Transurethral ultrasound array for prostate thermal therapy: Initial studies

被引:78
作者
Diederich, CJ [1 ]
Burdette, EC [1 ]
机构
[1] DAIMLER BENZ AEROSP DORNIER MED SYST INC,ATLANTA,GA 30144
关键词
D O I
10.1109/58.542046
中图分类号
O42 [声学];
学科分类号
070206 ; 082403 ;
摘要
This study presents the initial evaluation of an applicator designed for transurethral ultrasound thermotherapy (TUST) of prostate tissue in the treatment of benign prostatic hyperplasia (BPH) and cancer. A tubular multitransducer applicator, consisting of four piezoceramic tubes (2.5 mm diameter, 6 mm long, 6.8 MHz) under separate power control, was designed to fit within a semiflexible water-cooled temperature-regulated delivery catheter to be placed within the prostatic urethra during therapy, Sonication patterns were tailored to produce power depositions which avoid nontargeted tissues, such as the rectum. Computer simulations have demonstrated that 1.4-2.0 cm radial therapeutic zones (temperatures greater than or equal to 50-55 degrees C, thermal doses greater than or equal to 300 EM(43)) with concurrent sparing of the urethral mucosa can be produced within prostate tissue having blood perfusion as high as 10 kg m(-3) s(-1) within 15-30 min. Acoustic distributions and power output measurements of a prototype applicator have demonstrated acoustic power levels approaching 10 W per each sectored transducer segment are attainable, with beam profiles collimated within the transducer length and with desired circumferential distributions, In vivo thermal dosimetry characterizations of these transurethral applicators have indicated that therapeutic temperatures between 50 and 90 degrees C are attainable, controllable in the longitudinal and circumferential directions, and have effective radial heating, These results clearly indicate that transurethral ultrasound applicators have potential to provide improved spatial localization and control of the heating distribution over existing transurethral thermal therapy techniques for both hyperthermia and thermal coagulative therapy of the prostate.
引用
收藏
页码:1011 / 1022
页数:12
相关论文
共 51 条
[1]   RECENT DEVELOPMENTS IN MODELING HEAT-TRANSFER IN BLOOD-PERFUSED TISSUES [J].
ARKIN, H ;
XU, LX ;
HOLMES, KR .
IEEE TRANSACTIONS ON BIOMEDICAL ENGINEERING, 1994, 41 (02) :97-107
[2]   HEATING CHARACTERISTICS OF A HELICAL MICROWAVE APPLICATOR FOR TRANSURETHRAL HYPERTHERMIA OF BENIGN PROSTATIC HYPERPLASIA [J].
ASTRAHAN, M ;
IMANAKA, K ;
JOZSEF, G ;
AMEYE, F ;
BAERT, L ;
SAPOZINK, MD ;
BOYD, S ;
PETROVICH, Z .
INTERNATIONAL JOURNAL OF HYPERTHERMIA, 1991, 7 (01) :141-155
[3]   HIGH-INTENSITY FOCUSED ULTRASOUND FOR THE TREATMENT OF BENIGN PROSTATIC HYPERPLASIA - EARLY UNITED-STATES CLINICAL-EXPERIENCE [J].
BIHRLE, R ;
FOSTER, RS ;
SANGHVI, NT ;
DONOHUE, JP ;
HOOD, PJ .
JOURNAL OF UROLOGY, 1994, 151 (05) :1271-1275
[4]   TRANSURETHRAL MICROWAVE THERMOTHERAPY FOR PROSTATISM - EARLY MAYO-FOUNDATION EXPERIENCE [J].
BLUTE, ML ;
TOMERA, KM ;
HELLERSTEIN, DK ;
ATKINSON, EJ ;
PATTERSON, DE ;
SEGURA, JW .
MAYO CLINIC PROCEEDINGS, 1992, 67 (05) :417-421
[5]   DIFFERENTIAL THERMAL SENSITIVITY OF TUMOR AND NORMAL TISSUE MICROVASCULAR RESPONSE DURING HYPERTHERMIA [J].
BROWN, SL ;
HUNT, JW ;
HILL, RP .
INTERNATIONAL JOURNAL OF HYPERTHERMIA, 1992, 8 (04) :501-514
[6]   ACOUSTIC PROPERTIES OF LESIONS GENERATED WITH AN ULTRASOUND THERAPY SYSTEM [J].
BUSH, NL ;
RIVENS, I ;
TERHAAR, GR ;
BAMBER, JC .
ULTRASOUND IN MEDICINE AND BIOLOGY, 1993, 19 (09) :789-801
[7]  
CHAPELON JY, 1993, P IEEE ULTRASON S, V2, P1211
[8]  
Chato J., 1990, Thermal Dosimetry and Treatment Planning (Clinical Thermology), P1
[9]  
CHRISTENSEN MM, 1990, UROL CLIN N AM, V17, P509
[10]   EVALUATION OF ACCURACY OF A THEORETICAL-MODEL FOR PREDICTING THE NECROSED TISSUE VOLUME DURING FOCUSED ULTRASOUND SURGERY [J].
DAMIANOU, CA ;
HYNYNEN, K ;
FAN, XB .
IEEE TRANSACTIONS ON ULTRASONICS FERROELECTRICS AND FREQUENCY CONTROL, 1995, 42 (02) :182-187