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3D Transformation Matrix Calculation and Pixel Intensity Normalization for the Dual Focus Tracking System
期刊文章

3D Transformation Matrix Calculation and Pixel Intensity Normalization for the Dual Focus Tracking System

Kenneth Sutherland, Toshiyuki Hamada, Masayori Ishikawa, Naoki Miyamoto, Masahiro Mizuta, Hiroyuki Date, Hiroki Shirato 和 Fang-Hsin Chen
Journal of medical and biological engineering, 卷.39(6), 頁碼.952-959
01/12/2019
Web of Science ID: WOS:000491081000014

摘要

Engineering Engineering, Biomedical Science & Technology Technology
PurposeWe provide details of the dual-focal 3D tracking and pixel intensity calibration (DuFT) system used to record gene expression in targeted areas on the skin of freely moving mice.MethodsThe accuracy of the 3D position calculation was determined by placing a scintillator on the calibration disk at various known locations within the recording cage. The height of the disk was varied from the bottom (Z = 0 cm) to the top (Z = 30 cm). The distance from the central axis range from near the center (R = 1 cm) to near to edge (R = 5 cm).ResultsThe mean deviation between the known and calculated position was .31 0.16 mm. The maximum deviation was less than .86 mm.ConclusionThe results indicate that the location of a scintillator within the recording cage imaged with two cameras can be calculated with submillimeter accuracy. We hope that our methods can be applied to improve automatic (even real-time) tracking of various animals in vivo.

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