Literature DB >> 21436678

Ventilatory protective strategies during thoracic surgery: effects of alveolar recruitment maneuver and low-tidal volume ventilation on lung density distribution.

Alf Kozian1, Thomas Schilling, Hartmut Schütze, Mert Senturk, Thomas Hachenberg, Göran Hedenstierna.   

Abstract

BACKGROUND: The increased tidal volume (V(T)) applied to the ventilated lung during one-lung ventilation (OLV) enhances cyclic alveolar recruitment and mechanical stress. It is unknown whether alveolar recruitment maneuvers (ARMs) and reduced V(T) may influence tidal recruitment and lung density. Therefore, the effects of ARM and OLV with different V(T) on pulmonary gas/tissue distribution are examined.
METHODS: Eight anesthetized piglets were mechanically ventilated (V(T) = 10 ml/kg). A defined ARM was applied to the whole lung (40 cm H(2)O for 10 s). Spiral computed tomographic lung scans were acquired before and after ARM. Thereafter, the lungs were separated with an endobronchial blocker. The pigs were randomized to receive OLV in the dependent lung with a V(T) of either 5 or 10 ml/kg. Computed tomography was repeated during and after OLV. The voxels were categorized by density intervals (i.e., atelectasis, poorly aerated, normally aerated, or overaerated). Tidal recruitment was defined as the addition of gas to collapsed lung regions.
RESULTS: The dependent lung contained atelectatic (56 ± 10 ml), poorly aerated (183 ± 10 ml), and normally aerated (187 ± 29 ml) regions before ARM. After ARM, lung volume and aeration increased (426 ± 35 vs. 526 ± 69 ml). Respiratory compliance enhanced, and tidal recruitment decreased (95% vs. 79% of the whole end-expiratory lung volume). OLV with 10 ml/kg further increased aeration (atelectasis, 15 ± 2 ml; poorly aerated, 94 ± 24 ml; normally aerated, 580 ± 98 ml) and tidal recruitment (81% of the dependent lung). OLV with 5 ml/kg did not affect tidal recruitment or lung density distribution. (Data are given as mean ± SD.)
CONCLUSIONS: The ARM improves aeration and respiratory mechanics. In contrast to OLV with high V(T), OLV with reduced V(T) does not reinforce tidal recruitment, indicating decreased mechanical stress.

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Year:  2011        PMID: 21436678     DOI: 10.1097/ALN.0b013e3182164356

Source DB:  PubMed          Journal:  Anesthesiology        ISSN: 0003-3022            Impact factor:   7.892


  11 in total

Review 1.  Anesthesia and fast-track in video-assisted thoracic surgery (VATS): from evidence to practice.

Authors:  Marzia Umari; Stefano Falini; Matteo Segat; Michele Zuliani; Marco Crisman; Lucia Comuzzi; Francesco Pagos; Stefano Lovadina; Umberto Lucangelo
Journal:  J Thorac Dis       Date:  2018-03       Impact factor: 2.895

2.  Effect of combining a recruitment maneuver with protective ventilation on inflammatory responses in video-assisted thoracoscopic lobectomy: a randomized controlled trial.

Authors:  Hyun Joo Kim; Jeong-Hwa Seo; Kyoung-Un Park; Young Tae Kim; In Kyu Park; Jae-Hyon Bahk
Journal:  Surg Endosc       Date:  2018-09-05       Impact factor: 4.584

3.  Better intraoperative cardiopulmonary stability and similar postoperative results of spontaneous ventilation combined with intubation than non-intubated thoracic surgery.

Authors:  József Furák; Zsanett Barta; Judit Lantos; Aurél Ottlakán; Tibor Németh; Balázs Pécsy; Tamás Tánczos; Zsolt Szabó; Dóra Paróczai
Journal:  Gen Thorac Cardiovasc Surg       Date:  2022-01-05

4.  Management of 1-Lung Ventilation-Variation and Trends in Clinical Practice: A Report From the Multicenter Perioperative Outcomes Group.

Authors:  Douglas A Colquhoun; Bhiken I Naik; Marcel E Durieux; Amy M Shanks; Sachin Kheterpal; S Patrick Bender; Randal S Blank
Journal:  Anesth Analg       Date:  2018-02       Impact factor: 5.108

5.  Effects of a preemptive alveolar recruitment strategy on arterial oxygenation during one-lung ventilation with different tidal volumes in patients with normal pulmonary function test.

Authors:  Jong Dal Jung; Sang Hun Kim; Byung Sik Yu; Hye Ji Kim
Journal:  Korean J Anesthesiol       Date:  2014-08-26

6.  Comparison between pressure-controlled ventilation with volume-guaranteed mode and volume-controlled mode in one-lung ventilation in infants undergoing video-assisted thoracoscopic surgery.

Authors:  Yu-Ping Wang; Ying Wei; Xiu-Ying Chen; Long-Xin Zhang; Min Zhou; Jing Wang
Journal:  Transl Pediatr       Date:  2021-10

Review 7.  Pathophysiological Advantages of Spontaneous Ventilation.

Authors:  Judit Lantos; Tibor Németh; Zsanett Barta; Zsolt Szabó; Dóra Paróczai; Endre Varga; Petra Hartmann
Journal:  Front Surg       Date:  2022-03-14

8.  Effects of methacholine infusion on desflurane pharmacokinetics in piglets.

Authors:  Alf Kozian; Moritz Kretzschmar; James E Baumgardner; Jens Schreiber; Göran Hedenstierna; Anders Larsson; Thomas Hachenberg; Thomas Schilling
Journal:  Data Brief       Date:  2015-11-10

Review 9.  Driving pressure guided ventilation.

Authors:  Hyun Joo Ahn; MiHye Park; Jie Ae Kim; Mikyung Yang; Susie Yoon; Bo Rim Kim; Jae-Hyon Bahk; Young Jun Oh; Eun-Ho Lee
Journal:  Korean J Anesthesiol       Date:  2020-02-26

10.  Peep titration based on the open lung approach during one lung ventilation in thoracic surgery: a physiological study.

Authors:  Michela Rauseo; Lucia Mirabella; Salvatore Grasso; Antonella Cotoia; Savino Spadaro; Davide D'Antini; Franca Valentino; Livio Tullo; Domenico Loizzi; Francesco Sollitto; Gilda Cinnella
Journal:  BMC Anesthesiol       Date:  2018-10-31       Impact factor: 2.217

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