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使用基于硅芯片的手持式超声设备对避孕植入物进行定位。

Localization of a contraceptive implant using a silicon chip-based handheld ultrasound device.

作者信息

Plöger Ruben, Binder Eckhard, Strizek Brigitte, Walter Adeline, Recker Florian

机构信息

Department of Obstetrics and Prenatal Medicine, University Hospital Bonn, Venusberg Campus 1, 53127, Bonn, Germany.

Department Eidinghausen, GYNCOLLEGWESERLAND, Eidingsen 2, 32549, Bad Oeynhausen, Germany.

出版信息

Arch Gynecol Obstet. 2025 Jun 24. doi: 10.1007/s00404-025-08045-z.

Abstract

BACKGROUND

Etonogestrel contraceptive implants (Implanon/Nexplanon) are a highly effective form of long-acting reversible contraception. Removal is typically straightforward when the implant is palpable in the upper arm. However, it can become challenging if the implant cannot be located by palpation due to deep placement, weight gain, or migration. Ultrasound is the recommended first-line imaging modality to localize non-palpable implants. Standard cart-based ultrasound devices may not be readily available in all settings (e.g., outpatient clinics, operating rooms, or resource-limited regions). A new generation of handheld ultrasound devices based on silicon chip technology has recently emerged, offering high-resolution imaging in a handheld, point-of-care format. These devices have the potential to facilitate rapid bedside localization of implants.

METHODS AND RESULTS

We present the first case of localizing a non-palpable Implanon NXT® (68 mg etonogestrel) rod using a silicon chip-based handheld ultrasound device (Butterfly iQ). A 27-year-old woman with a non-palpable upper arm implant underwent sequential scanning with the handheld ultrasound device connected to a smartphone and with a standard piezoelectric ultrasound device for comparison. The handheld ultrasound readily identified the implant as an echogenic focus in the arm, enabling marking of the location for removal. A confirmatory scan with a standard ultrasound unit likewise visualized the implant. Guided by these imaging findings, a small incision was made directly over the implant site and the rod was removed successfully under local anesthesia.

CONCLUSION

This case demonstrates that a semiconductor-based handheld ultrasound can reliably detect a non-palpable contraceptive implant, yielding sonographic images comparable to a standard piezoelectic ultrasound device. The successful localization and removal of the implant using the portable device suggests that this new ultrasound technology can be a valuable tool in obstetric and gynecologic practice for managing challenging implant cases. Its portability and ease of use at the point of care may improve access to timely implant removal in clinic settings, operating theaters, and remote or underserved areas. Wider adoption of this technology, alongside formal studies validating its accuracy, could enhance clinical workflows for contraceptive implant management.

摘要

背景

依托孕烯避孕植入剂(依伴侬/妮爽)是一种高效的长效可逆避孕方式。当植入剂在上臂可触及到时,取出通常很简单。然而,如果由于植入位置较深、体重增加或移位而无法通过触诊定位植入剂,取出就会变得具有挑战性。超声是用于定位不可触及的植入剂的推荐一线成像方式。基于推车的标准超声设备并非在所有场所(如门诊诊所、手术室或资源有限地区)都容易获得。最近出现了新一代基于硅芯片技术的手持式超声设备,以手持式即时护理形式提供高分辨率成像。这些设备有可能促进植入剂的快速床旁定位。

方法与结果

我们报告了首例使用基于硅芯片的手持式超声设备(蝴蝶iQ)定位不可触及的依伴侬NXT®(68毫克依托孕烯)棒的病例。一名上臂植入剂不可触及的27岁女性,先后使用连接到智能手机的手持式超声设备和标准压电超声设备进行扫描以作比较。手持式超声很容易将植入剂识别为手臂中的一个回声灶,从而能够标记出取出位置。使用标准超声设备进行的确认性扫描同样显示出了植入剂。在这些成像结果的引导下,在植入剂部位正上方做了一个小切口,并在局部麻醉下成功取出了棒。

结论

本病例表明,基于半导体的手持式超声能够可靠地检测到不可触及的避孕植入剂,产生与标准压电超声设备相当的超声图像。使用该便携式设备成功定位并取出植入剂表明,这种新的超声技术在妇产科实践中对于处理具有挑战性的植入剂病例可能是一种有价值的工具。其便携性和在护理点的易用性可能会改善在诊所、手术室以及偏远或服务不足地区及时取出植入剂的可及性。更广泛地采用这项技术,并开展验证其准确性的正式研究,可能会改善避孕植入剂管理的临床工作流程。

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