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1.
Arq. ciências saúde UNIPAR ; 26(2): 175-186, maio-ago. 2022.
Artigo em Português | LILACS | ID: biblio-1372973

RESUMO

O Tronco encefálico (TE) é uma estrutura singular do sistema nervoso central, pois nele passam tratos sensoriais ascendentes da medula espinal, tratos sensoriais da cabeça e do pescoço, os tratos descendentes motores originados no prosencéfalo (divisão mais rostral do encéfalo), e as vias ligadas aos centros de movimento dos olhos. Contém ainda os núcleos dos nervos cranianos e está envolvido na regulação do nível de consciência através de projeções ao prosencéfalo oriundas da formação reticular. Todas essas estruturas coexistem em um espaço muito exíguo, o que faz com que o TE seja um local muito sensível às alterações patológicas, sendo que os pacientes apresentam muitos sinais neurológicos mesmo com lesões muito pequenas nesse local. Compreender a anatomia interna do TE é essencial para o diagnóstico neurológico e a prática da medicina clínica. Outros profissionais da saúde também se beneficiam desse conhecimento para melhor manejo dos seus pacientes neurológicos. Essa revisão apresenta detalhes da anatomia macroscópica e microscópica do bulbo, bem como seus correlatos clínicos frente às lesões mais comuns dessa divisão particular do TE, conhecidas como síndromes bulbares.


The brainstem is a unique structure in the central nervous system, since it gives way to ascending sensory tracts from the spinal cord, sensory tracts from the head and neck, motor descending tracts originating from the forebrain, and the pathways connected to the eye movement centers. It also contains the cranial nerve nuclei and is involved in the regulation of consciousness levels through projections to the forebrain originating in the reticular formation. All these structures coexist in a very small space, which makes the brainstem very sensitive to pathological changes, with patients presenting several neurological symptoms even with very small brainstem lesions. Understanding the internal anatomy of the brainstem is essential for neurological diagnosis and the practice of clinical medicine. Other health professionals also benefit from this knowledge to better manage their neurological patients. This review presents detailed information on the macroscopic and microscopic anatomy of the medulla, as well as its clinical correlates in the face of the most common lesions of this particular division of the brainstem, known as medullary syndromes.


Assuntos
Humanos , Síndrome Medular Lateral/diagnóstico , Bulbo/anatomia & histologia , Tratos Piramidais/anatomia & histologia , Formação Reticular/anatomia & histologia , Núcleo Espinal do Trigêmeo/anatomia & histologia , Área Postrema/anatomia & histologia , Pedúnculo Cerebral/anatomia & histologia
2.
Br J Radiol ; 94(1120): 20201353, 2021 Apr 01.
Artigo em Inglês | MEDLINE | ID: mdl-33571018

RESUMO

OBJECTIVES: To set age-specific normal reference values for brainstem, cerebellar vermis, and peduncles measurements and characterize values' variations according to gender, age, and age by gender interaction. METHODS: 565 normal brain magnetic resonance examinations with normal anatomy and signal intensity of the supra- and infratentorial structures were categorized into six age groups (infant, child, adolescent, young adult, middle-age adult, and old aged adults). Patients with congenital malformations, gross pathology of the supra- or infratentorial brain, brain volume loss, developmental delay, metabolic disorders, and neuropsychological disorders (n = 2.839) were excluded. On midsagittal T1 weighted and axial T2 weighted images specific linear diameters and ratios of the brainstem, cerebellar vermis, and peduncles were attained. Two observers assessed a random sample of 100 subjects to evaluate the inter- and intraobserver reproducibility. Intraclass correlation coefficients, means ± standard deviation, one and two-way analysis of variance tests were used in the statistical analysis. RESULTS: Good to excellent inter- and intraobserver measurements' reproducibility were observed, except for the transverse diameter of the midbrain, the anteroposterior diameter of the medulla oblongata at the pontomedullary and cervicomedullary junctions, cerebellar vermis anteroposterior diameter, and thickness of the superior cerebellar peduncle. Age-specific mean values of the investigated measurements were established. A significant gender-related variation was recorded in the anteroposterior diameter of the basis pontis (p = 0.044), the anteroposterior diameter of the medulla oblongata at the cervicomedullary junction (p = 0.044), and cerebellar vermis height (p = 0.018). A significant age-related change was detected in all measurements except the tectal ratio. Age by gender interaction had a statistically significant effect on the tectal ratio, inferior, and middle cerebellar peduncles' thickness (p = 0.001, 0.022, and 0.028, respectively). CONCLUSION: This study provides age-specific normal mean values for various linear dimensions and ratios of the posterior fossa structures with documentation of measurements' variability according to gender, age, and their interaction. ADVANCES IN KNOWLEDGE: It provides a valuable reference in the clinical practice for easier differentiation between physiological and pathological conditions of the posterior fossa structures especially various neurodegenerative diseases and congenital anomalies.


