2010 American Heart Association Guidelines for Cardiopulmonary Resuscitation and Emergency Cardiovascular Care



tải về 0.7 Mb.
trang7/7
Chuyển đổi dữ liệu14.08.2016
Kích0.7 Mb.
#18995
1   2   3   4   5   6   7

204. Zandbergen EG, Hijdra A, Koelman JH, Hart AA, Vos PE, Verbeek MM, de Haan RJ. Prediction of poor outcome within the first 3 days of postanoxic coma. Neurology. 2006;66:62–68.[Abstract/Free Full Text]

205. Edgren E, Hedstrand U, Nordin M, Rydin E, Ronquist G. Prediction of outcome after cardiac arrest. Crit Care Med. 1987;15:820–825.[Medline] [Order article via Infotrieve]

206. Young GB, Doig G, Ragazzoni A. Anoxic-ischemic encephalopathy: clinical and electrophysiological associations with outcome. Neurocrit Care. 2005;2:159–164.[CrossRef][Medline] [Order article via Infotrieve]

207. Bassetti C, Bomio F, Mathis J, Hess CW. Early prognosis in coma after cardiac arrest: a prospective clinical, electrophysiological, and biochemical study of 60 patients. J Neurol Neurosurg Psychiatry. 1996;61:610–615.[Abstract/Free Full Text]

208. Edgren E, Hedstrand U, Kelsey S, Sutton-Tyrrell K, Safar P. Assessment of neurological prognosis in comatose survivors of cardiac arrest. BRCT I Study Group. Lancet. 1994;343(8905):1055–1059.[CrossRef][Medline] [Order article via Infotrieve]

209. Arnoldus EP, Lammers GJ. Postanoxic coma: good recovery despite myoclonus status. Ann Neurol. 1995;38:697–698.[Medline] [Order article via Infotrieve]

210. Celesia GG, Grigg MM, Ross E. Generalized status myoclonicus in acute anoxic and toxic-metabolic encephalopathies. Arch Neurol. 1988;45:781–784.[Abstract/Free Full Text]

211. Datta S, Hart GK, Opdam H, Gutteridge G, Archer J. Post-hypoxic myoclonic status: the prognosis is not always hopeless. Crit Care Resusc. 2009;11:39–41.[Medline] [Order article via Infotrieve]

212. English WA, Giffin NJ, Nolan JP. Myoclonus after cardiac arrest: pitfalls in diagnosis and prognosis. Anaesthesia. 2009;64:908–911.[CrossRef][Medline] [Order article via Infotrieve]

213. Morris HR, Howard RS, Brown P. Early myoclonic status and outcome after cardiorespiratory arrest. J Neurol Neurosurg Psychiatry. 1998;64:267–268.[Abstract/Free Full Text]

214. Rundgren M, Rosen I, Friberg H. Amplitude-integrated EEG (aEEG) predicts outcome after cardiac arrest and induced hypothermia. Intensive Care Med. 2006;32:836–842.[CrossRef][Medline] [Order article via Infotrieve]

215. Shibata S, Imota T, Shigeomi S, Sato W, Enzan K. Use of the bispectral index during the early postresuscitative phase after out-of-hospital cardiac arrest. J Anesth. 2005;19:243–246.[CrossRef][Medline] [Order article via Infotrieve]

216. Stammet P, Werer C, Mertens L, Lorang C, Hemmer M. Bispectral index (BIS) helps predicting bad neurological outcome in comatose survivors after cardiac arrest and induced therapeutic hypothermia. Resuscitation. 2009;80:437–442.[CrossRef][Medline] [Order article via Infotrieve]

217. Ajisaka H. Early electroencephalographic findings in patients with anoxic encephalopathy after cardiopulmonary arrest and successful resusitation. J Clin Neurosci. 2004;11:616–618.[CrossRef][Medline] [Order article via Infotrieve]

218. Rossetti AO, Logroscino G, Liaudet L, Ruffieux C, Ribordy V, Schaller MD, Despland PA, Oddo M. Status epilepticus: an independent outcome predictor after cerebral anoxia. Neurology. 2007;69:255–260.[Abstract/Free Full Text]

219. Berkhoff M, Donati F, Bassetti C. Postanoxic alpha (theta) coma: a reappraisal of its prognostic significance. Clin Neurophysiol. 2000;111:297–304.[CrossRef][Medline] [Order article via Infotrieve]

