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The objective of the study is to examine the effectiveness and accuracy of the BioXbot in prostate biopsy as opposed to transrectal biopsy. This evaluation of the efficacy of both the procedures is based on:
Full description
The prostate gland is a walnut-sized organ found only in men that encircles the urethra (urine passage) below the urinary bladder. It secretes fluid that is an important component of semen. Prostate cancer is a disease of the prostate gland where malignant tumours cells invade normal prostate tissue and spread to other organs. It is second leading cause of cancer death in men and it is mainly found in men above the age of 50 years.
Prostate biopsy is considered to be the most definitive diagnostic tool for prostate cancer. It is a surgical procedure in which a small sample of tissue is removed from the prostate gland and examined by a pathologist. The procedure normally takes about 15 minutes and is usually performed by the urologist in conjunction with transrectal ultrasound (TRUS). No anesthetic is required. With the help of TRUS, a doctor guides a biopsy gun -- a hand-held device with a spring-loaded, slender needle -- through the wall of the rectum into the area of the prostate gland that appears abnormal. Since the rectal wall is thin, it is possible to place the needle more accurately and with less injury to other tissues. When activated, the needle can remove a slender cylinder of tissue, called a core.
Transrectal ultrasound-guided prostate biopsy has become the standard for obtaining tissue for the histological diagnosis of prostate cancer. On the other hand, transperineal approach is not commonly used worldwide and little data is available on transperineal prostate biopsy.
However, there are some problems with existing system and these include:
To assist the surgeon in transperineal biopsy, a device name BioXbot has been designed. BioXbot aims to address the shortfalls of the transrectal method of biopsy and limitations of existing robotic biopsy in order to improve the cancer uptake rate. An ideal design should need no more than 2 operators to complete the procedure comfortable within comparable time with the conventional approach. A motorized needle positioning mechanism may also improve the accuracy in the needling and allow the needle reach any point within the prostate in all scenarios.
BioXbot is a computer based motion control system with software driven gantry mechanism to assist in the positioning of the biopsy gun. It drives a 2D ultrasound probe to obtain a series of 2D images of the prostate which will then be modeled into a 3D view. This 3D visualization gives the surgeon a better idea of the prostate and allows him to plan the biopsy sites more intuitively. The mechanical components precisely align it to allow the clinician to accurately reach the position inside the prostate he wanted to and obtain tissue from there. To improve the usability and the positioning accuracy, as well as reducing the operation time, the positioning of the needle is fully motorized.
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250 participants in 1 patient group
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Henry Ho, Doctor; Preeti Mohan, Biomedical Engineer
Data sourced from clinicaltrials.gov
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