294
Views
39
CrossRef citations to date
0
Altmetric
Review

3D scintigraphic imaging and navigation in radioguided surgery: freehand SPECT technology and its clinical applications

, , &
Pages 339-351 | Received 15 Nov 2015, Accepted 11 Feb 2016, Published online: 02 Mar 2016

References

  • Povoski SP, Neff RL, Mojzisik CM, et al. A comprehensive overview of radioguided surgery using gamma detection probe technology. World J Surg Oncol. 2009;7:11.
  • Povoski SP. The history of radioguided surgery: early historical milestones and the development of later innovative clinical applications. In: Herrmann K, Nieweg OE, Povoski SP, editor. Radioguided surgery – current applications and innovation directions. 1st ed. in press ed. Berlin (Germany): Springer Science+Business; 2015.
  • Bluemel C, Herrmann K, Giammarile F, et al. EANM practice guidelines for lymphoscintigraphy and sentinel lymph node biopsy in melanoma. Eur J Nucl Med Mol Imaging. 2015;42:1750–1766.
  • Giammarile F, Bozkurt MF, Cibula D, et al. The EANM clinical and technical guidelines for lymphoscintigraphy and sentinel node localization in gynaecological cancers. Eur J Nucl Med Mol Imaging. 2014;41:1463–1477.
  • Noureldine SI, Gooi Z, Tufano RP. Minimally invasive parathyroid surgery. Gland Surg. 2015;4:410–419.
  • Ahmed M, Douek M. ROLL versus RSL: toss of a coin? Breast Cancer Res Treat. 2013;140:213–217.
  • Vidal-Sicart S, Rioja ME, Paredes P, et al. Contribution of perioperative imaging to radioguided surgery. Q J Nucl Med Mol Imaging. 2014;58:140–160.
  • Ross GL, Shoaib T, Scott J, et al. The learning curve for sentinel node biopsy in malignant melanoma. Br J Plast Surg. 2002;55:298–301.
  • Wendler T, Herrmann K, Schnelzer A, et al. First demonstration of 3-D lymphatic mapping in breast cancer using freehand SPECT. Eur J Nucl Med Mol Imaging. 2010;37:1452–1461.
  • Heller S, Zanzonico P. Nuclear probes and intraoperative gamma cameras. Semin Nucl Med. 2011;41:166–181.
  • Hall NC, Nichols SD, Povoski SP, et al. Intraoperative use of a portable large field of view gamma camera and handheld gamma detection probe for radioguided localization and prediction of complete surgical resection of gastrinoma: proof of concept. J Am Coll Surg. 2015;221:300–308.
  • Siman W, Kappadath SC. Performance characteristics of a new pixelated portable gamma camera. Med Phys. 2012;39:3435–3444.
  • Vidal-Sicart S, Vermeeren L, Solà O, et al. The use of a portable gamma camera for preoperative lymphatic mapping: a comparison with a conventional gamma camera. Eur J Nucl Med Mol Imaging. 2011;38:636–641.
  • Hutton BF. The origins of SPECT and SPECT/CT. Eur J Nucl Med Mol Imaging. 2014;41(Suppl 1):S3–16.
  • Wagner T, Buscombe J, Gnanasegaran G, et al. SPECT/CT in sentinel node imaging. Nucl Med Commun. 2013;34:191–202.
  • Vermeeren L, van der Ploeg IM, Olmos RA, et al. SPECT/CT for preoperative sentinel node localization. J Surg Oncol. 2010;101:184–190.
  • Valdes ORA, Rietbergen DD, Vidal-Sicart S, et al. Contribution of SPECT/CT imaging to radioguided sentinel lymph node biopsy in breast cancer, melanoma, and other solid cancers: from “open and see” to “see and open”. Q J Nucl Med Mol Imaging. 2014;58:127–139.
