Literature DB >> 29675812

A New Venous Entry Detection Method Based on Electrical Bio-impedance Sensing.

Zhuoqi Cheng1, Brian L Davies2,3, Darwin G Caldwell2, Leonardo S Mattos2.   

Abstract

Peripheral intravenous catheterization (PIVC) is frequently required for various medical treatments. Over 1 billion PIVC operations are performed per year in the United States alone. However, this operation is characterized by a very low success rate, especially amongst pediatric patients. Statistics show that only 53% of first PIVC attempts are successful in pediatric patients. Since their veins are small and readily rupture, multiple attempts are commonly required before successfully inserting the catheter into the vein. This article presents and evaluates a novel venous entry detection method based on measuring the electrical bio-impedance of the contacting tissue at the tip of a concentric electrode needle (CEN). This detection method is then implemented in the design of a clinical device called smart venous entry indicator (SVEI), which lights up a LED to indicate the venous entry when the measured value is within the range of blood. To verify this detection method, two experiments are conducted. In the first experiment, we measured the bio-impedance during the insertion of a CEN into a rat's tail vein with different excitation frequencies. Then three classifiers are tested to discriminate blood from surrounding tissues. The experimental results indicate that with 100 kHz excitation frequency the blood bio-impedance can be identified with accuracy nearly 100%, demonstrating the feasibility and reliability of the proposed method for venous entry detection. The second experiment aims to assess the impact of SVEI on PIVC performance. Ten naive subjects were invited to catheterize a realistic baby arm phantom. The subjects are equally divided into two groups, where one group does PIVC with SVEI and the other group uses an ordinary IV catheter. The results show that subjects using SVEI can achieve much higher success rates (86%) than those performing PIVC in a conventional way (12%). Also, all subjects assisted by SVEI succeeded in their first trials while no one succeed in their first attempt using the conventional unassisted system. These results demonstrate the proposed detection method has great potential to improve pediatric PIVC performance, especially for non-expert clinicians. This supports further investment towards clinical validation of the technology.

Entities:  

Keywords:  Concentric electrode needle; Electrical bio-impedance; In vivo bio-impedance measurement; Peripheral intravenous catheterization; Venous entry detection

Mesh:

Year:  2018        PMID: 29675812     DOI: 10.1007/s10439-018-2025-7

Source DB:  PubMed          Journal:  Ann Biomed Eng        ISSN: 0090-6964            Impact factor:   3.934


  5 in total

1.  Design and Integration of Electrical Bio-impedance Sensing in Surgical Robotic Tools for Tissue Identification and Display.

Authors:  Zhuoqi Cheng; Diego Dall'Alba; Simone Foti; Andrea Mariani; Thibaud Chupin; Darwin G Caldwell; Giancarlo Ferrigno; Elena De Momi; Leonardo S Mattos; Paolo Fiorini
Journal:  Front Robot AI       Date:  2019-07-17

2.  Design of a Drop-in EBI Sensor Probe for Abnormal Tissue Detection in Minimally Invasive Surgery.

Authors:  Guanming Zhu; Liang Zhou; Shilong Wang; Pengjie Lin; Jing Guo; Shuting Cai; Xiaoming Xiong; Xiaobing Jiang; Zhuoqi Cheng
Journal:  J Electr Bioimpedance       Date:  2020-12-31

3.  Tissue Recognition Based on Electrical Impedance Classified by Support Vector Machine in Spinal Operation Area.

Authors:  Bingrong Chen; Yongwang Shi; Jiahao Li; Jiliang Zhai; Liang Liu; Wenyong Liu; Lei Hu; Yu Zhao
Journal:  Orthop Surg       Date:  2022-08-01       Impact factor: 2.279

4.  Supervised binary classification methods for strawberry ripeness discrimination from bioimpedance data.

Authors:  Pietro Ibba; Christian Tronstad; Roberto Moscetti; Tanja Mimmo; Giuseppe Cantarella; Luisa Petti; Ørjan G Martinsen; Stefano Cesco; Paolo Lugli
Journal:  Sci Rep       Date:  2021-05-27       Impact factor: 4.379

5.  Smart Bio-Impedance-Based Sensor for Guiding Standard Needle Insertion.

Authors:  Ivan Kudashov; Sergey Shchukin; Mugeb Al-Harosh; Andrew Shcherbachev
Journal:  Sensors (Basel)       Date:  2022-01-15       Impact factor: 3.576

  5 in total

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