Objective <p>This study aimed to investigate whether the auto-registration feature of improved holographic imaging technology improves the accuracy and efficiency of prostate biopsy.</p> Methods <p>Six healthy adult male Labrador retrievers were randomized into observation and control groups. Calcium carbonate-agar composite gel was implanted into the canine prostate to create mimic lesions. In the observation group, repeat implantation at the original lesion mimic site was performed under improved holographic imaging guidance to simulate targeted prostate biopsy, while the control group underwent the same procedure using conventional holographic guidance. All animals underwent Whole-abdomen CT scans followed by prostatectomy for whole mount sections examination. The positional differences of the lesion mimics implanted twice in the prostate of the two groups of dogs in three-dimensional space were compared respectively on CT images and large tissue sections. Procedure times for repeat implantation were recorded and compared between two groups.</p> Results <p>On CT images and whole mount sections, the distances of the lesion mimics implanted twice in the control group along the X-axis, Y-axis, and Z-axis were 4.42 ± 1.25&#xa0;mm &amp; 4.05 ± 1.18&#xa0;mm, 2.61 ± 1.15&#xa0;mm &amp; 2.44 ± 1.32&#xa0;mm, and 3.88 ± 1.42&#xa0;mm &amp; 3.58 ± 1.51&#xa0;mm, respectively. The observation groups were 1.94 ± 1.43&#xa0;mm &amp; 1.71 ± 1.19&#xa0;mm, 1.62 ± 1.27&#xa0;mm &amp; 1.28 ± 1.33&#xa0;mm, and 1.82 ± 1.35&#xa0;mm &amp; 1.57 ± 1.22&#xa0;mm, respectively. Whether on CT images or whole mount sections, the distances of the lesion mimics implanted twice in the control group along the X-axis, Y-axis, and Z-axis were significantly longer than those in the observation group (<i>P</i> &lt; 0.05). The time required from the fixation of the experimental dog's position to the completion of implantation in the control group was 18.76 ± 2.59&#xa0;min, while that in the observation group was 11.32 ± 1.75&#xa0;min, which was significantly shorter than that in the control group (<i>P</i> = 0.015).</p> Conclusion <p>The automatic registration function of the improved holographic imaging technology can, to a certain extent, shorten the operation time while improving the accuracy of puncture.</p> <p><i>Trial registration</i>: CHICTR, CTR2500104865. Registered 25 June 2025. <a href="https://www.chictr.org.cn">https://www.chictr.org.cn</a>.</p>

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Application of improved holographic imaging technology in prostate biopsy

  • Yang Luan,
  • Xiao Tan,
  • Sheng-ming Lu,
  • Ji Chen,
  • Qin Xiao,
  • Feng-hong Cao,
  • Xue-fei Ding

摘要

Objective

This study aimed to investigate whether the auto-registration feature of improved holographic imaging technology improves the accuracy and efficiency of prostate biopsy.

Methods

Six healthy adult male Labrador retrievers were randomized into observation and control groups. Calcium carbonate-agar composite gel was implanted into the canine prostate to create mimic lesions. In the observation group, repeat implantation at the original lesion mimic site was performed under improved holographic imaging guidance to simulate targeted prostate biopsy, while the control group underwent the same procedure using conventional holographic guidance. All animals underwent Whole-abdomen CT scans followed by prostatectomy for whole mount sections examination. The positional differences of the lesion mimics implanted twice in the prostate of the two groups of dogs in three-dimensional space were compared respectively on CT images and large tissue sections. Procedure times for repeat implantation were recorded and compared between two groups.

Results

On CT images and whole mount sections, the distances of the lesion mimics implanted twice in the control group along the X-axis, Y-axis, and Z-axis were 4.42 ± 1.25 mm & 4.05 ± 1.18 mm, 2.61 ± 1.15 mm & 2.44 ± 1.32 mm, and 3.88 ± 1.42 mm & 3.58 ± 1.51 mm, respectively. The observation groups were 1.94 ± 1.43 mm & 1.71 ± 1.19 mm, 1.62 ± 1.27 mm & 1.28 ± 1.33 mm, and 1.82 ± 1.35 mm & 1.57 ± 1.22 mm, respectively. Whether on CT images or whole mount sections, the distances of the lesion mimics implanted twice in the control group along the X-axis, Y-axis, and Z-axis were significantly longer than those in the observation group (P < 0.05). The time required from the fixation of the experimental dog's position to the completion of implantation in the control group was 18.76 ± 2.59 min, while that in the observation group was 11.32 ± 1.75 min, which was significantly shorter than that in the control group (P = 0.015).

Conclusion

The automatic registration function of the improved holographic imaging technology can, to a certain extent, shorten the operation time while improving the accuracy of puncture.

Trial registration: CHICTR, CTR2500104865. Registered 25 June 2025. https://www.chictr.org.cn.