Assuntos
Mapeamento Encefálico/métodos , Tronco Encefálico/anatomia & histologia , Vermis Cerebelar/anatomia & histologia , Imageamento por Ressonância Magnética/métodos , Córtex Olfatório/anatomia & histologia , Adolescente , Adulto , Fatores Etários , Idoso , Pedúnculo Cerebral/anatomia & histologia , Criança , Pré-Escolar , Feminino , Humanos , Lactente , Recém-Nascido , Masculino , Pessoa de Meia-Idade , Pedúnculo Cerebelar Médio/anatomia & histologia , Valores de Referência , Reprodutibilidade dos Testes , Adulto Jovem
3.
Neurosurg Rev ; 42(1): 155-161, 2019 Mar.
Artigo em Inglês | MEDLINE | ID: mdl-29623480

RESUMO

There are still different descriptions of the segmentation of the posterior cerebral artery, although there is a radiological and anatomical consensus on the segmentation of the anterior and the middle cerebral artery. This study aims to define the most appropriate localization for origin and end points of the segments through reviewing the segmentation of the posterior cerebral artery. The segments and the cortical branches originating from those segments of the 40 posterior cerebral arteries of 20 cadaver brains were examined under operating microscope. In this research, the P1, P2, P3, P4, and P5 classification of the segmentation of the posterior cerebral artery is redefined. This redefinition was made to overcome the complexities of previous definitions. The P1 segment in this research takes its origin from the basilar tip and ends at the junction with the posterior communicating artery. The average diameter of this segment at the origin was 2.21 mm (0.9-3.3), and the average length was 6.8 mm (3-12). The P2 segment extends from the junction with the posterior communicating artery to the origin of the lateral temporal trunk. This point usually situates on one level of posterior of the cerebral peduncle. The average diameter of this segment at the origin was 2.32 mm (1.3-3.1), and the average length was 20.1 mm (11-26). The P3 segment extends from the origin of the lateral temporal trunk to the colliculus where both the posterior cerebral arteries are the nearest to each other (quadrigeminal point) and is located at the anterior-inferior of the splenium. The average diameter of this segment at the origin was 1.85 mm (1.2-2.7), and the average length was 16.39 mm (9-28). The P4 begins at the quadrigeminal point and ends at the top of the cuneus. The average diameter of this segment at the origin was 1.55 mm (1.1-2.2). While the P5 segment is named as the terminal branches of the major terminal branches of the posterior cerebral artery, no definite border was found between the P4 and the P5 segments. In this study, the segmentation of the posterior cerebral artery, developed by Krayenbühl and Yasargil, was redefined to be more appropriate for radiological and anatomical purposes.


Assuntos
Microcirurgia , Artéria Cerebral Posterior/anatomia & histologia , Artéria Cerebral Posterior/cirurgia , Idoso , Idoso de 80 Anos ou mais , Artéria Basilar/anatomia & histologia , Artéria Basilar/cirurgia , Cadáver , Artérias Cerebrais/anatomia & histologia , Artérias Cerebrais/cirurgia , Pedúnculo Cerebral/anatomia & histologia , Pedúnculo Cerebral/cirurgia , Feminino , Humanos , Masculino , Pessoa de Meia-Idade , Procedimentos Neurocirúrgicos/métodos , Lobo Occipital/anatomia & histologia , Lobo Occipital/cirurgia , Colículos Superiores/anatomia & histologia , Colículos Superiores/cirurgia
4.
Neurocir.-Soc. Luso-Esp. Neurocir ; 28(3): 111-123, mayo-jun. 2017. ilus
Artigo em Espanhol | IBECS | ID: ibc-162771

RESUMO

Objetivo: Realizar un estudio anatómico de microdisección de fibras y radiológico mediante tractografía basada en tensor de difusión (DTT) para demostrar tridimensionalmente los pedúnculos cerebelosos superiores, medios e inferiores. Material y métodos: Bajo visión microscópica y con el uso de instrumental microquirúrgico en el laboratorio, se disecaron 15 troncoencéfalos, 15 hemisferios cerebelosos y 5 hemisferios cerebrales humanos, entre julio de 2014 y julio de 2015. Se obtuvieron imágenes de resonancia magnética cerebrales realizas a 15 sujetos sanos entre julio y diciembre de 2015, empleando secuencias potenciadas en difusión para el trazado de los pedúnculos cerebelosos y su reproducción mediante DTT. Resultados: Se demostraron y describieron anatómicamente las principales fibras de los pedúnculos cerebelosos a lo largo de gran parte de su trayectoria en el cerebelo y troncoencéfalo, identificando las relaciones entre sí y con otros haces de sustancia blanca y núcleos de sustancia gris que los rodean, con la correspondiente representación mediante DTT. Conclusiones: Mediante la técnica de microdisección se apreció la disposición, arquitectura y organización topográfica general de los pedúnculos cerebelosos. Este conocimiento ha aportado una perspectiva anatómica única y profunda que ha favorecido la representación y correcta interpretación de las imágenes de DTT. Esta información debe ser trasladada a la práctica clínica para favorecer el análisis crítico y exhaustivo por parte del cirujano ante la presencia de lesiones que puedan localizarse cercanas a este grupo de haces en el cerebelo y/o troncoencéfalo, y, en consecuencia, mejorar la planificación quirúrgica y alcanzar una técnica microquirúrgica más segura y precisa


