References
- Huaiwu H, Hu Q, Long Y, Wang X, Zhang R, Su L, et al. Effects of high PEEP and fluid administration on systemic circulation, pulmonary microcirculation, and alveoli in a canine model. J. Appl Physiol. 2019,127.40-46, 10.1152/japplphysiol.00571.2018
- Georgiadis D, Schwartz S, Baumgartner RW, Veltkamp R Schwab S. Influence of positive end-expiratory pressure on intracranial pressure and cerebral perfusion pressure in patients with acute stroke. Stroke. 2001,32.2088-2092, 10.1161/hs0901.095406
- Angerpointner TA, Farnsworth AE, Williams BT. Effects of PEEP on cardiovascular dynamics after open-heart surgery: A new postoperative monitoring technique. The Annals of Thoracic Surgery. 1977,23.555-559, 10.1016/S0003-4975(10)63701-0
- Zhou L, Cai G, Zhihui X, Weng Q, Ye Q, Chen C. High positive end-expiratory pressure levels affect hemodynamics in elderly patients with hypertension admitted to the intensive care unit: a prospective cohort. BMC Pulmonary Medicine. 2019,19.224233, 10.1186/s12890-019-0965-9
- Beyer J, Beckenlechner P, Messmer K. The influence of PEEP ventilation on organ blood flow and peripheral oxygen delivery. Intensive Care Med. 1982,8.75-80, 10.1007/BF01694870
- Deranged Physiology. (2021) Effects of positive pressure ventilation on pulmonary physiology. Chapter 522, https:/derangedphysiology.com
- Nanas S, Magder S. (1992) Adaptations of peripheral circulation to PEEP. American Review of Respiratory Disease. 1992,688-692, 10.1164/ajrccm/146.3.688
- Shekerdemian L, Bohn D. Cardiovascular effects of mechanical ventilation. Arch. Dis. Child. 1999,80.475-480, 10.1136/adc.80.5.475
- Deranged Physiology (2021) Effects of positive pressure ventilation on cardiovascular physiology. Chapter 523, https:/derangedphysiology.com
- Boone MD, Jinadasa SP, Muller A, Shaefi S, Kasper EM, Hanafy KA, et al. The effect of positive end-expiratory pressure on intracranial pressure and cerebral hemodynamics. Neurocrit. Care. 2017,26.174-181, 10.1007/s12028-016-0328-9
- Lefrant JY, Juan JM, Bruelle P, Demaria R, Cohendy R, Aya G, et al. Regional blood flows are affected differently by PEEP when the abdomen is open or closed: an experimental rabbit model. Can J Anesth. 2002,49.3. 302-308, 10.1007/BF03020532
- Deranged Physiology (2021) Haemodynamic changes during the mechanical breath. Chapter 524, https:/derangedphysiology.com
- Malbrain M. Abdominal compartment syndrome. Medicine Reports. 2009,1. 86-93, 10.3410/M1-86
- Alam HB. Advances in Resuscitation Strategies. Int J Surg. 2010;9.5-12, 10.1016/j.ijsu.2010.09.001
- Bellamy R, Safar P, Tisherman SA, et al. Suspended Animation for Delayed Resuscitation. Crit Care Med. 1996;24.S24-S47, 10.1097/00003246-199602001-00004
- Bouglé A, Harrois A, Duranteau J. Resuscitative strategies in traumatic hemorrhagic shock. Ann Intensive Care. 2013,3(1):1, 10.1186/2110-5820-3-1
- Leading Causes of Death by Age Group, United States - 2009, 2009, Available from: http://www.cdc.gov/Injury/wisqars/pdf/10LCD¬Age¬Grp¬US¬2009¬a.pdf
- Geeraedts L, Kaasjager H, van Vugt A, et al. Exsanguination in trauma: A review of diagnostics and treatment options. Injury. 2009;40.11-20, 10.1016/j.injury.2008.10.007
- Leung LY, Wei G, Shear DA, Tortella FC. The acute effects of hemorrhagic shock on cerebral blood flow, brain tissue oxygen tension and spreading depolarization following penetrating ballistic-like brain injury. J Neurotrauma. 2013,30(14):1288-98, 10.1089/neu.2012.2715
- Convertino V, Ryan K, Rickards C, et al. Physiological and medical monitoring for en route care of combat casualties. J Trauma. 2008;64.S342-53, 10.1097/TA.0b013e31816c82f4
- Rady MY, Nightingale P, Little RA, Edwards JD. Shock index: A reevaluation in acute circulatory failure. Resuscitation. 1992;23.227-34, 10.1016/0300-9572(92)90006-X
- Kerdo I. An index for the evaluation of vegetative tonus calculated from the data of blood circulation. Acta Neuroveg (Wien) 1966;29.250-68.
