P146. Optimization of Ultrasonic Bone Scalpel Technique for Safe Redo Sternotomy: An Ex Vivo Study

Yuta Tsuchida Poster Presenter
University of Chicago
Chicago, IL 
United States
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  1. Training

April 2014 – March 2016 Resident

Kitasato University Hospital, Kanagawa, Japan

 

April 2016 – March 2017 Resident, Cardiovascular Surgery

School of Medicine, Kiatasto University, Kanagawa, Japan

 

April 2017 – March 2018 Resident, Cardiovascular Surgery

NTT Medical Center Tokyo, Tokyo, Japan

 

April 2018 – March 2020 Resident, General Surgery

Saiseikai Yokohamashi Tobu Hospital, Kanagawa, Japan

 

  1. Hospital Appointments

April 2020 – September 2022 Staff surgeon, Cardiovascular Surgery

Ageo Central General Hospital, Saitama, Japan

 

October 2022 – March 2024 Staff surgeon, Cardiovascular Surgery

Kanto Rosai Hospital, Kanagawa, Japan

April 2024 - Present Postdoctoral reseaerch fellow, Hibino laboratory, Surgery

The University of Chicago, Chicago, IL, USA

 

Monday, May 4, 2026: 9:00 AM - 4:00 PM
McCormick Place Lakeside Center  
Room: Exhibit Hall, Poster Area 

Description

Objective
The ultrasonic bone scalpel (BS) is increasingly applied in spinal and orthopedic surgery because its blunt, high-frequency vibrating blade selectively cuts bone while sparing soft tissues such as nerves and vessels. Recently, BS has been introduced for redo sternotomy in cardiac surgery, as it can safely separate the sternum from adhered cardiac tissues and great vessels. However, the high-frequency vibration of the blade generates heat, posing a potential risk of thermal injury to tissues adherent to the sternum. The optimal power settings and operative technique for safe use in redo sternotomy have not been established. This study aimed to determine the appropriate power levels and handling techniques for safe BS use during redo sternotomy using an ex vivo sheep heart model.

Methods
Whole sheep hearts were harvested, and ventricular tissue blocks were prepared. Samples were divided into two groups according to blade handling technique: (1) Holding - the blade kept stationary on the tissue, and (2) Quick touch - rapid, light, repetitive contact. Each technique was tested at three power levels (40, 60, and 100). The extent of tissue injury was assessed macroscopically by measuring the area of visible damage and histologically by evaluating thermal injury depth.

Results
Macroscopic analysis showed no visible scar or thermal injury in the quick touch group, even at high power. In contrast, the holding group demonstrated clear scar formation, which increased proportionally with power level. Histological examination confirmed that thermal injury depth correlated with power in the holding group but was absent in the quick touch group.

Conclusion
During redo sternotomy, the ultrasonic bone scalpel offers a significant advantage over conventional sternal saws by reducing the risk of injury to cardiac tissues and great vessels. Although excessive power or prolonged contact can cause thermal injury, using the quick touch technique-brief, repetitive blade contact-maintains safety even at high power. When applied properly, BS is a useful and safe device for minimizing cardiac and vascular injury during redo sternotomy.

Authors
Yuta Tsuchida (1), Riya Gandhi (2), Narutoshi Hibino (3)
Institutions
(1) University of Chicago, Chicago, IL, (2) the university of chicago, chicago, IL, (3) Advocate Children's Hospital, Chicago, IL

Presentation Duration

There is no formal presentation for posters. Your poster will be on display on your assigned day from 9:00AM - 4:00PM 

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ADULT CARDIAC

Innovations: New devices or novel approaches, preclinical or clinical