220. Thomke F, Brand A, Weilemann SL. The temporal dynamics of postanoxic burst-suppression EEG. J Clin Neurophysiol. 2002;19:24–31.[CrossRef][Medline] [Order article via Infotrieve]

221. Fatovich DM, Jacobs IG, Celenza A, Paech MJ. An observational study of bispectral index monitoring for out of hospital cardiac arrest. Resuscitation. 2006;69:207–212.[CrossRef][Medline] [Order article via Infotrieve]

222. Rossetti AO, Oddo M, Liaudet L, Kaplan PW. Predictors of awakening from postanoxic status epilepticus after therapeutic hypothermia. Neurology. 2009;72:744–749.[Abstract/Free Full Text]

223. Allen JS, Tranel D, Bruss J, Damasio H. Correlations between regional brain volumes and memory performance in anoxia. J Clin Exp Neuropsychol. 2006;28:457–476.[CrossRef][Medline] [Order article via Infotrieve]

224. De Volder AG, Michel C, Guerit JM, Bol A, Georges B, de Barsy T, Laterre C. Brain glucose metabolism in postanoxic syndrome due to cardiac arrest. Acta Neurol Belg. 1994;94:183–189.[Medline] [Order article via Infotrieve]

225. Fujioka M, Nishio K, Miyamoto S, Hiramatsu KI, Sakaki T, Okuchi K, Taoka T, Fujioka S. Hippocampal damage in the human brain after cardiac arrest. Cerebrovasc Dis. 2000;10:2–7.[Medline] [Order article via Infotrieve]

226. Tommasino C, Grana C, Lucignani G, Torri G, Fazio F. Regional cerebral metabolism of glucose in comatose and vegetative state patients. J Neurosurg Anesthesiol. 1995;7:109–116.[Medline] [Order article via Infotrieve]

227. Lovblad K, Senn P, Walpoth BH, Walpotth BN, Mattle HP, Radanov BP, Ozdoba C, Schroth G. Increased brain tolerance for ischemia in accidental deep hypothermia and circulatory arrest. Riv Neuroradiol 1998;11(SUPPL 2):224–226.

228. Edgren E, Enblad P, Grenvik A, Lilja A, Valind S, Wiklund L, Hedstrand U, Stjernstrom H, Persson L, Ponten U, Langstrom B. Cerebral blood flow and metabolism after cardiopulmonary resuscitation. A pathophysiologic and prognostic positron emission tomography pilot study. Resuscitation. 2003;57:161–170.[CrossRef][Medline] [Order article via Infotrieve]

229. Grubb NR, Fox KA, Smith K, Best J, Blane A, Ebmeier KP, Glabus MF, O'Carroll RE. Memory impairment in out-of-hospital cardiac arrest survivors is associated with global reduction in brain volume, not focal hippocampal injury. Stroke. 2000;31:1509–1514.[Abstract/Free Full Text]

230. Gut E, Fritz R, Leyhe T, et al. MRT after cerebral hypoxia. Correlation of imaging findings with clinical outcome and functional rehabilitation. Klin Neuroradiol. 1999;9:147–152.[CrossRef]

231. Els T, Kassubek J, Kubalek R, Klisch J. Diffusion-weighted MRI during early global cerebral hypoxia: a predictor for clinical outcome? Acta Neurol Scand. 2004;110:361–367.[CrossRef][Medline] [Order article via Infotrieve]

232. Kano H, Houkin K, Harada K, Koyanagi I, Nara S, Itou Y, Imaizumi H, Asai Y, Saitou M. Neuronal cell injury in patients after cardiopulmonary resuscitation: evaluation by diffusion-weighted imaging and magnetic resonance spectroscopy. Neurosurg Rev. 2006;29:88–92.[CrossRef][Medline] [Order article via Infotrieve]

233. Nogami K, Fujii M, Kato S, Nishizaki T, Suzuki M, Yamashita S, Oda Y, Sadamitsu D, Maekawa T. Analysis of magnetic resonance imaging (MRI) morphometry and cerebral blood flow in patients with hypoxic-ischemic encephalopathy. J Clin Neurosci. 2004;11:376–380.[CrossRef][Medline] [Order article via Infotrieve]