- Bodo M, Bothwell S, Dorsey J, et al. Comparison of Circulatory Stress Indicators in a Swine Model. Kalokagathia. 2010;48.16681, 10.1037/e538952013-059
- Montgomery LD, Dietrich MS, Armer JM, Stewart BR, Ridner SH. Segmental blood flow and hemodynamic state of lymphedematous and nonlymphedematous arms. Lymphatic Research and Biology. 2012,9.31-42, 10.1089/lrb.2010.0012
- Montgomery LD, Gerth WA, Montgomery RW, Lew SQ, Klein MD, Stewart JM, et al. Monitoring intracellular, interstitial, and intravascular volume changes during fluid management procedures. Med. Biol. Eng. Comput. 2013,51.1167- 1175, 10.1007/s11517-013-1064-3
- Montgomery LD, Montgomery RW, Gerth WA, Lew SQ, Klein MD, Stewart JM, et al. Bioimpedance monitoring of cellular hydration during hemodialysis therapy. Hemo. Int. 2017,21(4):575-584, 10.1111/hdi.12511
- Montgomery LD, Montgomery RW, Gerth WA, Laughry M, Lew SQ, Velasquez MT. A system to monitor segmental intracellular, interstitial, and intravascular volume and circulatory changes during acute hemodialysis. J. Electr. Bioimp. 2017,8.40-53, 10.5617/jeb.4443
- Montgomery L., Montgomery R., Gerth W., Bodo M., Stewart J. and Loughry M. Segmental intracellular, interstitial, and intravascular volume changes during simulated hemorrhage and resuscitation: A case study. Journal of Electrical Bioimpedance. 2019,10(1):40-46, 10.2478/joeb-2019-0006
- Anonymous, 1997, Rheoencephalograph (a) Identification Code of Federal Regulations Title 21, vol 8, Sec 882.1825, Washington DC: US Government Printing Office; Revised as of April 1, 1997.
- McHenry LC. Rheoencephalography: a clinical appraisal. Neurology. 1965,15.507-17, 10.1212/WNL.15.6.507
- Moskalenko, Yu. Ye. (ed). Biophysical aspects of cerebral circulation. Oxford, Pergamon, 1980
- Jenkner FL. Clinical rheoencephalography: A noninvasive method for automatic evaluation of cerebral hemodynamics. Ertldruck, Vienna, A, 1986.
- Jacquy J, Dekonick WJ, Piraux A, Calay R, Bacq J, Levy D, Noel G. Cerebral blood flow and quantitative rheoencephalography. Electroenceph Clin. Neurophysiol 1974,37.501-511, 10.1016/0013-4694(74)90092-3
- Hadjiev D: A new method for quantitative evaluation of cerebral blood flow by rheoencephalography. Brain Res 1968,8.213-215, 10.1016/0006-8993(68)90186-8
- Bodo M, Racz J, Ilias L, Pasztor A, Vajda J, Weinstein GB, Pasztor E, Moskalenko YE. Rheoencephalographic changes during increased intracranial pressure. In: Krieglstein J. (ed): Pharmacology of cerebral ischemia. Elsevier, Amsterdam, 265269, 1986.
