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H U Stahel

Publications and source records attributed to H U Stahel.

4 recordsLinked to original sources

Proteus syndrome.

A 34-year-old male patient was referred with a recalcitrant leg ulcer overlying an extensive vascular malformation, which had led several times to septic soft tissue infections. During his infancy he had been diagnosed to have Klippel-Trenaunay syndrome. Clinical examination revealed asymmetric hypertrophy of the lower extremities, an extensive portwine stain on the more severely affected left limb as well as prominent venous varicosities of both legs. Hands and feet showed striking cerebriform palmoplantar hypertrophy, and macrodactily with syndactily of several fingers. All toes had been amputated in early childhood due to extreme overgrowth and currently the patient walked on his forefeet in a prominent pes equinus deformity. Further symptoms consisted in several lipomas at both arms, another portwine stain at the left hemithorax and a single café-au-lait spot at the left scapula. Angio-magnetic resonance imaging scans of both legs showed an extensive venous-lymphatic vascular malformation involving the whole subcutis and infiltrating the muscle. The chronic wound was interpreted as venous stasis ulceration. Local percutaneous sclerotherapy of the dilated veins underneath the ulcer was discussed, but considered to carry a relevant risk of skin necrosis with consecutive progression of the wound. A conventional split-skin graft led to complete wound healing. Since, the patient consequently wears custom-made compression stockings and remained free from recurrences. The syndromatic constellation of palmoplantar overgrowth, multiple lipomas, giant fingers and toes, limb overgrowth, venous-lymphatic malformation and a café-au-lait spot led to the diagnosis of Proteus syndrome. The possible aetiology, clinical manifestations, differential diagnosis and management of this rare disorder are discussed.

Adult↗

Combined physical therapy for lymphedema evaluated by fluorescence microlymphography and lymph capillary pressure measurements.

The treatment of patients with lymphedema is still controversial. Combined physical therapy with manual lymph drainage and compression therapy is most frequently used to reduce lymphatic leg swelling. However, objective evidence is rare that this empirical form of treatment has a scientific basis. In a prospective study fluorescence microlymphography and pressure measurements in cutaneous lymph capillaries were used to assess objectively the effect of combined decongestive physical therapy on abnormal microlymphatic dynamics in lymphedema. 12 patients with primary and secondary lymphedema were studied before treatment, after 2 weeks of intensive physical therapy and 3 months of continuing compression and ergotherapy. After 2 weeks of intensive manual lymph drainage and compression bandaging (phase 1) microlymphatic hypertension (12.8 +/- 5.7 mm Hg) was significantly (p = 0.01) reduced to a mean lymph capillary pressure of 5.9 +/- 4.5 mm Hg. More than 3 months later after continuing compression lymph capillary pressure (3.2 +/- 5.2 mm Hg) was still significantly (p = 0.03) reduced. Simultaneously the maximum spread of the fluorescent contrast medium in the superficial lymph capillary network decreased significantly (p = 0.01) from 21.3 +/- 14.3 to 11.3 +/- 4.8 mm. Accordingly the clinical condition improved, and the mean circumferences of the forefoot and ankle were significantly (p < 0.05) reduced. Combined decongestive physical therapy is an effective treatment for lymphedema which results in a normalization of microlymphatic hypertension and an improvement of the clinical appearance.

Adult↗