234. Wijdicks EF, Campeau NG, Miller GM. MR imaging in comatose survivors of cardiac resuscitation. AJNR Am J Neuroradiol. 2001;22:1561–1565.[Abstract/Free Full Text]

235. Wijman CA, Mlynash M, Caulfield AF, Hsia AW, Eyngorn I, Bammer R, Fischbein N, Albers GW, Moseley M. Prognostic value of brain diffusion-weighted imaging after cardiac arrest. Ann Neurol. 2009;65:394–402.[CrossRef][Medline] [Order article via Infotrieve]

236. Wu O, Sorensen AG, Benner T, Singhal AB, Furie KL, Greer DM. Comatose patients with cardiac arrest: predicting clinical outcome with diffusion-weighted MR imaging. Radiology. 2009;252:173–181.[Abstract/Free Full Text]

237. Arbelaez A, Castillo M, Mukherji SK. Diffusion-weighted MR imaging of global cerebral anoxia. AJNR Am J Neuroradiol. 1999;20:999–1007.[Abstract/Free Full Text]

238. Barrett KM, Freeman WD, Weindling SM, Brott TG, Broderick DF, Heckman MG, Crook JE, Divertie GD, Meschia JF. Brain injury after cardiopulmonary arrest and its assessment with diffusion-weighted magnetic resonance imaging. Mayo Clin Proc. 2007;82:828–835.[Abstract/Free Full Text]

239. Berek K, Lechleitner P, Luef G, Felber S, Saltuari L, Schinnerl A, Traweger C, Dienstl F, Aichner F. Early determination of neurological outcome after prehospital cardiopulmonary resuscitation. Stroke. 1995;26:543–549.[Abstract/Free Full Text]

240. Iida K, Satoh H, Arita K, Nakahara T, Kurisu K, Ohtani M. Delayed hyperemia causing intracranial hypertension after cardiopulmonary resuscitation. Crit Care Med. 1997;25:971–976.[CrossRef][Medline] [Order article via Infotrieve]

241. Ettl A, Felber S, Birbamer G, Daxer A. Corticol blindness following cerebral hypoxia. Proton nuclear magnetic resonance imaging and spectroscopy observations. Neuroophthalmology. 1994;14:259–263.[CrossRef]

242. Greer DM. MRI in anoxic brain injury. Neurocrit Care. 2004;1:213–215.[CrossRef][Medline] [Order article via Infotrieve]

243. Kuoppamaki M, Bhatia KP, Quinn N. Progressive delayed-onset dystonia after cerebral anoxic insult in adults. Mov Disord. 2002;17:1345–1349.[CrossRef][Medline] [Order article via Infotrieve]

244. Arishima H, Ishii H, Kubota T, Maeda H, Shigemori K. [Angiographic features of anoxic encephalopathy in the acute phase: a case report]. No To Shinkei. 2003;55:977–982.[Medline] [Order article via Infotrieve]

245. Verslegers W, Crols R, van den Kerchove M, de Potter W, Appel B, Lowenthal A. Parkinsonian syndrome after cardiac arrest: radiological and neurochemical changes. Clin Neurol Neurosurg. 1988;90:177–179.[CrossRef][Medline] [Order article via Infotrieve]

246. Bolouri MR, Small GA. Neuroimaging of hypoxia and cocaine-induced hippocampal stroke. J Neuroimaging. 2004;14:290–291.[CrossRef][Medline] [Order article via Infotrieve]

247. Fujioka M, Okuchi K, Sakaki T, Hiramatsu K, Miyamoto S, Iwasaki S. Specific changes in human brain following reperfusion after cardiac arrest. Stroke. 1994;25:2091–2095.[Abstract/Free Full Text]

248. Hung GU, Lee JD, Lee JK. Bilateral cranial Tc-99m MDP uptake due to hypoxic-ischemic encephalopathy. Clin Nucl Med. 2007;32:328–329.[CrossRef][Medline] [Order article via Infotrieve]

249. Johkura K, Naito M. Wernicke's encephalopathy-like lesions in global cerebral hypoxia. J Clin Neurosci. 2008;15:318–319.[CrossRef][Medline] [Order article via Infotrieve]

