Your browser doesn't support javascript.
loading
Diagnosing Sarcopenia with AI-Aided Ultrasound (DINOSAUR)-A Pilot Study.
Yik, Vanessa; Kok, Shawn Shi Xian; Chean, Esther; Lam, Yi-En; Chua, Wei-Tian; Tan, Winson Jianhong; Foo, Fung Joon; Ng, Jia Lin; Su, Sharmini Sivarajah; Chong, Cheryl Xi-Zi; Aw, Darius Kang-Lie; Khoo, Nathanelle Ann Xiaolian; Wischmeyer, Paul E; Molinger, Jeroen; Wong, Steven; Ong, Lester Wei-Lin; Koh, Frederick Hong-Xiang.
Affiliation
  • Yik V; Duke-NUS Medical School, Singapore 169857, Singapore.
  • Kok SSX; Department of Radiology, Sengkang General Hospital, Singapore 544886, Singapore.
  • Chean E; Department of Radiology, Sengkang General Hospital, Singapore 544886, Singapore.
  • Lam YE; Department of Radiology, Sengkang General Hospital, Singapore 544886, Singapore.
  • Chua WT; Department of Colorectal Surgery, Sengkang General Hospital, Singapore 544886, Singapore.
  • Tan WJ; Department of Colorectal Surgery, Sengkang General Hospital, Singapore 544886, Singapore.
  • Foo FJ; Department of Colorectal Surgery, Sengkang General Hospital, Singapore 544886, Singapore.
  • Ng JL; Department of Colorectal Surgery, Sengkang General Hospital, Singapore 544886, Singapore.
  • Su SS; Department of Colorectal Surgery, Sengkang General Hospital, Singapore 544886, Singapore.
  • Chong CX; Department of Colorectal Surgery, Sengkang General Hospital, Singapore 544886, Singapore.
  • Aw DK; Department of Colorectal Surgery, Sengkang General Hospital, Singapore 544886, Singapore.
  • Khoo NAX; Department of Colorectal Surgery, Sengkang General Hospital, Singapore 544886, Singapore.
  • Wischmeyer PE; Department of Anesthesia, Duke University Medical Center, Durham, NC 27710, USA.
  • Molinger J; Department of Anesthesia, Human Pharmacology and Physiology Lab (HPPL), Duke University Medical Center, Durham, NC 27710, USA.
  • Wong S; Department of Intensive Care Adults, Erasmus Medical Center University, 3015 GD Rotterdam, The Netherlands.
  • Ong LW; Department of Radiology, Sengkang General Hospital, Singapore 544886, Singapore.
  • Koh FH; Department of Surgery, Sengkang General Hospital, Singapore 544886, Singapore.
Nutrients ; 16(16)2024 Aug 20.
Article in En | MEDLINE | ID: mdl-39203903
ABSTRACT

Background:

Sarcopenia has been recognized as a determining factor in surgical outcomes and is associated with an increased risk of postoperative complications and readmission. Diagnosis is currently based on clinical guidelines, which includes assessment of skeletal muscle mass but not quality. Ultrasound has been proposed as a useful point-of-care diagnostic tool to assess muscle quality, but no validated cut-offs for sarcopenia have been reported. Using novel automated artificial intelligence (AI) software to interpret ultrasound images may assist in mitigating the operator-dependent nature of the modality. Our study aims to evaluate the fidelity of AI-aided ultrasound as a reliable and reproducible modality to assess muscle quality and diagnose sarcopenia in surgical patients.

Methods:

Thirty-six adult participants from an outpatient clinic were recruited for this prospective cohort study. Sarcopenia was diagnosed according to Asian Working Group for Sarcopenia (AWGS) 2019 guidelines. Ultrasonography of the rectus femoris muscle was performed, and images were analyzed by an AI software (MuscleSound® (Version 5.69.0)) to derive muscle parameters including intramuscular adipose tissue (IMAT) as a proxy of muscle quality. A receiver operative characteristic (ROC) curve was used to assess the predictive capability of IMAT and its derivatives, with area under the curve (AUC) as a measure of overall diagnostic accuracy. To evaluate consistency between ultrasound users of different experience, intra- and inter-rater reliability of muscle ultrasound parameters was analyzed in a separate cohort using intraclass correlation coefficients (ICC) and Bland-Altman plots.

Results:

The median age was 69.5 years (range 26-87), and the prevalence of sarcopenia in the cohort was 30.6%. The ROC curve plotted with IMAT index (IMAT% divided by muscle area) yielded an AUC of 0.727 (95% CI 0.551-0.904). An optimal cut-off point of 4.827%/cm2 for IMAT index was determined with a Youden's Index of 0.498. We also demonstrated that IMAT index has excellent intra-rater reliability (ICC = 0.938, CI 0.905-0.961) and good inter-rater reliability (ICC = 0.776, CI 0.627-0.866). In Bland-Altman plots, the limits of agreement were from -1.489 to 1.566 and -2.107 to 4.562, respectively.

Discussion:

IMAT index obtained via ultrasound has the potential to act as a point-of-care evaluation for sarcopenia screening and diagnosis, with good intra- and inter-rater reliability. The proposed IMAT index cut-off maximizes sensitivity for case finding, supporting its use as an easily implementable point-of-care test in the community for sarcopenia screening. Further research incorporating other ultrasound parameters of muscle quality may provide the basis for a more robust diagnostic tool to help predict surgical risk and outcomes.
Subject(s)
Key words

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Artificial Intelligence / Ultrasonography / Sarcopenia Limits: Adult / Aged / Aged80 / Female / Humans / Male / Middle aged Language: En Journal: Nutrients Year: 2024 Document type: Article Affiliation country: Singapore Country of publication: Switzerland

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Artificial Intelligence / Ultrasonography / Sarcopenia Limits: Adult / Aged / Aged80 / Female / Humans / Male / Middle aged Language: En Journal: Nutrients Year: 2024 Document type: Article Affiliation country: Singapore Country of publication: Switzerland