  • Wendler T, Hartl A, Lasser T, et al. Towards intra-operative 3D nuclear imaging: reconstruction of 3D radioactive distributions using tracked gamma probes. Med Image Comput Comput Assist Interv. 2007;10:909–917.
  • Valdés Olmos RA, Vidal-Sicart S, Nieweg OE. Technological innovation in the sentinel node procedure: towards 3-D intraoperative imaging. Eur J Nucl Med Mol Imaging. 2010;37:1449–1451.
  • declipse®SPECT; SurgicEye, Munich, Germany. [ cited 2015 Nov 10]. Available from: http://www.surgiceye.com/m/declipseSPECT/openSurgery.html
  • Matheoud R, Giorgione R, Valzano S, et al. Minimum acceptable sensitivity of intraoperative gamma probes used for sentinel lymph node detection in melanoma patients. Phys Med. 2014;30:822–826.
  • Hartsough NE, Barber HB, Woolfenden JM, et al. D.P. K. Probes containing gamma radiation detectors for in-vivo tumor detection and imaging. Proc SPIE Med Imaging Conf 1989;1086:92–99.
  • Bugby SL, Lees JE, Bhatia BS, et al. Characterisation of a high resolution small field of view portable gamma camera. Phys Med. 2014;30:331–339.
  • Olcott PD, Habte F, Foudray AM, et al. Performance characterization of a miniature, high sensitivity gamma ray camera. IEEE Trans Nucl Sci. 2007;54:1492–1497.
  • Tsuchimochi M, Hayama K, Oda T, et al. Evaluation of the efficacy of a small CdTe gamma-camera for sentinel lymph node biopsy. J Nucl Med. 2008;49:956–962.
  • Tsuchimochi M & Hayama K. Intraoperative gamma cameras for radioguided surgery: Technical characteristics, performance parameters, and clinical applications. Phy Medica. 2013;29(2): 126–138.
  • Tsuchimochi M, Hayama K. Intraoperative gamma cameras for radioguided surgery: technical characteristics, performance parameters, and clinical applications. Phys Med. 2013;29:126–138.
  • Matthies P, Gardiazabal J, Okur A, et al. Mini gamma cameras for intra-operative nuclear tomographic reconstruction. Med Image Anal. 2014;18:1329–1336.
  • Matthies P, Sharma K, Okur A, et al. First use of mini gamma cameras for intra-operative robotic SPECT reconstruction. Med Image Comput Comput Assist Interv. 2013;16:163–170.
  • Zhang B, Zeng GL. High-resolution versus high-sensitivity SPECT imaging with geometric blurring compensation for various parallel-hole collimation geometries. IEEE Trans Inf Technol Biomed. 2010;14:1121–1127.
  • Vicra Measurements Volume. NDI Medical. [ cited 2015 Nov 10]. Available from: http://www.ndigital.com/medical/products/polaris-family/features/vicra-measurement-volume/
  • Bluemel C, Herrmann K, Kübler A, et al. Intraoperative 3-D imaging improves sentinel lymph node biopsy in oral cancer. Eur J Nucl Med Mol Imaging. 2014;41:2257–2264.
  • Prokop M, Galanski M. Maximum intensity projection (MIP)/minimum intensity projection (MinIP). Suttgart (Germany): Georg Thieme Verlag; 2003.
  • NCCN. Head and neck cancers version 2.2014. NCCN Clinical Practice Guidelines in Oncology (NCCN Guidelines). Washington (PA): National Comprehensive Cancer Network; 2014.
  • Pouw B, De Wit-Van Der Veen LJ, Stokkel MP, et al. Improved accuracy and reproducibility using a training protocol for freehand-SPECT 3D Mapping in radio-guided surgery. Clin Nucl Med. 2015;40:e457–460.
  • Brouwer OR, van der Hage J, Nieweg OE, et al. Feasibility of 3D intraoperative freehand SPECT probe imaging for radioguided tumor excision and sentinel node biopsy in breast cancer (conference abstract). Eur J Surg Oncol. 2012;38:787.
