Literature DB >> 20934939

In vivo micro-image mosaicing.

Kevin E Loewke1, David B Camarillo, Wibool Piyawattanametha, Michael J Mandella, Christopher H Contag, Sebastian Thrun, J Kenneth Salisbury.   

Abstract

Recent advances in optical imaging have led to the development of miniature microscopes that can be brought to the patient for visualizing tissue structures in vivo. These devices have the potential to revolutionize health care by replacing tissue biopsy with in vivo pathology. One of the primary limitations of these microscopes, however, is that the constrained field of view can make image interpretation and navigation difficult. In this paper, we show that image mosaicing can be a powerful tool for widening the field of view and creating image maps of microanatomical structures. First, we present an efficient algorithm for pairwise image mosaicing that can be implemented in real time. Then, we address two of the main challenges associated with image mosaicing in medical applications: cumulative image registration errors and scene deformation. To deal with cumulative errors, we present a global alignment algorithm that draws upon techniques commonly used in probabilistic robotics. To accommodate scene deformation, we present a local alignment algorithm that incorporates deformable surface models into the mosaicing framework. These algorithms are demonstrated on image sequences acquired in vivo with various imaging devices including a hand-held dual-axes confocal microscope, a miniature two-photon microscope, and a commercially available confocal microendoscope.

Entities:  

Mesh:

Year:  2010        PMID: 20934939     DOI: 10.1109/TBME.2010.2085082

Source DB:  PubMed          Journal:  IEEE Trans Biomed Eng        ISSN: 0018-9294            Impact factor:   4.538


  18 in total

Review 1.  Application of robotics in gastrointestinal endoscopy: A review.

Authors:  Baldwin Po Man Yeung; Philip Wai Yan Chiu
Journal:  World J Gastroenterol       Date:  2016-02-07       Impact factor: 5.742

2.  Toward development of a large field-of-view cancer screening patch (CASP) to detect cervical intraepithelial neoplasia.

Authors:  John Gawedzinski; Kathleen M Schmeler; Andrea Milbourne; Preetha Ramalingam; Parnian A Moghaddam; Rebecca Richards-Kortum; Tomasz S Tkaczyk
Journal:  Biomed Opt Express       Date:  2019-11-06       Impact factor: 3.732

3.  Confocal microscopy with strip mosaicing for rapid imaging over large areas of excised tissue.

Authors:  Sanjee Abeytunge; Yongbiao Li; Bjorg Larson; Gary Peterson; Emily Seltzer; Ricardo Toledo-Crow; Milind Rajadhyaksha
Journal:  J Biomed Opt       Date:  2013-06       Impact factor: 3.170

4.  In vivo near-infrared dual-axis confocal microendoscopy in the human lower gastrointestinal tract.

Authors:  Wibool Piyawattanametha; Hyejun Ra; Zhen Qiu; Shai Friedland; Jonathan T C Liu; Kevin Loewke; Gordon S Kino; Olav Solgaard; Thomas D Wang; Michael J Mandella; Christopher H Contag
Journal:  J Biomed Opt       Date:  2012-02       Impact factor: 3.170

5.  Feasibility of a Video-Mosaicking Approach to Extend the Field-of-View For Reflectance Confocal Microscopy in the Oral Cavity In Vivo.

Authors:  Gary Peterson; Daniella Karassawa Zanoni; Marco Ardigo; Jocelyn C Migliacci; Snehal G Patel; Milind Rajadhyaksha
Journal:  Lasers Surg Med       Date:  2019-05-08       Impact factor: 4.025

6.  Real-time video mosaicking to guide handheld in vivo microscopy.

Authors:  Chengbo Yin; Linpeng Wei; Kivanc Kose; Adam K Glaser; Gary Peterson; Milind Rajadhyaksha; Jonathan T C Liu
Journal:  J Biophotonics       Date:  2020-04-14       Impact factor: 3.207

7.  Miniature in vivo MEMS-based line-scanned dual-axis confocal microscope for point-of-care pathology.

Authors:  C Yin; A K Glaser; S Y Leigh; Y Chen; L Wei; P C S Pillai; M C Rosenberg; S Abeytunge; G Peterson; C Glazowski; N Sanai; M J Mandella; M Rajadhyaksha; J T C Liu
Journal:  Biomed Opt Express       Date:  2016-01-05       Impact factor: 3.732

8.  Video-mosaicing of reflectance confocal images for examination of extended areas of skin in vivo.

Authors:  K Kose; M Cordova; M Duffy; E S Flores; D H Brooks; M Rajadhyaksha
Journal:  Br J Dermatol       Date:  2014-10-26       Impact factor: 9.302

9.  Software-Based Phase Control, Video-Rate Imaging, and Real-Time Mosaicing With a Lissajous-Scanned Confocal Microscope.

Authors:  Nathan O Loewke; Zhen Qiu; Michael J Mandella; Robert Ertsey; Adrienne Loewke; Lisa A Gunaydin; Eben L Rosenthal; Christopher H Contag; Olav Solgaard
Journal:  IEEE Trans Med Imaging       Date:  2019-09-27       Impact factor: 10.048

10.  Real-time video mosaicing with a high-resolution microendoscope.

Authors:  Noah Bedard; Timothy Quang; Kathleen Schmeler; Rebecca Richards-Kortum; Tomasz S Tkaczyk
Journal:  Biomed Opt Express       Date:  2012-09-07       Impact factor: 3.732

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