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Factors Responsible for the Effectiveness of the Lund De-airing Technique

Factors Responsible for the Effectiveness of the Lund Technique for De-airing Following Open Left Heart Surgery.

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT01757704
Enrollment
20
Registered
2012-12-31
Start date
2012-09-30
Completion date
2014-01-31
Last updated
2014-02-10

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Complication of Surgical Procedure

Keywords

Cardiac de-airing, Air emboli, Trans-cranial Echo-Doppler, Intraoperative Trans-esophageal Echocardiography

Brief summary

The Lund de-airing technique is employed for cardiac de-airing in open left heart surgery. It consists of two main elements namely, opening of both pleura after the patient is on CPB (cardiopulmonary bypass)and disconnection of the ventilator before opening the left heart to ensure bilateral pulmonary collapse and a staged filling of the heart at termination of the CPB. The aim of this study is to analyze in a randomized manner two groups of patients to establish if one or both components are of primary importance for the effectiveness of the de-airing technique.

Detailed description

Patients planned for open left heart surgery, mainly aortic valve replacement, will be included in the study. Patients with aortic valve replacement and concomitant coronary artery bypass with vein grafts only can also be included. Exclusion criteria are; significant chronic obstructive pulmonary disease/emphysema, significant (\>50%)carotid artery disease, need of concomitant internal mammary harvesting, prior cardiac or pulmonary surgery, pulmonary adhesions preventing pulmonary collapse, previous radiation to the chest and prior severe chest trauma. Intraoperative exclusion criteria are; failure to obtain adequate bilateral Trans-cranial Echo-Doppler signals from the medial cerebral arteries, finding of adherent pleurae and accidental opening of the pleurae. Twenty patients will be randomized to two groups: Group I: Intact pleura bilaterally, disconnection of the ventilator during cardiopulmonary bypass (CPB), followed by staged filling of the heart. Group II: Open pleura bilaterally, disconnection of the ventilator during cardiopulmonary bypass to ensure bilateral pulmonary collapse followed by conventional filling of the heart. Data will be compared to a third historical control group, consisting of ten patients with open pleurae with the ventilator disconnected followed by staged filling of the heart. Primary outcomes: * Duration of the de-airing procedure from the release of the aortic cross clamp to finished de-airing. * Air microemboli to the brain registered on-line as gaseous microembolic signals on Trans-cranial Echo-Doppler (TCD). The sum of signals from the right and left middle cerebral artery are registered during the following time periods; from the release of the aortic cross clamp to start of cardiac ejection, from cardiac ejection to finished de-airing, and during ten minutes after finished de-airing. * Magnitude of residual air emboli in the heart after finished de-airing as monitored by Trans-esophageal Echocardiography (TEE) with a Three-chamber view. The severity of residual air is classified in four grades after the appearance of visible air on TEE in left atrium (LA), left ventricle (LV) and aortic root (AO)as follows; Grade 0: no residual air, grade I: gas emboli detected in one of three anatomic areas during one cardiac cycle, grade II: gas emboli detected simultaneously in two of three anatomic areas during one cardiac cycle; grade III: gas emboli detected in all three anatomic areas during one cardiac cycle.

Interventions

PROCEDUREOpen pleurae & conventional filling of heart

After completion of the left heart surgery, the heart will be actively filled with blood from the cardiopulmonary bypass circuit and lungs fully ventilated with positive end-expiratory pressure to flush out all air trapped in the lung veins and left heart. When there is no more visible air seen on Trans-esophageal echocardiography, the patient is weaned from cardiopulmonary bypass.

PROCEDUREIntact pleurae & staged filling of heart

After the end of the left heart surgery, the heart is gradually filled with blood from the cardiopulmonary bypass circuit. Cardiac contractions fill the lungs with blood til no more air is seen in left heart on Trans-esophageal Echocardiography. Thereafter the lungs are ventilated with 50% of the estimated lung minute volume and 5 cm positive end-expiratory pressure and cardiac filling and de-airing continued. If no air is seen in the left heart full ventilation is started and the patient is weaned from cardiopulmonary bypass.