250. Konaka K, Miyashita K, Naritomi H. Changes in diffusion-weighted magnetic resonance imaging findings in the acute and subacute phases of anoxic encephalopathy. J Stroke Cerebrovasc Dis. 2007;16:82–83.[CrossRef][Medline] [Order article via Infotrieve]

251. Singhal AB, Topcuoglu MA, Koroshetz WJ. Diffusion MRI in three types of anoxic encephalopathy. J Neurol Sci. 2002;196(1–2):37–40.[CrossRef][Medline] [Order article via Infotrieve]

252. Wartenberg KE, Patsalides A, Yepes MS. Is magnetic resonance spectroscopy superior to conventional diagnostic tools in hypoxic-ischemic encephalopathy? J Neuroimaging. 2004;14:180–186.[CrossRef][Medline] [Order article via Infotrieve]

253. Zhang YX, Liu JR, Jiang B, Liu HQ, Ding MP, Song SJ, Zhang BR, Zhang H, Xu B, Chen HH, Wang ZJ, Huang JZ. Lance-Adams syndrome: a report of two cases. J Zhejiang Univ Sci. 2007;8:715–720.[CrossRef]

254. Choi SP, Park HK, Park KN, Kim YM, Ahn KJ, Choi KH, Lee WJ, Jeong SK. The density ratio of grey to white matter on computed tomography as an early predictor of vegetative state or death after cardiac arrest. Emerg Med J. 2008;25:666–669.[Abstract/Free Full Text]

255. De Reuck J, Decoo D, Vienne J, Strijckmans K, Lemahieu I. Significance of white matter lucencies in posthypoxic-ischemic encephalopathy: comparison of clinical status and of computed and positron emission tomographic findings. Eur Neurol. 1992;32:334–339.[Medline] [Order article via Infotrieve]

256. Inoue Y, Shiozaki T, Irisawa T, Mohri T, Yoshiya K, Ikegawa H, Tasaki O, Tanaka H, Shimazu T, Sugimoto H. Acute cerebral blood flow variations after human cardiac arrest assessed by stable xenon enhanced computed tomography. Curr Neurovasc Res. 2007;4:49–54.[CrossRef][Medline] [Order article via Infotrieve]

257. Nunes B, Pais J, Garcia R, Magalhaes Z, Granja C, Silva MC. Cardiac arrest: long-term cognitive and imaging analysis. Resuscitation. 2003;57:287–297.[Medline] [Order article via Infotrieve]

258. Yanagawa Y, Un-no Y, Sakamoto T, Okada Y. Cerebral density on CT immediately after a successful resuscitation of cardiopulmonary arrest correlates with outcome. Resuscitation. 2005;64:97–101.[CrossRef][Medline] [Order article via Infotrieve]

259. Della Corte F, Barelli A, Giordano A, Iacobucci T, Valente MR, Pennisi MA. CBF determination in post-ischemic-anoxic comatose patients. Minerva Anestesiol. 1993;59:637–641.[Medline] [Order article via Infotrieve]

260. Kjos BO, Brant-Zawadzki M, Young RG. Early CT findings of global central nervous system hypoperfusion. AJR. 1983;141:1227–1232.[Abstract/Free Full Text]

261. Morimoto Y, Kemmotsu O, Kitami K, Matsubara I, Tedo I. Acute brain swelling after out-of-hospital cardiac arrest: pathogenesis and outcome. Crit Care Med. 1993;21:104–110.[Medline] [Order article via Infotrieve]

262. Torbey MT, Geocadin R, Bhardwaj A. Brain arrest neurological outcome scale (BrANOS): predicting mortality and severe disability following cardiac arrest. Resuscitation. 2004;63:55–63.[CrossRef][Medline] [Order article via Infotrieve]

263. Torbey MT, Selim M, Knorr J, Bigelow C, Recht L. Quantitative analysis of the loss of distinction between gray and white matter in comatose patients after cardiac arrest. Stroke. 2000;31:2163–2167.[Abstract/Free Full Text]

264. Imaizumi H, Tsuruoka K, Ujike Y, Kaneko M, Namiki A. [Hypoxic brain damage after prolonged cardiac arrest during anesthesia–changes in CT and serum NSE concentration]. Masui. 1994;43:1256–1260.[Medline] [Order article via Infotrieve]

