2003ANZ Journal of SurgeryRequires access

Anatomical justification of Belghiti's ‘liver hanging manoeuvre’ in right hepatectomy with anterior approach

William Meng, Chuxiao Shao, Kong Ling Mak, P Y Y Lau, Y Yeung, A. W. C. Yip

Open publisher page 27 citations

Abstract

BACKGROUND: In cases of right hepatectomy for huge tumour encroaching onto the diaphragm, the 'anterior approach' is the most common surgical procedure undertaken. The 'liver hanging manoeuvre' has been described previously as an adjunct to this procedure. It involves the dissection of a retrohepatic avascular plane anterior to the surface of the inferior vena cava. A tape is then passed through and the liver is resected under suspension. METHODS: Cadaveric specimens were used to identify the structural relationship of the avascular plane and also to determine whether it is truly avascular. RESULTS: Thirteen cases were analysed. The mean length of the avascular tunnel was 6.4 +/- 1.0 cm. The median number of accessory hepatic veins within the tunnel was two (zero to three). At the caudal half of the tunnel, the median number of veins was two (zero to three). As for the cranial half of the tunnel, there were two cases with one vein in each. CONCLUSIONS: The key to the liver hanging manoeuvre is to develop the retrohepatic tunnel. However, our study showed that it is not absolutely avascular. During the blind dissection, there is a chance of damaging a retrohepatic vein. This may result in troublesome haemorrhage within the confines of the tunnel. Video-assisted dissection of this region may help in visualisation, and hence control, in order to avoid bleeding.

About this research paper

What this paper is about

BACKGROUND: In cases of right hepatectomy for huge tumour encroaching onto the diaphragm, the 'anterior approach' is the most common surgical procedure undertaken. The 'liver hanging manoeuvre' has been described previously as an adjunct to this procedure. It involves the dissection of a retrohepatic avascular plane anterior to the surface of the inferior vena cava. A tape is then passed through and the liver is resected under suspension. METHODS: Cadaveric specimens were used to identify the structural relationship of the avascular plane and also to determine whether it is truly avascular. RESULTS: Thirteen cases were analysed. The mean length of the avascular tunnel was 6.4 +/- 1.0 cm. The median number of accessory hepatic veins within the tunnel was two (zero to three). At the caudal half of the tunnel, the median number of veins was two (zero to three). As for the cranial half of the tunnel, there were two cases with one vein in each. CONCLUSIONS: The key to the liver hanging manoeuvre is to develop the retrohepatic tunnel. However, our study showed that it is not absolutely avascular. During the blind dissection, there is a chance of damaging a retrohepatic vein. This may result in troublesome haemorrhage within the confines of the tunnel. Video-assisted dissection of this region may help in visualisation, and hence control, in order to avoid bleeding.

Why it matters

OpenAlex reports 27 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

BACKGROUND: In cases of right hepatectomy for huge tumour encroaching onto the diaphragm, the 'anterior approach' is the most common surgical procedure undertaken. The 'liver hanging manoeuvre' has been described previously as an adjunct to this procedure. It involves the dissection of a retrohepatic avascular plane anterior to the surface of the inferior vena cava. A tape is then passed through and the liver is resected under suspension. METHODS: Cadaveric specimens were used to identify the structural relationship of the avascular plane and also to determine whether it is truly avascular. RESULTS: Thirteen cases were analysed. The mean length of the avascular tunnel was 6.4 +/- 1.0 cm. The median number of accessory hepatic veins within the tunnel was two (zero to three). At the caudal half of the tunnel, the median number of veins was two (zero to three). As for the cranial half of the tunnel, there were two cases with one vein in each. CONCLUSIONS: The key to the liver hanging manoeuvre is to develop the retrohepatic tunnel. However, our study showed that it is not absolutely avascular. During the blind dissection, there is a chance of damaging a retrohepatic vein. This may result in troublesome haemorrhage within the confines of the tunnel. Video-assisted dissection of this region may help in visualisation, and hence control, in order to avoid bleeding.

Key concepts: Medicine, Dissection (medical), Diaphragm (acoustics), Cadaveric spasm, Surgery, Inferior vena cava, Vein, Anatomy

Related papers

Back to paper searchBrowse research topicsOriginal source
Anatomical justification of Belghiti's ‘liver hanging manoeuvre’ in right hepatectomy with anterior approach — Research Paper | ScholarLens