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冷冻生理盐溶液介质中的低温电解 - 电解过程。

Cryoelectrolysis-electrolytic processes in a frozen physiological saline medium.

作者信息

Lugnani Franco, Macchioro Matteo, Rubinsky Boris

机构信息

Clinica Santa Elena , Malaga , Spain.

Hippocrates D.O.O , Divaca , Slovenia.

出版信息

PeerJ. 2017 Jan 17;5:e2810. doi: 10.7717/peerj.2810. eCollection 2017.

Abstract

BACKGROUND

Cryoelectrolysis is a new minimally invasive tissue ablation surgical technique that combines the ablation techniques of electrolytic ablation with cryosurgery. The goal of this study is to examine the hypothesis that electrolysis can take place in a frozen aqueous saline solution.

METHOD

To examine the hypothesis we performed a cryoelectrolytic ablation protocol in which electrolysis and cryosurgery are delivered simultaneously in a tissue simulant made of physiological saline gel with a pH dye. We measured current flow, voltage and extents of freezing and pH dye staining.

RESULTS

Using optical measurements and measurements of currents, we have shown that electrolysis can occur in frozen physiological saline, at high subzero freezing temperatures, above the eutectic temperature of the frozen salt solution. It was observed that electrolysis occurs when the tissue resides at high subzero temperatures during the freezing stage and essentially throughout the entire thawing stage. We also found that during thawing, the frozen lesion temperature raises rapidly to high subfreezing values and remains at those values throughout the thawing stage. Substantial electrolysis occurs during the thawing stage. Another interesting finding is that electro-osmotic flows affect the process of cryoelectrolysis at the anode and cathode, in different ways.

DISCUSSION

The results showing that electrical current flow and electrolysis occur in frozen saline solutions imply a mechanism involving ionic movement in the fluid concentrated saline solution channels between ice crystals, at high subfreezing temperatures. Temperatures higher than the eutectic are required for the brine to be fluid. The particular pattern of temperature and electrical currents during the thawing stage of frozen tissue, can be explained by the large amounts of energy that must be removed at the outer edge of the frozen lesion because of the solid/liquid phase transformation on that interface.

CONCLUSION

Electrolysis can occur in a frozen domain at high subfreezing temperature, probably above the eutectic. It appears that the most effective period for delivering electrolytic currents in cryoelectrolysis is during the high subzero temperatures stage while freezing and immediately after cooling has stopped, throughout the thawing stage.

摘要

背景

冷冻电解是一种新的微创组织消融手术技术,它将电解消融技术与冷冻手术相结合。本研究的目的是检验电解能否在冷冻的盐水溶液中发生这一假设。

方法

为检验该假设,我们实施了一项冷冻电解消融方案,其中电解和冷冻手术在由含pH染料的生理盐水凝胶制成的组织模拟物中同时进行。我们测量了电流、电压以及冷冻和pH染料染色的范围。

结果

通过光学测量和电流测量,我们表明电解能够在冷冻的生理盐水中发生,在低于冰点的较高冷冻温度下,高于冷冻盐溶液的共晶温度。观察到当组织在冷冻阶段处于低于冰点的较高温度时以及基本上在整个解冻阶段都会发生电解。我们还发现,在解冻过程中,冷冻损伤温度迅速升至高于冰点的较高值,并在整个解冻阶段保持在这些值。在解冻阶段会发生大量电解。另一个有趣的发现是,电渗流以不同方式影响冷冻电解在阳极和阴极的过程。

讨论

结果表明电流和电解在冷冻盐溶液中发生,这意味着在高于冰点的较高温度下,冰晶之间的流体浓缩盐溶液通道中存在离子运动的机制。盐水要呈流体状态需要高于共晶温度。冷冻组织解冻阶段温度和电流的特定模式,可以用由于该界面上的固/液相变而必须在冷冻损伤外缘去除大量能量来解释。

结论

电解能够在高于共晶温度的低于冰点的较高温度下的冷冻区域中发生。看来在冷冻电解中输送电解电流的最有效时期是在冷冻期间以及冷却停止后紧接着的高于冰点的较高温度阶段,即整个解冻阶段。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fdfe/5244893/b07fdce6bf61/peerj-05-2810-g001.jpg

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