- Bodo M, Garcia A, Pearce F, van Albert S, Armonda R. Influence of volume and flow change on the electrical impedance signal (in vitro). J. Phys.: Conf. Ser. 2010,224.012111, 10.1088/1742-6596/224/1/012111
- Bodo M. Studies in rheoencephalography (REG). J Electr Bioimp. 2010,1.18-40, 10.5617/jeb.109
- Bodo M, Simovic M, Pearce F, Ahmed A, Armonda R. Correlation of rheoencephalogram and intracranial pressure: results of a rat study. Physiol. Meas. 2015,36.N115-N126, 10.1088/0967-3334/36/10/N115
- Bodo M, Sheppard R, Hall A, Baruch M, Laird M, Tirumala S, Mahon R. Correlation of rheoencephalography and laser Doppler flow: a rat study. J Electr Bioimp. 2016.7.55-58, 10.5617/jeb.2985
- Bodo M, Pearce F, Van Albert S, Armonda R. Rheoencephalogram reflects cerebral blood flow autoregulation in pigs. In: Scharfetter H., Merva R. (Eds). ICEBI 2007, IFMBE (International Federation for Biomedical Engineering) Proceedings 17, pp. 695-698, 2007 www.springerlink.com © Springer-Verlag Berlin Heidelberg 2007, 10.21236/ADA473927
- Bodo M, Rahaman V, Cannizzaro L, Iwuchukwu I, Hirzallah M. Non-invasive brain monitoring with electrical bioimpedance using rheoencephalography for the evaluation of cerebral blood flow autoregulation and intracranial pressure. Military Health System Research Symposium, Kissimmee, FL 2021, MHSRS-21-03637, https://mhsrs.amedd.army.mil/SitePages/Home.aspx
- Bodo M, Szebeni J, Baranyi J, Savay S, Pearce FJ, Alving CR, Bünger R. Cerebrovascular involvement in liposome - induced cardiopulmonary distress in pigs. J Liposome Res. 2005,15.314, 10.1081/LPR-64523
- Bodo M, Montgomery LD, Pearce FJ, Armonda R. Measurement of cerebral blood flow autoregulation with rheoencephalography: a comparative pig study. J Electr Bioimp. 2018,9.123-132, 2018, 10.2478/joeb-2018-0017
- Anonymous. ICM+ program: Software for Brain Monitoring in Neurological Intensive Care. https://icmplus.neurosurg.cam.ac.uk/
- Brady KM, Mytar JO, Kibler KK, Easley RB, Koehler RC, Czosnyka M, Smielewski, P, Zweifel C, Bodo M, Pearce FJ, Armonda RA. Monitoring cerebrovascular pressure reactivity with rheoencephalography. 2010 J. Phys.: Conf. Ser. 224 012089, 10.1088/1742-6596/224/1/012089
- Rady MY, Nightingale P, Little RA, Edwards JD. Shock index: A re¬evaluation in acute circulatory failure. Resuscitation. 1992;23.227-34, 10.1016/0300-9572(92)90006-X
- Bodo M, Thuroczy G, et al: A complex cerebrovascular screening system (Cerberus). Medical Progress through Technology, 1995,21(2):53-66.
- Montgomery LD, Montgomery RW, Gerth WA, Bodo M, Stewart JM, Loughry M. Segmental intracellular, interstitial, and intravascular volume changes during simulated hemorrhage and resuscitation: A case study. J Electr Bioimp. 2019,10.40-46, 10.2478/joeb-2019-0006
- Aidinis SJ, Lafferty J, Shapiro HM. Intracranial responses to PEEP. Anesthesiology. 1976 Sep;45(3):275-86, 10.1097/00000542-197609000-00004
- Vargas M, Sutherasan Y, Gregoretti C, Pelosi P. PEEP role in ICU and operating room: from pathophysiology to clinical practice. Scientific World Journal. 2014,2014.852356, 10.1155/2014/852356
- Geocadin RG, Wijdicks E, et al. Practice guideline summary: Reducing brain injury following cardiopulmonary resuscitation. Report of the Guideline Development, Dissemination, and Implementation Subcommittee of the American Academy of Neurology. Neurology. 2017,88(22):2141-2149, 10.1212/WNL.0000000000003966
- Fan E, Del Sorbo L, et al. American Thoracic Society, European Society of Intensive Care Medicine, and Society of Critical Care Medicine. An Official American Thoracic Society/European Society of Intensive Care Medicine/Society of Critical Care Medicine Clinical Practice Guideline: Mechanical Ventilation in Adult Patients with Acute Respiratory Distress Syndrome. Am J Respir Crit Care Med. 2017,195(9):1253-1263, doi: 10.1164/rccm.201703-0548ST.Erratum in: Am J Respir Crit Care Med. 2017,195(11):1540, 10.1164/rccm.19511erratum
- Le Roux P, Menon DK, et al. Consensus summary statement of the International Multidisciplinary Consensus Conference on Multimodality Monitoring in Neurocritical Care: a statement for healthcare professionals from the Neurocritical Care Society and the European Society of Intensive Care Medicine. Neurocrit Care. 2014,21 Suppl 2.S1-26, 10.1007/s12028-014-0041-5
- Czosnyika M, Hutchinson P, Kirkpatrick P J, Pickard J D. Monitoring of the Brain: Pressures, flows, and brain tissue probes. In: Jallo J, Loftus CM. editors. Neurotrauma and Critical Care of the Brain, Thieme, New York, 2009.
