Key result
Hypoglycemia increased global cerebral blood flow by 8% in patients with type 1 diabetes and impaired awareness of hypoglycemia, a response not observed in patients with normal awareness or healthy controls.
Why the study?
Does hypoglycemia alter cerebral blood flow in patients with type 1 diabetes and impaired awareness of hypoglycemia compared to those with normal awareness and healthy controls?
Observational (n=20)
No
Does hypoglycemia alter cerebral blood flow in patients with type 1 diabetes and impaired awareness of hypoglycemia compared to those with normal awareness and healthy controls?
Absolute Event Rate: 8% vs -2%
p-value: p=<0.05
Changes in cerebral blood flow during hypoglycemia, specifically increased global flow and lack of thalamic redistribution, may contribute to impaired awareness of hypoglycemia in type 1 diabetes.
May implicate cerebral perfusion changes in impaired hypoglycemia awareness in type 1 diabetes; hypothesis-generating and requires prospective validation.
It is unclear whether cerebral blood flow responses to hypoglycemia are altered in people with type 1 diabetes and impaired awareness of hypoglycemia. The aim of this study was to investigate the effect of hypoglycemia on both global and regional cerebral blood flow in type 1 diabetes patients with impaired awareness of hypoglycemia, type 1 diabetes patients with normal awareness of hypoglycemia and healthy controls ( n = 7 per group). The subjects underwent a hyperinsulinemic euglycemic-hypoglycemic glucose clamp in a 3 T MR system. Global and regional changes in cerebral blood flow were determined by arterial spin labeling magnetic resonance imaging, at the end of both glycemic phases. Hypoglycemia generated typical symptoms in patients with type 1 diabetes and normal awareness of hypoglycemia and healthy controls, but not in patients with impaired awareness of hypoglycemia. Conversely, hypoglycemia increased global cerebral blood flow in patients with impaired awareness of hypoglycemia, which was not observed in the other two groups. Regionally, hypoglycemia caused a redistribution of cerebral blood flow towards the thalamus of both patients with normal awareness of hypoglycemia and healthy controls, consistent with activation of brain regions associated with the autonomic response to hypoglycemia. No such redistribution was found in the patients with impaired awareness of hypoglycemia. An increase in global cerebral blood flow may enhance nutrient supply to the brain, hence suppressing symptomatic awareness of hypoglycemia. Altogether these results suggest that changes in cerebral blood flow during hypoglycemia contribute to impaired awareness of hypoglycemia.
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Wiegers et al. (2016) conducted an observational in Type 1 diabetes with impaired awareness of hypoglycemia (n=20). Hypoglycemia (hyperinsulinemic euglycemic-hypoglycemic glucose clamp) vs. Euglycemia (target plasma glucose 5.0 mmol/L) was evaluated on Change in global cerebral blood flow (CBF) (p=<0.05). Hypoglycemia increased global cerebral blood flow by 8% in patients with type 1 diabetes and impaired awareness of hypoglycemia, a response not observed in patients with normal awareness or healthy controls.
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