Safety and effectiveness considerations for clinical studies of visual prosthetic devices

被引:14
作者
Cohen, Ethan D. [1 ]
机构
[1] Ctr Devices & Radiol Hlth, Off Sci & Engn Labs, Div Phys, Rockville, MD 20852 USA
关键词
D O I
10.1088/1741-2560/4/1/S14
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
With the advent of new designs of visual prostheses for the blind, FDA is faced with developing guidance for evaluating their engineering, safety and patient performance. Visual prostheses are considered significant risk medical devices, and their use in human clinical trials must be approved by FDA under an investigation device exemption (IDE). This paper contains a series of test topics and design issues that sponsors should consider in order to assess the safety and efficacy of their device. The IDE application includes a series of pre-clinical and clinical data sections. The pre-clinical section documents laboratory, animal and bench top performance tests of visual prostheses safety and reliability to support a human clinical trial. The materials used in constructing the implant should be biocompatible, sterile, corrosion resistant, and able to withstand any forces exerted on it during normal patient use. The clinical data section is composed of items related to patient-related evaluation of device performance. This section documents the implantation procedure, trial design, statistical analysis and how visual performance is assessed. Similar to cochlear implants, a visual prosthesis is expected to last in the body for many years, and good pre-clinical and clinical testing will help ensure its safety, durability and effectiveness.
引用
收藏
页码:S124 / S129
页数:6
相关论文
共 15 条
[1]  
BAHILL AT, 1975, INVEST OPHTH VISUAL, V14, P468
[2]   The artificial silicon retina microchip for the treatment of vision loss from retinitis pigmentosa [J].
Chow, AY ;
Chow, VY ;
Packo, KH ;
Pollack, JS ;
Peyman, GA ;
Schuchard, R .
ARCHIVES OF OPHTHALMOLOGY, 2004, 122 (04) :460-469
[3]   The microsystems based visual prosthesis for optic nerve stimulation [J].
Delbeke, J ;
Wanet-Defalque, MC ;
Gérard, B ;
Troosters, M ;
Michaux, G ;
Veraart, C .
ARTIFICIAL ORGANS, 2002, 26 (03) :232-234
[4]   ARTIFICIAL VISION FOR BLIND - ELECTRICAL-STIMULATION OF VISUAL-CORTEX OFFERS HOPE FOR A FUNCTIONAL PROSTHESIS [J].
DOBELLE, WH ;
MLADEJOVSKY, MG ;
GIRVIN, JP .
SCIENCE, 1974, 183 (4123) :440-444
[5]   Status of the subretinal implant project. An overview [J].
Gekeler F. ;
Zrenner E. .
Der Ophthalmologe, 2005, 102 (10) :941-949
[6]   Reduction in excitability of the auditory nerve following acute electrical stimulation at high stimulus rates: III. Capacitive versus non-capacitive coupling of the stimulating electrodes [J].
Huang, CQ ;
Shepherd, RK ;
Seligman, PM ;
Clark, GM .
HEARING RESEARCH, 1998, 116 (1-2) :55-64
[7]   Visual perception in a blind subject with a chronic microelectronic retinal prosthesis [J].
Humayun, MS ;
Weiland, JD ;
Fujii, GY ;
Greenberg, R ;
Williamson, R ;
Little, J ;
Mech, B ;
Cimmarusti, V ;
Van Boemel, G ;
Dagnelie, G ;
de Juan, E .
VISION RESEARCH, 2003, 43 (24) :2573-2581
[8]  
Javaheri M, 2006, ANN ACAD MED SINGAP, V35, P137
[9]   RELATIONSHIP BETWEEN STIMULUS AMPLITUDE, STIMULUS FREQUENCY AND NEURAL DAMAGE DURING ELECTRICAL-STIMULATION OF SCIATIC-NERVE OF CAT [J].
MCCREERY, DB ;
AGNEW, WF ;
YUEN, TGH ;
BULLARA, LA .
MEDICAL & BIOLOGICAL ENGINEERING & COMPUTING, 1995, 33 (03) :426-429
[10]   Oculomotor behavior and perceptual strategies in complex tasks [J].
Pelz, JB ;
Canosa, R .
VISION RESEARCH, 2001, 41 (25-26) :3587-3596