approach.


Assuntos
Cóclea/anatomia & histologia , Cóclea/diagnóstico por imagem , Imageamento Tridimensional , Microtomografia por Raio-X , Animais , Cobaias
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