  • Paepke S, Schnelzer A, Ehlerding A, et al. Diagnostik und Therapie der Axilla beim frühen Mammakarzinom: 3D-Navigation, Einschränkung der operativen Radikalität und Erweiterung der Strahlentherapie. J Onkol. 2012;3:26–32.
  • Schnelzer A, Ehlerding A, Blumel C, et al. Showcase of intraoperative 3D imaging of the sentinel lymph node in a breast cancer patient using the new freehand SPECT technology. Breast Care (Basel). 2012;7:484–486.
  • Bluemel C, Schnelzer A, Okur A, et al. Freehand SPECT for image-guided sentinel lymph node biopsy in breast cancer. Eur J Nucl Med Mol Imaging. 2013;40:1656–1661.
  • Bluemel C, Schnelzer A, Ehlerding A, et al. Changing the intraoperative nodal status of a breast cancer patient using freehand SPECT for sentinel lymph node biopsy. Clin Nucl Med. 2014;39:e313–314.
  • Gillard C, Franken P, Darcourt J, et al. Freehand SPECT for navigation and sentinel node detection in breast cancer. Gynecol Obstet Fertil. 2015;43:172–175.
  • Engelen T, Winkel BM, Rietbergen DD, et al. The next evolution in radioguided surgery: breast cancer related sentinel node localization using a freehandSPECT-mobile gamma camera combination. Am J Nucl Med Mol Imaging. 2015;5:233–245.
  • Naji S, Tadros A, Traub J, et al. Case report: improving the speed and accuracy of melanoma sentinel node biopsy with 3D intra-operative imaging. J Plast Reconstr Aesthet Surg. 2011;64:1712–1715.
  • Rieger A, Saeckl J, Belloni B, et al. First experiences with navigated radio-guided surgery using freehand SPECT. Case Rep Oncol. 2011;4:420–425.
  • Mihaljevic AL, Rieger A, Belloni B, et al. Transferring innovative freehand SPECT to the operating room: first experiences with sentinel lymph node biopsy in malignant melanoma. Eur J Surg Oncol. 2014;40:42–48.
  • Sulzbacher L, Klinger M, Scheurecker C, et al. Clinical usefulness of a novel freehand 3D imaging device for radio-guided intraoperative sentinel lymph node detection in malignant melanoma. Clin Nucl Med. 2015;40:e436–440.
  • Alkureishi LW, Ross GL, Shoaib T, et al. Sentinel node biopsy in head and neck squamous cell cancer: 5-year follow-up of a European multicenter trial. Ann Surg Oncol. 2010;17:2459–2464.
  • Marcinow AM, Hall N, Byrum E, et al. Use of a novel receptor-targeted (CD206) radiotracer, 99mTc-tilmanocept, and SPECT/CT for sentinel lymph node detection in oral cavity squamous cell carcinoma: initial institutional report in an ongoing phase 3 study. JAMA Otolaryngol Head Neck Surg. 2013;139:895–902.
  • Vermeeren L, Valdes Olmos RA, Klop WM, et al. A portable gamma-camera for intraoperative detection of sentinel nodes in the head and neck region. J Nucl Med. 2010;51:700–703.
  • Mayoral M, Paredes P, Sieira R, et al. The added value of a portable gamma camera for intraoperative detection of sentinel lymph node in squamous cell carcinoma of the oral cavity: A case report. Rev Esp Med Nucl Imagen Mol. 2014;33:237–240.
  • Heuveling DA, Karagozoglu KH, van Schie A, et al. Sentinel node biopsy using 3D lymphatic mapping by freehand SPECT in early stage oral cancer: a new technique. Clin Otolaryngol. 2012;37:89–90.
  • Bluemel C, Herrmann K, Müller-Richter U, et al. Freehand SPECT-guided sentinel lymph node biopsy in early oral squamous cell carcinoma. Head Neck. 2014;36:E112–116.
