Aquamantys™ bipolar sealers use proprietary Transcollation™ technology, combining radiofrequency (RF) energy and saline to provide haemostatic sealing of soft tissue and bone without the smoke or char found in other methods. The combination of RF energy and saline allows the device to operate at approximately 100˚C — nearly 200˚C less than traditional electrosurgical devices. By controlling bleeding, Aquamantys™ has been shown to significantly reduce the incidence of haematoma and reduce surgical time in a variety of procedures, and may reduce the need for haemostatic agents. Achieving Haemostasis These illustrations show how Aquamantys™ bipolar sealers achieve haemostasis with heat-induced collagen shrinkage in blood vessel walls. body { font-family: 'Segoe UI', Tahoma, Geneva, Verdana, sans-serif; background-color: #ffffff; color: #1a1a1a; margin: 40px; } .steps-container { display: flex; justify-content: space-between; gap: 30px; } .step { text-align: center; width: 30%; background-color: #cce8f2; /* light blue default */ padding: 20px; border-radius: 8px; } .step:nth-child(2) { background-color: #00b4f1; /* brighter blue for step 2 */ } .step img { width: 100%; max-width: 200px; border-radius: 50%; margin-bottom: 15px; } .step-number { font-size: 28px; font-weight: 700; margin-bottom: 10px; } .step-description { font-size: 15px; font-weight: 500; } 1 1. RF energy and saline are applied to tissue. 2 2. Heat-induced collagen shrinkage occurs. 3 3. Vessels < 1 mm may be occluded. body { font-family: 'Segoe UI', Tahoma, Geneva, Verdana, sans-serif; background-color: #ffffff; color: #333333; margin: 40px; } h1 { font-size: 32px; font-weight: 700; margin-bottom: 10px; } .underline { width: 50px; height: 3px; background-color: #f37021; margin-bottom: 30px; } .container { display: flex; justify-content: space-between; gap: 40px; } .column { width: 30%; } .column h2 { font-size: 20px; font-weight: 700; margin-bottom: 15px; } ul { padding-left: 20px; } li { margin-bottom: 12px; font-size: 15px; line-height: 1.5; } sup { font-size: 0.7em; color: #f37021; vertical-align: top; } Benefits Economic Reduces transfusion rates which may lower costs to the hospital Decreases surgical time May reduce the need for other haemostatic agents Patient May decrease complications and reduce post-operative patient morbidity. Helps to maintain haemoglobin levels Reduces transfusion rates which may contribute to reduced hospital length of stay Intra-operative May reduce exposure to surgical smoke for surgeons and operating room staff Improved visualization of the surgical site Significantly reduced total blood loss compared to traditional electrosurgery