Integration of inspiratory and expiratory intra-abdominal pressure: a novel concept looking at mean intra-abdominal pressure

被引:10
|
作者
Ahmadi-Noorbakhsh, Siavash [1 ]
Malbrain, Manu L. N. G. [2 ,3 ]
机构
[1] Saadat Abad Vet Specialty Clin, Tehran, Iran
[2] WSACS, Execut Comm, B-3360 Lovenjoel, Belgium
[3] Ziekenhuis Netwerk Antwerpen ZNA Stuivenberg, ICU & High Care Burn Unit, Dept Intens Care, B-2060 Antwerp, Belgium
来源
关键词
Tidal Volume; Abdominal Compartment Syndrome; Peep Level; Dynamic Compliance; Pulsion Medical System;
D O I
10.1186/2110-5820-2-S1-S18
中图分类号
R4 [临床医学];
学科分类号
1002 ; 100602 ;
摘要
Background: The intra-abdominal pressure (IAP) is an important clinical parameter that can significantly change during respiration. Currently, IAP is recorded at end-expiration (IAP(ee)), while continuous IAP changes during respiration (Delta IAP) are ignored. Herein, a novel concept of considering continuous IAP changes during respiration is presented. Methods: Based on the geometric mean of the IAP waveform (MIAP), a mathematical model was developed for calculating respiratory-integrated MIAP (i.e. MIAP(ri) = IAP(ee) + i . Delta IAP), where 'i' is the decimal fraction of the inspiratory time, and where Delta IAP can be calculated as the difference between the IAP at end-inspiration (IAP(ei)) minus IAP(ee). The effect of various parameters on IAP(ee) and MIAP(ri) was evaluated with a mathematical model and validated afterwards in six mechanically ventilated patients. The MIAP of the patients was also calculated using a CiMON monitor (Pulsion Medical Systems, Munich, Germany). Several other parameters were recorded and used for comparison. Results: The human study confirmed the mathematical modelling, showing that MIAP(ri) correlates well with MIAP (R-2 = 0.99); MIAP(ri) was significantly higher than IAP(ee) under all conditions that were used to examine the effects of changes in IAP(ee), the inspiratory/expiratory (I:E) ratio, and Delta IAP (P < 0.001). Univariate Pearson regression analysis showed significant correlations between MIAP(ri) and IAP(ei) (R = 0.99), IAP(ee) (R = 0.99), and.IAP (R = 0.78) (P < 0.001); multivariate regression analysis confirmed that IAP(ee) (mainly affected by the level of positive end-expiratory pressure, PEEP), Delta IAP, and the I:E ratio are independent variables (P < 0.001) determining MIAP. According to the results of a regression analysis, MIAP can also be calculated as MIAP = -0.3 + IAP(ee) + 0.4 . Delta IAP + 0.5 . I/E. Conclusions: We believe that the novel concept of MIAP is a better representation of IAP (especially in mechanically ventilated patients) because MIAP takes into account the IAP changes during respiration. The MIAP can be estimated by the MIAPri equation. Since MIAP(ri) is almost always greater than the classic IAP, this may have implications on end-organ function during intra-abdominal hypertension. Further clinical studies are necessary to evaluate the physiological effects of MIAP.
引用
收藏
页数:10
相关论文
共 50 条
  • [31] The intra-abdominal pressure pregnancy.
    Paramoae, RH
    LANCET, 1913, 1 : 1828 - 1828
  • [32] Continuous intra-abdominal pressure monitoring
    Balogh, Z.
    ACTA CLINICA BELGICA, 2007, 62 : 234 - 234
  • [33] Problematic of intra-abdominal pressure measurement
    Neumann, P.
    ANAESTHESIST, 2009, 58 (05): : 527 - 531
  • [34] Abdominal Wall Movements Predict Intra-Abdominal Pressure Changes in Rats: A Novel Non-Invasive Intra-Abdominal Pressure Detection Method
    Vincent, Deirdre
    Mietzsch, Stefan
    Braun, Wolfgang
    Trochimiuk, Magdalena
    Reinshagen, Konrad
    Boettcher, Michael
    Lugli, Licia
    CHILDREN-BASEL, 2023, 10 (08):
  • [35] Matching positive end-expiratory pressure to intra-abdominal pressure prevents end-expiratory lung volume decline in a pig model of intra-abdominal hypertension
    Regli, Adrian
    Chakera, Jakob
    De Keulenaer, Bart L.
    Roberts, Brigit
    Noffsinger, Bill
    Singh, Bhajan
    van Heerden, Peter V.
    CRITICAL CARE MEDICINE, 2012, 40 (06) : 1879 - 1886
  • [36] Noninvasive intra-abdominal pressure measurement
    Braun, Georg
    Schaefer, Kristina
    MEDIZINISCHE KLINIK-INTENSIVMEDIZIN UND NOTFALLMEDIZIN, 2022, 117 (08) : 658 - 666
  • [37] What is normal intra-abdominal pressure?
    Sanchez, NC
    Tenofsky, PL
    Dort, JM
    Shen, LY
    Helmer, SD
    Smith, RS
    AMERICAN SURGEON, 2001, 67 (03) : 243 - 248
  • [38] Intra-abdominal Pressure in the Morbidly Obese
    David M Lambert
    Simon Marceau
    R Armour Forse
    Obesity Surgery, 2005, 15 : 1225 - 1232
  • [39] WOUND SEPARATION AND INTRA-ABDOMINAL PRESSURE
    KEWENTER, J
    KOCK, NG
    LUNDBERG, H
    ACTA ANAESTHESIOLOGICA SCANDINAVICA, 1969, 13 (02) : 97 - &
  • [40] A novel disposable sensor or measure intra-abdominal pressure
    Camacho-Juarez, Jose S.
    Alexander-Reyes, Bersain
    Morante-Lezama, Antonio
    Mendez-Garcia, Martin
    Gonzalez-Aguilar, Hernan
    Rodriguez-Leyva, Ildefonso
    Nunez-Olvera, Oscar F.
    Polanco-Gonzalez, Carlos
    Gorordo-Delsol, Luis A.
    Castanon-Gonzalez, Jorge A.
    CIRUGIA Y CIRUJANOS, 2020, 88 (01): : 7 - 14