- Damhorst GL, Tyburski EA, Brand O, Martin GS, Lam WA. Diagnosis of acute serious illness: the role of point-of-care technologies. Curr Opin Biomed Eng. 2019,11.22-34, 10.1016/j.cobme.2019.08.012
- Bodo M, Pearce FJ, Baranyi L, Armonda R. Changes in cerebral blood flow modalities during hemorrhage in rats. ATACCC Conference August 15-17, 2005 St. Pete Beach, FL. Poster # CC1, 10.1038/sj.jcbfm.9591524.0555
- Cecconi M, De Backer D, Antonelli M, Beale R, Bakker J, Hofer C, Jaeschke R, Mebazaa A, Pinsky MR, Teboul JL, Vincent JL, Rhodes A. Consensus on circulatory shock and hemodynamic monitoring. A task force of the European Society of Intensive Care Medicine. Intensive Care Med. 2014,40(12):1795-815, 10.1007/s00134-014-3525-z
- Manley G, Knudson MM, Morabito D, Damron S, Erickson V, Pitts L. Hypotension, hypoxia, and head injury: frequency, duration, and consequence Arch Surg. 2001,136(10):1118-23, 10.1001/archsurg.136.10.1118
- Moheet AM, Sarah L. Livesay SL et al. Standards for Neurologic Critical Care Units: A Statement for Healthcare Professionals from The Neurocritical Care Society. Neurocrit Care. 2018,29. 145-160, 10.1007/s12028-018-0601-1
- Cook AM, Jones GM et al. Guidelines for the Acute Treatment of Cerebral Edema in Neurocritical Care Patients. Neurocrit Care. 2020,32.647-666, 10.1007/s12028-020-00959-7
- Torbey MT, Bosel J et al. Evidence-Based Guidelines for the Management of Large Hemispheric Infarction. Neurocrit Care. 2015,22.146-164, 10.1007/s12028-014-0085-6
- Owattanapanich, N., Chittawatanarat, K., Benyakorn, T. et al. Risks and benefits of hypotensive resuscitation in patients with traumatic hemorrhagic shock: a meta-analysis. Scand J Trauma Resusc Emerg Med. 2018,26.107, 10.1186/s13049-018-0572-4
- Marik PE, Kory P, Varon J, Iglesias J, Meduri GU. MATH+ protocol for the treatment of SARS-CoV-2 infection: the scientific rationale. Expert Rev Anti Infect Ther. 2021,19(2):129-135, 10.1080/14787210.2020.1808462
- Fan E, Brodie D, Slutsky AS. Acute Respiratory Distress Syndrome: Advances in Diagnosis and Treatment. JAMA. 2018,319(7):698-710, 10.1001/jama.2017.21907
- McNicholas BA, Rooney GM, Laffey JG. Lessons to learn from epidemiologic studies in ARDS. Curr Opin Crit Care. 2018,24(1):41-48, 10.1097/MCC.0000000000000473
- Narendra DK, Hess DR, Sessler CN, Belete HM, Guntupalli KK, Khusid F, Carpati CM, Astiz ME, Raoof S. Update in Management of Severe Hypoxemic Respiratory Failure. Chest. 2017,152(4):867-879, 10.1016/j.chest.2017.06.039
- Ferlini L, Su F, Creteur J, Taccone FS, Gaspard N. Cerebral autoregulation and neurovascular coupling are progressively impaired during septic shock: an experimental study. Intensive Care Med Exp. 2020,8(1):44, 10.1186/s40635-020-00332-0
- Yealy DM, Delbridge TR. The shock index: All that glitters. Annals of Emergency Medicine. 1994 ;24.714-5.
- Cancio LC, Wade CE, West SA, Holcomb JB. Prediction of mortality and of the need for massive transfusion in casualties arriving at combat support hospitals in Iraq. The Journal of Trauma. 2008 ;64.S51-5, 10.1097/TA.0b013e3181608c21
- Bodo M, Rothwell SW, Dorsey J, Sawyer E, Sipos K: Comparison of circulatory stress indicators in a swine model. Kalokagathia. 2010,48(2/3):166-181, 10.1037/e538952013-059
- Sharma P, Makler V, Chalut C, Rodrigez V, Bodo M. Pyruvate dose-response studies targeting the vital signs following hemorrhagic shock. Journal of Emergencies, Trauma and Shock. 2015,8(3): 159-166, 10.4103/0974-2700.160729
- Vargas M, Sutherasan Y, Gregoretti C, Pelosi P. PEEP role in ICU and operating room: from pathophysiology to clinical practice. ScientificWorldJournal. 2014,2014.852356, 10.1155/2014/852356
- Kontos HA et al. Responses of cerebral arteries and arterioles to acute hypotension and hypertension. Am. J. Physiol. 1978,234.H371-83, 10.1152/ajpheart.1978.234.4.H371
- Chillon and Baumbach GL. 2002 Autoregulation: arterial and intracranial pressure Cerebral Blood Flow and Metabolism 2nd eds: Edvinsson L and Krause DN (Philadelphia, PA: Williams & Wilkins) pp 395-412.
