Key result
A simple, cost-effective modification using standard intravenous tubing and saline converts standard bipolar electrocautery forceps into an irrigation-coupled device, reducing tissue charring.
A simple, low-cost modification using standard IV tubing and saline can effectively convert a standard bipolar forceps into an irrigation-coupled cautery device, reducing tissue charring and instrument cleaning time.
May reduce charring via low-cost bipolar modification; leaves open whether outcomes improve or adoption follows without trials.
Hemostasis is a fundamental principle of surgery for which electrocoagulation is universally used. Bipolar electrocautery has an advantage over monopolar electrocautery in terms of the precision of the extent of tissue coagulation and the lateral extent of thermal tissue injury. However, secondary to the thermal changes induced in the tissue due to electric current passage, there is charring of tissue, which adheres to the cautery tip. This, not only decreases its effectiveness, but also, by getting avulsed while removing the cautery tip from the surgical field, causes rebleeding and more trauma to the tissue. Irrigation of the surgical field during application of cautery reduces the charring effect, thereby improving the efficiency and efficacy. Irrigation-coupled electrocautery devices are available but are costly to acquire and maintain. We describe a simple and reliable version of an irrigation-coupled cautery device, which is of immense functional utility in our experience. It decreases the amount of charring of the tissue and its adherence to the bipolar forceps tips, thereby decreasing the frustrating loss of effectiveness and also increases the life of the bipolar forceps as cleaning needs to be less frequent. By virtue of its simplicity and cost-effectiveness, it can be used in almost all hospitals and situations.
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Sharma et al. (2008) studied Surgical hemostasis. Irrigation-coupled bipolar cautery unit modification was evaluated. A simple, cost-effective modification using standard intravenous tubing and saline converts standard bipolar electrocautery forceps into an irrigation-coupled device, reducing tissue charring.
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