  • Mandapathil M, Teymoortash A, Heinis J, et al. Freehand SPECT for sentinel lymph node detection in patients with head and neck cancer: first experiences. Acta Otolaryngol. 2014;134:100–104.
  • Schilling C, Gnanasegaran G, McGurk M. Three-dimensional imaging and navigated sentinel node biopsy for primary parotid malignancy: new application in parotid cancer management. Head Neck. 2014;36:E91–93.
  • Heuveling DA, van Weert S, Karagozoglu KH, et al. Evaluation of the use of freehand SPECT for sentinel node biopsy in early stage oral carcinoma. Oral Oncol. 2015;51:287–290.
  • Van den Berg NS. Feasibility study illustrating the use of the Crystal Cam/DeclipseSPECT system for image-guided sentinel node navigation in head and neck cancer. EANM. Göteborg; 2014.
  • Brouwer OR, van den Berg NS, Mathéron HM, et al. Feasibility of intraoperative navigation to the sentinel node in the groin using preoperatively acquired single photon emission computerized tomography data: transferring functional imaging to the operating room. J Urol. 2014;192:1810–1816.
  • Laparoskopische Hybridbildgebung- ein neues Konzept für die Navigation bei minimalinvasiven Eingriffen 2014-11-21. [ cited 2015 Nov 10]. Available from: http://www.surgiceye.com/m/press_room/news/78-Laparoskopische%20Hybridbildgebung%20-%20ein%20neues%20Konzept%20f%C3%BCr%20die%20Navigation%20bei%20minimalinvasiven%20Eingriffen.html
  • Markus A Sentinel-Lymphknotenbiopsie beim Korpuskarzinom. [ cited 2015 Nov 10]. Paper presented at: 66. Chefärztekonferenz vom 4.12.2014. gynécologie suisse. 2014; Available from: http://www.sggg.ch/fileadmin/user_upload/Dokumente/1_Ueber_uns/1_Verband/2_Arbeitsgemeinschaften/CHG/Sentinel-Lymphknotenbiopsie_beim_Korpuskarzinom_Markus.pdf
  • Dodd G, Fry K, Delany W. Pre-operative localization of the breast. In: Nealon T, editor. Management of the patient with breast CANCER. Philadelphia (WB): Saunders Company;1965. p. 88–113.
  • Ahmed M, van Hemelrijck M, Douek M. Systematic review of radioguided versus wire-guided localization in the treatment of non-palpable breast cancers. Breast Cancer Res Treat. 2013;140:241–252.
  • Ahmed M, Douek M. Radioactive seed localisation (RSL) in the treatment of non-palpable breast cancers: systematic review and meta-analysis. Breast. 2013;22:383–388.
  • Povoski SP, Jimenez RE, Wang WP. Use of an intraoperative ultrasonography-guided localization and tissue fixation device demonstrates less margin positivity during breast-conserving surgery for invasive breast cancer than standard preoperative needle-wire localization: a retrospective comparative analysis in a consecutively treated case series. Clin Breast Cancer. 2014;14:46–52.
  • Bluemel C, Cramer A, Grossmann C, et al. iROLL: does 3-D radioguided occult lesion localization improve surgical management in early-stage breast cancer? Eur J Nucl Med Mol Imaging. 2015;42:1692–1699.
  • Pouw B, der Veen LJ, Hellingman D, et al. Feasibility of preoperative (125)I seed-guided tumoural tracer injection using freehand SPECT for sentinel lymph node mapping in non-palpable breast cancer. EJNMMI Res. 2014;4:19.
  • Einspieler I, Novotny A, Okur A, et al. First experience with image-guided resection of paraganglioma. Clin Nucl Med. 2014;39:e379–381.
  • Rahbar K, Colombo-Benkmann M, Haane C, et al. Intraoperative 3-D mapping of parathyroid adenoma using freehand SPECT. EJNMMI Res. 2012;2:51.
