TY - JOUR
T1 - Mobile-cloud assisted framework for selective encryption of medical images with steganography for resource-constrained devices
AU - Sajjad, Muhammad
AU - Muhammad, Khan
AU - Baik, Sung Wook
AU - Rho, Seungmin
AU - Jan, Zahoor
AU - Yeo, Sang Soo
AU - Mehmood, Irfan
N1 - Publisher Copyright:
© 2016, Springer Science+Business Media New York.
PY - 2017/2/1
Y1 - 2017/2/1
N2 - In this paper, the problem of outsourcing the selective encryption of a medical image to cloud by resource-constrained devices such as smart phone is addressed, without revealing the cover image to cloud using steganography. In the proposed framework, the region of interest of the medical image is first detected using a visual saliency model. The detected important data is then embedded in a host image, producing a stego image which is outsourced to cloud for encryption. The cloud which has powerful resources, encrypts the image and sent back the encrypted marked image to the client. The client can then extract the selectively encrypted region of interest and can combine it with the region of non-interest to form a selectively encrypted image, which can be sent to medical specialists and healthcare centers. Experimental results and analysis validate the effectiveness of the proposed framework in terms of security, image quality, and computational complexity and verify its applicability in remote patient monitoring centers.
AB - In this paper, the problem of outsourcing the selective encryption of a medical image to cloud by resource-constrained devices such as smart phone is addressed, without revealing the cover image to cloud using steganography. In the proposed framework, the region of interest of the medical image is first detected using a visual saliency model. The detected important data is then embedded in a host image, producing a stego image which is outsourced to cloud for encryption. The cloud which has powerful resources, encrypts the image and sent back the encrypted marked image to the client. The client can then extract the selectively encrypted region of interest and can combine it with the region of non-interest to form a selectively encrypted image, which can be sent to medical specialists and healthcare centers. Experimental results and analysis validate the effectiveness of the proposed framework in terms of security, image quality, and computational complexity and verify its applicability in remote patient monitoring centers.
KW - Image steganography
KW - Information security
KW - Medical image processing
KW - Mobile-cloud computing
KW - Resource-constrained devices
KW - Selective image encryption
KW - Visual saliency models
UR - https://www.scopus.com/pages/publications/84982162762
U2 - 10.1007/s11042-016-3811-6
DO - 10.1007/s11042-016-3811-6
M3 - Article
AN - SCOPUS:84982162762
SN - 1380-7501
VL - 76
SP - 3519
EP - 3536
JO - Multimedia Tools and Applications
JF - Multimedia Tools and Applications
IS - 3
ER -