Objective: To perform an anatomical and radiological study, using fibre microdissection and diffusion tensor tractography (DTT), to demonstrate the three-dimensionality of the superior, middle and inferior cerebellar peduncles. Material and methods: A total of 15 brain-stem, 15 cerebellar hemispheres, and 5 brain hemispheres were dissected in the laboratory under the operating microscope with microsurgical instruments between July 2014 and July 2015. Brain magnetic resonance imaging was obtained from 15 healthy subjects between July and December of 2015, using diffusion-weighted images, in order to reproduce the cerebellar peduncles on DTT. Results: The main bundles of the cerebellar peduncles were demonstrated and delineated along most of their trajectory in the cerebellum and brain-stem, noticing their overall anatomical relationship to one another and with other white matter tracts and the grey matter nuclei the surround them, with their corresponding representations on DTT. Conclusions: The arrangement, architecture, and general topography of the cerebellar peduncles were able to be distinguished using the fibre microdissection technique. This knowledge has given a unique and profound anatomical perspective, supporting the correct representation and interpretation of DTT images. This information should be incorporated in the clinical scenario in order to assist surgeons in the detailed and critical analysis of lesions that may be located near these main bundles in the cerebellum and/or brain-stem, and therefore, improve the surgical planning and achieve a safer and more precise microsurgical technique


Assuntos
Humanos , Tronco Encefálico/anatomia & histologia , Fibras Nervosas/ultraestrutura , Pedúnculo Cerebral/anatomia & histologia , Microdissecção/métodos , Imagem de Tensor de Difusão/métodos , Anatomia Transversal/métodos , Imageamento Tridimensional
5.
Clin Neurol Neurosurg ; 156: 35-40, 2017 May.
Artigo em Inglês | MEDLINE | ID: mdl-28292695

RESUMO

OBJECTIVE: The Klingler fiber dissection technique is a relevant and reliable method for neurosurgery to identify with accuracy the fine structure of the brain anatomy highlighting white matter tracts. In order to demonstrate the significance of the application of this technique, we aimed to observe the course and relations of the mammillothalamic and habenulo-interpeduncular tracts as there are very few papers showing these important diencephalic tracts. MATERIAL AND METHODS: Twelve formalin-fixed brains were dissected using the Klingler technique in order to expose the medial diencephalic surface. Diencephalic white matter tracts, particularly the mammillothalamic and habenulo-interpeduncular tracts, were dissected using wooden spatulas and metallic dissectors with different sizes and tips. Several measurements were performed in both dissected hemispheres relative to the mammillothalamic and habenulo-interpeduncular tracts. RESULTS: The course and length of these two tracts were visualized and the relations with other fiber systems and with the neighboring gray matter structures quantified and registered. The mammillothalamic tract approximately marks the anteroposterior coordinate of the anterior pole of the subthalamic nucleus in the anterior commissure - posterior commissure plane. CONCLUSION: The present study helps to understand the three-dimensional architecture of the white matter systems of tracts when the Klingler technique is used. The numerical data obtained may be helpful to neurosurgeons while approaching brain paraventricular and ventricular lesions and deep brain stimulation. Finally, the anatomical knowledge can lower surgical complications and improve patient care particularly in the field of neurosurgery.


Assuntos
Diencéfalo/anatomia & histologia , Diencéfalo/cirurgia , Procedimentos Neurocirúrgicos/métodos , Tratos Piramidais/anatomia & histologia , Tratos Piramidais/cirurgia , Substância Branca/anatomia & histologia , Substância Branca/cirurgia , Cadáver , Pedúnculo Cerebral/anatomia & histologia , Pedúnculo Cerebral/cirurgia , Dissecação/métodos , Habenula/anatomia & histologia , Habenula/cirurgia , Humanos , Corpos Mamilares/anatomia & histologia , Corpos Mamilares/cirurgia , Tálamo/anatomia & histologia , Tálamo/cirurgia , Fixação de Tecidos
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