The vascularisation of the spinal cord--anatomical and pathophysiological aspects
Fazio, C.; Agnoli, A.
Vascular Surgery 4(4): 245-257
1970
ISSN/ISBN: 0042-2835 PMID: 5500070 Document Number: 24595
Document emailed within 1 workday
Related Documents
Borshchenko, I.A.; Baskov, A.V.; Korshunov, A.G.; Satanova, F.S. 2000: Pathophysiological aspects of traumatic injury to and regeneration of the spinal cord Zhurnal Voprosy Neirokhirurgii Imeni N. N. Burdenko 10(2): 28-31Iarygin, V.N.; Banin, V.V.; Iarygin, K.N. 2005: Spinal cord regeneration in rats after thoracic segmentectomy: restoration of the anatomical integrity of the spinal cord Morfologiia 127(2): 39-43
Kiseleva, A.F.; Galakhin, K.A. 1982: Clinic-anatomical characteristics of the cardiovascular system in traumatic spinal cord injuries Vrachebnoe Delo 4: 31-35
Malinský, J.; Malínská, J. 1973: A comparative anatomical and ultrastructural study of the grey matter of the spinal cord in hedgehog and bat Activitas Nervosa Superior 15(1): 30-31
Shein, A.P.; Krivoruchko, G.A.; Chukhareva, N.A.; Liulin, S.V. 2000: Responsiveness and resistance of spinal cord structures in patients with closed thoracic and lumbar spinal injuries: neurophysiological and clinical aspects Vestnik Rossiiskoi Akademii Meditsinskikh Nauk 2: 35-41
Sudo, N. 1980: Clinical application of the evoked spinal cord potentials. Part 1. Neurophysiological assessment of the evoked spinal cord potentials in experimental cord trauma - with reference to cord compression and ischemia Nihon Seikeigeka Gakkai Zasshi 54(12): 1631-1647
Isu, T. 1990: Spinal cord evoked potential in experimental spinal cord injury--the changes in spinal cord evoked potential following impact injury, and effect of mannitol administration on acute experimental spinal cord injury Hokkaido Journal of Medical Science 65(2): 142-151
Soeda, S. 1988: An experimental study on conductive spinal cord action potentials evoked by direct stimulation of the spinal cord--pathway and source of conductive action potentials in the spinal cord Nihon Seikeigeka Gakkai Zasshi 62(5): 535-549
Dall, D.M. 1972: Injuries of the cervical spine. II. Does anatomical reduction of the bony injuries improve the prognosis for spinal cord recovery? South African Medical Journal 46(31): 1083-1090
Ide, R.; Fukusaki, M.; Yamaguchi, K.; Matsumoto, M.; Ogata, K.; Sumikawa, K. 1997: Effect of controlled hypotension induced by prostaglandin E1 on evoked spinal cord potential and spinal cord blood flow Masui. Japanese Journal of Anesthesiology 46(10): 1342-1346
Emeliannikov, D.V.; Shapkova, E.Y.; Moshonkina, T.R.; Gerasimenko, Y.P. 2016: Evaluation of motor neuron excitability in lumbosacral spinal cord: Transcutaneous spinal cord stimulation as compared to H-reflex Fiziologiia Cheloveka 42(3): 32-36
Bogacheva, I.N.; Nikitin, O.A.; Musienko, P.E.; Savokhin, A.A.; Gerasimenko, I.P. 2009: Mechanisms of stepping rhythm formation during epidural spinal cord stimulation in decerebrated and spinal cord transected cats Biofizika 54(3): 529-536
Isu, T.; Iwasaki, Y.; Akino, M.; Abe, H. 1990: Effect of mannitol administration and myelotomy on acute experimental spinal cord injury: investigation by spinal cord evoked potential No Shinkei Geka. Neurological Surgery 18(3): 267-272
Sueda, T.; Okada, K.; Morita, S.; Wada, H.; Watari, M.; Orihashi, K.; Shikata, H.; Matsuura, Y. 1998: Three different approaches to spinal cord monitoring for the prediction of spinal cord ischemia during thoracic aortic aneurysm surgery Annals of Thoracic and Cardiovascular Surgery: Official Journal of the Association of Thoracic and Cardiovascular Surgeons of Asia 4(5): 290-293
Veleanu, C. 1975: The cervical locking mechanism. its contribution to the cervical spine stability and to the vertebral artery and spinal cord safety. An anatomical study Morphologie et Embryologie 21(1): 3-7
Virozub, I.D.; Bublik, L.A.; Chernovskiĭ, V.I. 1990: Treatment of pain in vertebral-spinal cord injury by functional operations on the spinal cord Zhurnal Voprosy Neirokhirurgii Imeni N. N. Burdenko 1: 11-13
Gilerovich, E.G.; Fedorova, E.A.; Otellin, V.A. 1996: The development of human embryonic spinal cord transplants in the spinal cord of adult rats Morfologiia 110(5): 43-46
Rao, S.C.; Fehlings, M.G. 1999: The optimal radiologic method for assessing spinal canal compromise and cord compression in patients with cervical spinal cord injury. Part I: An evidence-based analysis of the published literature Spine 24(6): 598-604
Bracken, M.B.; Shepard, M.J.; Holford, T.R.; Leo-Summers, L.; Aldrich, E.F.; Fazl, M.; Fehlings, M.; Herr, D.L.; Hitchon, P.W.; Marshall, L.F.; Nockels, R.P.; Pascale, V.; Perot, P.L.; Piepmeier, J.; Sonntag, V.K.; Wagner, F.; Wilberger, J.E.; Winn, H.R.; Young, W. 1997: Administration of methylprednisolone for 24 or 48 hours or tirilazad mesylate for 48 hours in the treatment of acute spinal cord injury. Results of the Third National Acute Spinal Cord Injury Randomized Controlled Trial. National Acute Spinal Cord Injury Study JAMA 277(20): 1597-1604
Hohmann, G.W. 1975: Psychological aspects of treatment and rehabilitation of the spinal cord injured person Clinical Orthopaedics and Related Research 112: 81-88