| Literature DB >> 22690896 |
Erik Henne1, Joseph C Anderson, Robert Barry, Steven Kesten.
Abstract
PURPOSE: An investigation of the thermal effect and the potential for injury at the lung surface following thermal vapour ablation (InterVapor), an energy-based method of achieving endoscopic lung volume reduction.Entities:
Mesh:
Year: 2012 PMID: 22690896 PMCID: PMC3433179 DOI: 10.3109/02656736.2012.677932
Source DB: PubMed Journal: Int J Hyperthermia ISSN: 0265-6736 Impact factor: 3.914
Lobar and sub-lobar segment fractions of the whole en bloc lung were used to estimate segment mass in the absence of CT analysis. Lobar fractions of the whole were determined by gas dilution [26]. To characterise sub-lobar segments (upper lobes only), the airways of twelve human ex vivo lungs were filled with silicone. The tissue was then dissolved with 2M KOH. The casted silicone airway branches of the upper lobes were dissected apart and weighed to determine the relative weight of each. The results were averaged and then multiplied by the fraction of the parent lobe to determine the fraction of the whole lung.
| Lobar/Sub-Lobar Segment | Segment Fraction of Whole |
|---|---|
| Right Lung | 52.50% |
| Right upper lobe | 16.40% |
| RB1 | 5.72% |
| RB2 | 4.58% |
| RB3 | 6.10% |
| Right middle lobe | 9.60% |
| Right lower lobe | 26.50% |
| Left Lung | 47.50% |
| Left upper lobe | 24.00% |
| LB123 | 14.53% |
| LB12 | 6.35% |
| LB3 | 8.19% |
| LB1 | 5.13% |
| LB2 | 3.24% |
| LB3 | 6.16% |
| LB45 | 9.47% |
| LB4 | 4.85% |
| LB5 | 4.62% |
| Left lower lobe | 23.50% |
LB3 value for anatomy with an LB12 apicoposterior configuration
LB3 value for anatomy with an LB1 and LB2 apicoposterior configuration
Figure 1An example of surface temperature of the lung measured by infrared camera following a treatment. The values on the left describe the temperatures bounded by the square. The maximum lung surface temperature in this image is 21.6°C. The baseline temperature is subtracted from this maximum temperature to calculate the temperature change, examples in Figure 2.
Figure 2Plots of the discrete measurements of temperature change at the lung surface verses time after vapour delivery commencement (t = 0) for three representative temperature observations (high, medium, and low temperature change). The data was numerically integrated (Equation 2) using the trapezoid rule to determine the injury quotient. Data points were connected with dashed lines as a visual aid.
Kinetic parameters of cumulative injury (Equation 2) adopted from Henriques [9].
| Property | Value | Units |
|---|---|---|
| Frequency factor, A | 3.10×1098 | s−1 |
| Activation energy, E | 627600 | J/mol |
| Universal gas constant, R | 8.3145 | J/(mol K) |
| Cumulative injury, Ω, first degree | 0.53 | − |
| Cumulative injury, Ω, second degree | 1.00 | − |
Summary of statistical comparisons between the average cumulative injury (Ω) for various subgroups using a Student's t-test.
| Ω | ||||
|---|---|---|---|---|
| Number of treatments | Average (SD) | |||
| Treatments in lungs with visual evidence of emphysema | 56 | 0.0029 | (0.0109) | 0.33 |
| Treatments at the segmental level | 55 | 0.0031 | (0.0110) | 0.42 |
| All treatments | 71 | 0.0025 | (0.0098) | |
Average cumulative injury (Ω) following vapour ablation to each lung. The median cumulative injury of all treatments was 0.0001.
| Lung ID | Visual evidence of emphysema | Number of treatments | Ω Average (SD) | |
|---|---|---|---|---|
| 110207-A | 2 | 0.0021 | (0.00221) | |
| 110208-A | X | 6 | 0.0010 | (0.00227) |
| 110211-A | X | 3 | 0.0000 | (0.00001) |
| 110211-B | X | 3 | 0.0032 | (0.00461) |
| 110301-A | X | 7 | 0.0001 | (0.00011) |
| 110301-B | X | 4 | 0.0001 | (0.00004) |
| 110301-D | 5 | 0.0003 | (0.00031) | |
| 110315-A | 5 | 0.0027 | (0.00469) | |
| 110318-A | 3 | 0.0000 | (0.00001) | |
| 110325-A | X | 4 | 0.0007 | (0.00129) |
| 110502-A | X | 8 | 0.0000 | (0.00002) |
| 110502-B | X | 4 | 0.0107 | (0.01307) |
| 110511-A | X | 6 | 0.0022 | (0.00458) |
| 110520-A | X | 6 | 0.0129 | (0.03083) |
| 110525-A | X | 5 | 0.0016 | (0.00347) |
| Average | 4.7 | 0.0025 | (0.00450) | |