- Guyton AC 1991 Textbook of Medical Physiology. 8th ed (Philadelphia, PA: Saunders)
- Douaud G, Lee S, et al. Brain imaging before and after COVID-19 in UK Biobank. MedRxiv. 10.1101/2021.06.11.21258690
- da Costa L, Fierstra J, Fisher JA, Mikulis DJ, Han JS, Tymianski M. BOLD MRI and early impairment of cerebrovascular reserve after aneurysmal subarachnoid hemorrhage. J Magn Reson Imaging. 2014,40(4):972-9, 10.1002/jmri.24474
- Bodo M, Sheppard R, Hall A, Baruch M, Laird M, Tirumala S, Mahon R. Correlation of rheoencephalography and laser Doppler flow: a rat study. Journal of Electrical Bioimpedance. 2016,7(1):55-58, 10.5617/jeb.2985
- Greer N, Sayer N, Kramer M, Koeller E, Velasquez T. Prevalence and Epidemiology of Combat Blast Injuries from the Military Cohort 2001-2014, Washington (DC): Department of Veterans Affairs (US); 2016
- Kotwal, R. S., Montgomery, H. R., Miles, E. A., Conklin, C. C., Hall, M. T., & McChrystal, S. A. Leadership and a casualty response system for eliminating preventable death. Journal of Trauma and Acute Care Surgery. 2017,82.S9-S15, 10.1097/TA.0000000000001428
- Capizzi A, Woo J, Verduzco-Gutierrez M. Traumatic Brain Injury: An Overview of Epidemiology, Pathophysiology, and Medical Management. Med Clin North Am. 2020,104(2):213238, 10.1016/j.mcna.2019.11.001
- Iaccarino C, Carretta A, Nicolosi F, Morselli C. Epidemiology of severe traumatic brain injury. J Neurosurg Sci. 2018,62(5):535541, 10.23736/S0390-5616.18.04532-0
- Butler FK, Holcomb JB, et al. Fluid Resuscitation for Hemorrhagic Shock in Tactical Combat Casualty Care: TCCC Guidelines Change 14-01--2 June 2014, J Spec Oper Med. 2014,14(3):13-38.
- Jänig C, Forklage R, et al. Triage Decisions in the Context of COVID-19. Old Burden, New Challenge-The Structured Approach for Intensive Care Unit Triage (SAINT) Protocol, Military Medicine. 2021,186(3-4):e300-e304, 10.1093/milmed/usaa287
- Hatzfeld JJ, Hildebrandt G, et al. Top 10 Research Priorities for U.S. Military En Route Combat Casualty Care, Military Medicine. 2021,186(3-4):e359-e365, 10.1093/milmed/usaa480
- Holcomb JB. Hypotensive resuscitation. Committee on Tactical Combat Casualty Care: Tactical Combat Casualty Care (Washington, DC: Government Printing Agency), 2003
- Spinella PC, Holcomb JB. Resuscitation and transfusion principles for traumatic hemorrhagic shock. Blood Rev. 2009,23(6):231-40, 10.1016/j.blre.2009.07.003
- Defense Health Board. 121010TCCC Guidelines on Fluid Resuscitation. Recommendations Regarding the Tactical Combat Casualty Care Guidelines on Fluid Resuscitation 201007, Falls Church, VA, Dec 10, 2010.
- Ahmed A, Bodo M, Armonda RA. Effect of metal fragments in the brain on electrical monitoring: In vitro and in vivo rat studies. J. Phys.: Conf. Ser. 2010,224 0121, 10.1088/1742-6596/224/1/012132
- Meghdadi AH, Popovic D, Rupp G, Smith S, Berka C, Verma A. Transcranial Impedance Changes during Sleep: A Rheoencephalography Study. IEEE J Transl Eng Health Med. 2019,7.2700107, 10.1109/JTEHM.2019.2898193
- Sawell CT, Borsotto M, Reifman J, Hoyt RW. Life sign decision support algorithms. Medinfo. 2004,11.145
- Bodo M, Pearce FJ, Tsai MC, Garcia A, van Albert S, Armonda R. Cessation of vital signs monitored during lethal hemorrhage: a Swine study. J Spec. Oper. Med. 2013,13(4):6375.
- Eastridge BJ, Mabry RL, et al. Death on the battlefield (20012011): implications for the future of combat casualty care. J Trauma Acute Care Surg. 2012,73(Suppl 5):S431-7, 10.1097/TA.0b013e3182755dcc