非侵襲的な核心体温測定技術の包括的なレビュー
1Department of Mechanical Engineering, Institute of Science Tokyo, Meguro-ku, Tokyo 152-8552, Japan.
Sensors (Basel, Switzerland)
|February 13, 2026
まとめ
正確な核心体温 (CBT) 監視は極めて重要です. このレビューは,侵襲的および非侵襲的方法を合成し,現実世界のアプリケーションのためのウェアラブルセンサーおよびハイブリッドシステムの進歩を強調しています.
科学分野:
- 生理学 生理学とは
- バイオメディカルエンジニアリング
- ウェアラブル・テクノロジー ウェアラブル・テクノロジー
背景:
- 核心体温 (CBT) は,健康と研究にとって不可欠です.
- 侵襲的な方法は精度を提供しているが,継続的なモニタリングには実用性が欠けている.
- 現実世界のCBT評価のために,非侵襲的な技術が求められます.
研究 の 目的:
- 侵襲的および非侵襲的CBT測定技術をレビューし,比較する.
- 精度と現実世界の可用性とのトレードオフを分析する.
- CBTモニタリングシステムの選択と設計をガイドする.
主な方法:
- 侵襲的な参照方法 (肺動脈,食道,直腸) の合成.
- 非侵襲的アプローチのレビュー:入耳センサー,赤外線温度計,食用センサー,熱流,およびモデルベースの推定.
- 原則,正確性,侵入性,可用性,およびアプリケーションの比較的な検討.
主要な成果:
- 侵入的ゴールドスタンダードを普遍的に置き換える単一の非侵襲的方法はありません.
- ウェアラブルセンシング,熱流量モデリング,およびマルチモダルの推定は,大きな可能性を示しています.
- 臨床,職業,日常生活の文脈における方法の相対的な位置づけが強調されています.
結論:
- 将来のCBT評価では,ハイブリッドで文脈に敏感なシステムを使用する可能性が高い.
- 補完的な方法の統合は,信頼性の高い現実世界のモニタリングの鍵です.
- 進歩は,実用的で継続的な体温監視をサポートしています.
キーワード:
身体の温度は,身体の温度は,体温は,体温は,体温は熱流感センサによる熱流感センサです.耳内温度計 (in-ear thermometry) が使われています.赤外線サーモグラフィー消化可能なセンサーを搭載しています.非侵襲的測定法による非侵襲的測定法ウェアラブルセンサーさらに関連する動画
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