Sponsors

Lund University
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
SUPPORTIVE_CARE
Masking
SINGLE (Outcomes Assessor)

Eligibility

Sex/Gender
ALL
Age
18 Years to 90 Years
Healthy volunteers
No

Inclusion criteria

* Patients planned for aortic valve replacement with or without coronary vein bypass grafts

Exclusion criteria

* Significant chronic obstructive pulmonary disease and emphysema * Previous history of thoracic or cardiac surgery * Patients requiring internal mammary artery harvesting * Unilateral or bilateral pulmonary adhesions to chest wall * Previous radiation to the chest Intraoperative

Design outcomes

Primary

MeasureTime frameDescription
Quantitative Assessment of Air Embolism to the Brain After Completion of Open Left Heart SurgeryTime from the release of the aortic crossclamp to cardiac ejection, an average of 10-15 minutesCerebral air emboli will be assessed quantitatively by On-line counting of gaseous microembolic signals (MES) by Trans-cranial Echo-Doppler (TCD) monitoring of the right and left middle cerebral artery. The sum of the gaseous microembolic signals registered from the right and left middle cerebral artery will be reported.
Participants With <=Grade I Air Emboli as Assessed by Trans-esophageal Echocardiography (TEE) After Finished De-airing.0-3 minutes after finished de-airingThe severity of residual air emboli in three anatomic areas; left atrium, left ventricle and aortic root, is assessed by Trans-esophageal Echocardiography (TEE) and classified in grade 0-3 as follows, Grade o: no residual air; grade I: gas emboli detected in one of three anatomic areas during one cardiac cycle; grade II: gas emboli detected simultaneously in two of three anatomic areas during one cardiac cycle; grade III: gas emboli detected simultaneously in all three anatomic areas during one cardiac cycle.
Duration of the De-airing ProcedureTime from release of aortic crossclamp to finished de-airingThe de-airing procedure is deemed completed when the Trans-esophageal Echocardiography (TEE) no longer visualizes air emboli in the heart Chambers. The duration is likely to vary between individuals and reflects the complexity of the de-airing procedure.

Countries

Sweden

Participant flow

Recruitment details

Patients who were scheduled at the Department of Cardiothoracic Surgery, anesteshia and intensive care at Skane University Hospital for elective open left sided heart surgery were eligible for inclusion. Recruitment started in september 2012 and ended in june 2013.

Pre-assignment details

In this study a total of 4 participants did not complete due to intraoperative exclusion criteria only possible to detect after start of the surgical procedure (adherant lung, accidental pleural opening, TCD signal insufficient). Enrollment and randomization continued until 10 patients in each arm were included and satisfied protocol criteria.

Participants by arm

ArmCount
Intact Pleurae & Staged Filling of Heart
In this group both pleurae will be left intact and the ventilator disconnected during cardiopulmonary bypass. After completion of the left heart surgery, the heart will be filled with blood actively from the heart-lung machine in a staged manner after adequate cardiac contraction has been established. De-airing will be obtained by active cardiac contraction and staged mechanical ventilation and de-airing monitored by intraoperative trans-esophageal echocardiography (TEE). After de-airing is deemed complete and patient has been weaned off the cardiopulmonary bypass (CPB) the residual air in the left heart will be quantitatively assessed by TEE and Trans-cranial Echo-Doppler (TCD) over a period of 10 minutes. Intact pleurae & staged filling of heart : After the end of the left heart surgery, the heart is gradually filled with blood from the cardiopulmonary bypass circuit. Cardiac contractions fill the lungs with blood til no more air is seen in left heart on Trans-esophageal Echocar
10
Open Pleurae & Conventional Filling of Heart
In this group both pleurae will be opened and the ventilator disconnected during cardiopulmonary bypass to ensure bilateral lung collapse. However, after completion of the left heart procedure, the heart will be filled with blood actively from the heart-lung machine and manual de-airing performed in a conventional manner and de-airing monitored by intraoperative trans-esophageal echocardiography (TEE). After de-airing is complete and patient has been weaned off the cardiopulmonary bypass the residual air in the left heart will be quantitatively assessed by TEE and Trans-cranial Echo-Doppler (TCD) over a period of 10 minutes. Open pleurae & conventional filling of heart : After completion of the left heart surgery, the heart will be actively filled with blood from the cardiopulmonary bypass circuit and lungs fully ventilated with positive end-expiratory pressure to flush out all air trapped in the lung veins and left heart. When there is no more visible air seen on trans-esophag
10
Total20

