TY - JOUR
T1 - Virtual brain surgery simulation system based on haptic interaction
AU - Zhang, Xiaorui
AU - Zhu, Jiandong
AU - Sun, Wei
AU - Badler, Norman I.
AU - Song, Aiguo
AU - Niu, Jianwei
AU - Liu, Jia
N1 - Publisher Copyright:
©, 2015, Inst. of Scientific and Technical Information of China. All right reserved.
PY - 2015/6/1
Y1 - 2015/6/1
N2 - To improve the accuracy and interactivity of soft tissue deformation simulation, a new plate spring model based on physics is proposed. The model is parameterized and thus can be adapted to simulate different organs. Different soft tissues are modeled by changing the width, number of pieces, thickness, and length of a single plate spring. In this paper, the structural design, calculation of soft tissue deformation and real-time feedback operations of our system are also introduced. To evaluate the feasibility of the system and validate the model, an experimental system of haptic interaction, in which users can use virtual hands to pull virtual brain tissues, is built using PHANTOM OMNI devices. Experimental results show that the proposed system is stable, accurate and promising for modeling instantaneous soft tissue deformation.
AB - To improve the accuracy and interactivity of soft tissue deformation simulation, a new plate spring model based on physics is proposed. The model is parameterized and thus can be adapted to simulate different organs. Different soft tissues are modeled by changing the width, number of pieces, thickness, and length of a single plate spring. In this paper, the structural design, calculation of soft tissue deformation and real-time feedback operations of our system are also introduced. To evaluate the feasibility of the system and validate the model, an experimental system of haptic interaction, in which users can use virtual hands to pull virtual brain tissues, is built using PHANTOM OMNI devices. Experimental results show that the proposed system is stable, accurate and promising for modeling instantaneous soft tissue deformation.
KW - Haptic feedback
KW - Human-computer interaction
KW - Soft tissue deformation
KW - Surgery simulation
UR - https://www.scopus.com/pages/publications/84941918101
U2 - 10.3772/j.issn.1006-6748.2015.02.010
DO - 10.3772/j.issn.1006-6748.2015.02.010
M3 - 文章
AN - SCOPUS:84941918101
SN - 1006-6748
VL - 21
SP - 185
EP - 191
JO - High Technology Letters
JF - High Technology Letters
IS - 2
ER -