  • Castillo V, Roija ME, Diaz-Laugart E, et al. Intraoperative demonstration of 3D tumor localization using freehand SPECT in duodenum NET patient. J Nucl Med 2012;53:1252.
  • Bluemel C, Gasser M, Fassnacht M, et al. Feasibility of 3D-image guided resection of neuroendocrine tumors. Eur J Nucl Med Mol Imaging. 2015;42(suppl 1):708.
  • Scheider T, Müller J, Zeisel F, et al. Handheld-SPECT (Single Photon Emission Tomography)- guided VATS-resection of radioactivity-labelled pulmonary nodules. Paper presented at: Gemeinsame Jahresversammlung: SGP, SGPP, SGT, SVEP., 2014; St. Gallen.
  • Maurer T, Weirich G, Schottelius M, et al. Prostate-specific Membrane Antigen-radioguided Surgery for Metastatic Lymph Nodes in Prostate Cancer. Eur Urol. 2015;68:530–534.
  • de Bree R, Pouw B, Heuveling DA, et al. Fusion of Freehand SPECT and Ultrasound to Perform Ultrasound-Guided Fine-Needle Aspiration Cytology of Sentinel Nodes in Head and Neck Cancer. Am J Neuroradiol. 2015;36:2153–2158.
  • Okur A, Hennersperger C, Runyan B, et al. FhSPECT-US guided needle biopsy of sentinel lymph nodes in the axilla: is it feasible?. Med Image Comput Comput Assist Interv. 2014;17:577–584.
  • Freesmeyer M, Winkens T, Opfermann T, et al. Real-time ultrasound and freehand-SPECT. Experiences with sentinel lymph node mapping. Nuklearmedizin. 2014;53:259–264.
  • Vogel J, Lasser T, Gardiazabal J, et al. Trajectory optimization for intra-operative nuclear tomographic imaging. Med Image Anal. 2013;17:723–731.
  • Gardiazabal J, Esposito M, Matthies P, et al. Towards personalized interventional SPECT-CT imaging. Med Image Comput Comput Assist Interv. 2014;17:504–511.
  • Vidal-Sicart S, van Leeuwen FW, van den Berg NS, et al. Fluorescent radiocolloids: are hybrid tracers the future for lymphatic mapping? Eur J Nucl Med Mol Imaging. 2015;42:1627–1630.
  • Pesek S, Ashikaga T, Krag LE, et al. The false-negative rate of sentinel node biopsy in patients with breast cancer: a meta-analysis. World J Surg. 2012;36:2239–2251.
  • Cloyd JM, Wapnir IL, Read BM, et al. Indocyanine green and fluorescence lymphangiography for sentinel lymph node identification in cutaneous melanoma. J Surg Oncol. 2014;110:888–892.
  • Crane LM, van Oosten M, Pleijhuis RG, et al. Intraoperative imaging in ovarian cancer: fact or fiction? Mol Imaging. 2011;10:248–257.
  • Stoffels I, Dissemond J, Pöppel T, et al. Intraoperative fluorescence imaging for sentinel lymph node detection: prospective clinical trial to compare the usefulness of indocyanine green vs technetium tc 99m for identification of sentinel lymph nodes. JAMA Surg. 2015;150:617–623.
  • van den Berg NS, Brouwer OR, Klop WM, et al. Concomitant radio- and fluorescence-guided sentinel lymph node biopsy in squamous cell carcinoma of the oral cavity using ICG-(99m)Tc-nanocolloid. Eur J Nucl Med Mol Imaging. 2012;39:1128–1136.
  • van den Berg NS, Simon H, Kleinjan GH, et al. First-in-human evaluation of a hybrid modality that allows combined radio- and (near-infrared) fluorescence tracing during surgery. Eur J Nucl Med Mol Imaging. 2015;42:1639–1647.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.