Withdrawals & dropouts

PeriodReasonFG000FG001
Overall StudyProtocol Violation13

Baseline characteristics

CharacteristicOpen Pleurae & Conventional Filling of HeartIntact Pleurae & Staged Filling of HeartTotal
Age, Categorical
<=18 years
0 Participants0 Participants0 Participants
Age, Categorical
>=65 years
6 Participants7 Participants13 Participants
Age, Categorical
Between 18 and 65 years
4 Participants3 Participants7 Participants
Age, Continuous71.1 years
STANDARD_DEVIATION 11.5
69.2 years
STANDARD_DEVIATION 12.5
70.2 years
STANDARD_DEVIATION 11.7
Region of Enrollment
Sweden
10 participants10 participants20 participants
Sex: Female, Male
Female
5 Participants5 Participants10 Participants
Sex: Female, Male
Male
5 Participants5 Participants10 Participants

Adverse events

Event typeEG000
affected / at risk
EG001
affected / at risk
deaths
Total, all-cause mortality
— / —— / —
other
Total, other adverse events
1 / 100 / 10
serious
Total, serious adverse events
1 / 100 / 10

Outcome results

Primary

Duration of the De-airing Procedure

The de-airing procedure is deemed completed when the Trans-esophageal Echocardiography (TEE) no longer visualizes air emboli in the heart Chambers. The duration is likely to vary between individuals and reflects the complexity of the de-airing procedure.

Time frame: Time from release of aortic crossclamp to finished de-airing

ArmMeasureValue (MEDIAN)
Intact Pleurae & Staged Filling of HeartDuration of the De-airing Procedure14 Minutes
Open Pleurae & Conventional Filling of HeartDuration of the De-airing Procedure8.5 Minutes
Primary

Participants With <=Grade I Air Emboli as Assessed by Trans-esophageal Echocardiography (TEE) After Finished De-airing.

The severity of residual air emboli in three anatomic areas; left atrium, left ventricle and aortic root, is assessed by Trans-esophageal Echocardiography (TEE) and classified in grade 0-3 as follows, Grade o: no residual air; grade I: gas emboli detected in one of three anatomic areas during one cardiac cycle; grade II: gas emboli detected simultaneously in two of three anatomic areas during one cardiac cycle; grade III: gas emboli detected simultaneously in all three anatomic areas during one cardiac cycle.

Time frame: 6-10 minutes after finished de-airing

ArmMeasureValue (NUMBER)
Intact Pleurae & Staged Filling of HeartParticipants With <=Grade I Air Emboli as Assessed by Trans-esophageal Echocardiography (TEE) After Finished De-airing.9 Participants
Open Pleurae & Conventional Filling of HeartParticipants With <=Grade I Air Emboli as Assessed by Trans-esophageal Echocardiography (TEE) After Finished De-airing.10 Participants
Primary

Participants With <=Grade I Air Emboli as Assessed by Trans-esophageal Echocardiography (TEE) After Finished De-airing.

The severity of residual air emboli in three anatomic areas; left atrium, left ventricle and aortic root, is assessed by Trans-esophageal Echocardiography (TEE) and classified in grade 0-3 as follows, Grade o: no residual air; grade I: gas emboli detected in one of three anatomic areas during one cardiac cycle; grade II: gas emboli detected simultaneously in two of three anatomic areas during one cardiac cycle; grade III: gas emboli detected simultaneously in all three anatomic areas during one cardiac cycle.