265. Kelsen J, Obel A. Images in clinical medicine. Fatal cerebral hypoxemia after cardiac arrest. N Engl J Med. 2003;348:817.[CrossRef][Medline] [Order article via Infotrieve]

266. Schwab SA, Richter G, Bautz WA, Uder M, Alibek S. [Hypoxic injury of all deep nuclei of the brain–a case report from computed tomography]. Rontgenpraxis. 2008;56:245–248.[CrossRef][Medline] [Order article via Infotrieve]

267. Tanaka H, Masugata H, Fukunaga R, Mandai K, Sueyoshi K, Abe H. Sequential change of heterogeneous cerebral blood blow patterns after diffuse brain ischemia. Resuscitation. 1992;24:273–281.[CrossRef][Medline] [Order article via Infotrieve]

268. Inamasu J, Miyatake S, Tomioka H, Suzuki M, Nakatsukasa M, Maeda N, Ito T, Arai K, Komura M, Kase K, Kobayashi K. Subarachnoid haemorrhage as a cause of out-of-hospital cardiac arrest: a prospective computed tomography study. Resuscitation. 2009;80:977–980.[CrossRef][Medline] [Order article via Infotrieve]

269. Naples R, Ellison E, Brady WJ. Cranial computed tomography in the resuscitated patient with cardiac arrest. Am J Emerg Med. 2009;27:63–67.[CrossRef][Medline] [Order article via Infotrieve]

270. Heckmann JG, Lang CJ, Pfau M, Neundorfer B. Electrocerebral silence with preserved but reduced cortical brain perfusion. Eur J Emerg Med. 2003;10:241–243.[CrossRef][Medline] [Order article via Infotrieve]

271. Grubb NR, Simpson C, Sherwood RA, Abraha HD, Cobbe SM, O'Carroll RE, Deary I, Fox KA. Prediction of cognitive dysfunction after resuscitation from out-of-hospital cardiac arrest using serum neuron-specific enolase and protein S-100. Heart. 2007;93:1268–1273.[Abstract/Free Full Text]

272. Reisinger J, Hollinger K, Lang W, Steiner C, Winter T, Zeindlhofer E, Mori M, Schiller A, Lindorfer A, Wiesinger K, Siostrzonek P. Prediction of neurological outcome after cardiopulmonary resuscitation by serial determination of serum neuron-specific enolase. Eur Heart J. 2007;28:52–58.[Abstract/Free Full Text]

273. Prohl J, Rother J, Kluge S, de Heer G, Liepert J, Bodenburg S, Pawlik K, Kreymann G. Prediction of short-term and long-term outcomes after cardiac arrest: a prospective multivariate approach combining biochemical, clinical, electrophysiological, and neuropsychological investigations. Crit Care Med. 2007;35:1230–1237.[CrossRef][Medline] [Order article via Infotrieve]

274. Rech TH, Vieira SR, Nagel F, Brauner JS, Scalco R. Serum neuron-specific enolase as early predictor of outcome after in-hospital cardiac arrest: a cohort study. Crit Care. 2006;10:R133.[CrossRef][Medline] [Order article via Infotrieve]

275. Pfeifer R, Borner A, Krack A, Sigusch HH, Surber R, Figulla HR. Outcome after cardiac arrest: predictive values and limitations of the neuroproteins neuron-specific enolase and protein S-100 and the Glasgow Coma Scale. Resuscitation. 2005;65:49–55.[CrossRef][Medline] [Order article via Infotrieve]

276. Meynaar IA, Straaten HM, van der Wetering J, Verlooy P, Slaats EH, Bosman RJ, van der Spoel JI, Zandstra DF. Serum neuron-specific enolase predicts outcome in post-anoxic coma: a prospective cohort study. Intensive Care Med. 2003;29:189–195.[Medline] [Order article via Infotrieve]

277. Zingler VC, Krumm B, Bertsch T, Fassbender K, Pohlmann-Eden B. Early prediction of neurological outcome after cardiopulmonary resuscitation: a multimodal approach combining neurobiochemical and electrophysiological investigations may provide high prognostic certainty in patients after cardiac arrest. Eur Neurol. 2003;49:79–84.[CrossRef][Medline] [Order article via Infotrieve]