Time frame: 0-3 minutes after finished de-airing

ArmMeasureValue (NUMBER)
Intact Pleurae & Staged Filling of HeartParticipants With <=Grade I Air Emboli as Assessed by Trans-esophageal Echocardiography (TEE) After Finished De-airing.3 Participants
Open Pleurae & Conventional Filling of HeartParticipants With <=Grade I Air Emboli as Assessed by Trans-esophageal Echocardiography (TEE) After Finished De-airing.10 Participants
Primary

Participants With <=Grade I Air Emboli as Assessed by Trans-esophageal Echocardiography (TEE) After Finished De-airing.

The severity of residual air emboli in three anatomic areas; left atrium, left ventricle and aortic root, is assessed by Trans-esophageal Echocardiography (TEE) and classified in grade 0-3 as follows, Grade o: no residual air; grade I: gas emboli detected in one of three anatomic areas during one cardiac cycle; grade II: gas emboli detected simultaneously in two of three anatomic areas during one cardiac cycle; grade III: gas emboli detected simultaneously in all three anatomic areas during one cardiac cycle.

Time frame: 3-6 minutes after finished de-airing

ArmMeasureValue (NUMBER)
Intact Pleurae & Staged Filling of HeartParticipants With <=Grade I Air Emboli as Assessed by Trans-esophageal Echocardiography (TEE) After Finished De-airing.6 Participants
Open Pleurae & Conventional Filling of HeartParticipants With <=Grade I Air Emboli as Assessed by Trans-esophageal Echocardiography (TEE) After Finished De-airing.10 Participants
Primary

Quantitative Assessment of Air Embolism to the Brain After Completion of Open Left Heart Surgery

Cerebral air emboli will be assessed quantitatively by On-line counting of gaseous microembolic signals (MES) by Trans-cranial Echo-Doppler (TCD) monitoring of the right and left middle cerebral artery. The sum of the gaseous microembolic signals registered from the right and left middle cerebral artery will be reported.

Time frame: Time from cardiac ejection to finished de-airing, an average of 5-10 minutes

ArmMeasureValue (MEDIAN)
Intact Pleurae & Staged Filling of HeartQuantitative Assessment of Air Embolism to the Brain After Completion of Open Left Heart Surgery71 Air microemboli
Open Pleurae & Conventional Filling of HeartQuantitative Assessment of Air Embolism to the Brain After Completion of Open Left Heart Surgery28 Air microemboli
Primary

Quantitative Assessment of Air Embolism to the Brain After Completion of Open Left Heart Surgery

Cerebral air emboli will be assessed quantitatively by On-line counting of gaseous microembolic signals (MES) by Trans-cranial Echo-Doppler (TCD) monitoring of the right and left middle cerebral artery. The sum of the gaseous microembolic signals registered from the right and left middle cerebral artery will be reported.

Time frame: Period of ten minutes after finished de-airing

ArmMeasureValue (MEDIAN)
Intact Pleurae & Staged Filling of HeartQuantitative Assessment of Air Embolism to the Brain After Completion of Open Left Heart Surgery65 Air microemboli
Open Pleurae & Conventional Filling of HeartQuantitative Assessment of Air Embolism to the Brain After Completion of Open Left Heart Surgery9 Air microemboli
p-value: <0.01Wilcoxon (Mann-Whitney)
Primary

Quantitative Assessment of Air Embolism to the Brain After Completion of Open Left Heart Surgery

Cerebral air emboli will be assessed quantitatively by On-line counting of gaseous microembolic signals (MES) by Trans-cranial Echo-Doppler (TCD) monitoring of the right and left middle cerebral artery. The sum of the gaseous microembolic signals registered from the right and left middle cerebral artery will be reported.

Time frame: Time from the release of the aortic crossclamp to cardiac ejection, an average of 10-15 minutes

ArmMeasureValue (MEDIAN)
Intact Pleurae & Staged Filling of HeartQuantitative Assessment of Air Embolism to the Brain After Completion of Open Left Heart Surgery49 Air microemboli
Open Pleurae & Conventional Filling of HeartQuantitative Assessment of Air Embolism to the Brain After Completion of Open Left Heart Surgery46 Air microemboli

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026