278. Rosen H, Sunnerhagen KS, Herlitz J, Blomstrand C, Rosengren L. Serum levels of the brain-derived proteins S-100 and NSE predict long-term outcome after cardiac arrest. Resuscitation. 2001;49:183–191.[Medline] [Order article via Infotrieve]

279. Schoerkhuber W, Kittler H, Sterz F, Behringer W, Holzer M, Frossard M, Spitzauer S, Laggner AN. Time course of serum neuron-specific enolase. A predictor of neurological outcome in patients resuscitated from cardiac arrest. Stroke. 1999;30:1598–1603.[Abstract/Free Full Text]

280. Fogel W, Krieger D, Veith M, Adams HP, Hund E, Storch-Hagenlocher B, Buggle F, Mathias D, Hacke W. Serum neuron-specific enolase as early predictor of outcome after cardiac arrest. Crit Care Med. 1997;25:1133–1138.[CrossRef][Medline] [Order article via Infotrieve]

281. Martens P, Raabe A, Johnsson P. Serum S-100 and neuron-specific enolase for prediction of regaining consciousness after global cerebral ischemia. Stroke. 1998;29:2363–2366.[Abstract/Free Full Text]

282. Dauberschmidt R, Zinsmeyer J, Mrochen H, Meyer M. Changes of neuron-specific enolase concentration in plasma after cardiac arrest and resuscitation. Mol Chem Neuropathol. 1991;14:237–245.[Medline] [Order article via Infotrieve]

283. Tiainen M, Roine RO, Pettila V, Takkunen O. Serum neuron-specific enolase and S-100B protein in cardiac arrest patients treated with hypothermia. Stroke. 2003;34:2881–2886.[Abstract/Free Full Text]

284. Oksanen T, Tiainen M, Skrifvars MB, Varpula T, Kuitunen A, Castren M, Pettila V. Predictive power of serum NSE and OHCA score regarding 6-month neurologic outcome after out-of-hospital ventricular fibrillation and therapeutic hypothermia. Resuscitation. 2009;80:165–170.[CrossRef][Medline] [Order article via Infotrieve]

285. Rundgren M, Karlsson T, Nielsen N, Cronberg T, Johnsson P, Friberg H. Neuron specific enolase and S-100B as predictors of outcome after cardiac arrest and induced hypothermia. Resuscitation. 2009;80:784–789.[CrossRef][Medline] [Order article via Infotrieve]

286. Pelinka LE, Hertz H, Mauritz W, Harada N, Jafarmadar M, Albrecht M, Redl H, Bahrami S. Nonspecific increase of systemic neuron-specific enolase after trauma: clinical and experimental findings. Shock (Augusta, Ga.) 2005;24:119–123.[CrossRef][Medline] [Order article via Infotrieve]

287. Adrie C, Haouache H, Saleh M, Memain N, Laurent I, Thuong M, Darques L, Guerrini P, Monchi M. An underrecognized source of organ donors: patients with brain death after successfully resuscitated cardiac arrest. Intensive Care Med. 2008;34:132–137.[CrossRef][Medline] [Order article via Infotrieve]

288. Ali AA, Lim E, Thanikachalam M, Sudarshan C, White P, Parameshwar J, Dhital K, Large SR. Cardiac arrest in the organ donor does not negatively influence recipient survival after heart transplantation. Eur J Cardiothorac Surg. 2007;31:929–933.[Abstract/Free Full Text]



289. Matsumoto CS, Kaufman SS, Girlanda R, Little CM, Rekhtman Y, Raofi V, Laurin JM, Shetty K, Fennelly EM, Johnson LB, Fishbein TM. Utilization of donors who have suffered cardiopulmonary arrest and resuscitation in intestinal transplantation. Transplantation. 2008;86:941–946.[CrossRef][Medline] [Order article via Infotrieve]

290. Mercatello A, Roy P, Ng-Sing K, Choux C, Baude C, Garnier JL, Colpart JJ, Finaz J, Petit P, Moskovtchenko JF, et al. Organ transplants from out-of-hospital cardiac arrest patients. Transplant Proc. 1988;20: 749–750.[Medline] [Order article via Infotrieve]
tải về 0.7 Mb.

Chia sẻ với bạn bè của bạn:
1   2   3   4   5   6   7




Cơ sở dữ liệu được bảo vệ bởi bản quyền ©hocday.com 2024
được sử dụng cho việc quản lý

    Quê hương